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1.
BMC Plant Biol ; 24(1): 871, 2024 Sep 19.
Artigo em Inglês | MEDLINE | ID: mdl-39294608

RESUMO

BACKGROUND: Genetic improvement for Striga hermonthica (Sh) and S. asiatica (Sa) resistance is the most economical and effective control method to enhance the productivity of maize and other major cereal crops. Hence, identification of quantitative trait loci (QTL) associated with Striga resistance and economic traits will guide the pace and precision of resistance breeding in maize. The objective of this study was to undertake a genome-wide association analysis of grain yield and Sh and Sa resistance among tropical and sub-tropical maize populations to identify putative genetic markers and genes for resistance breeding. 126 maize genotypes were evaluated under controlled environment conditions using artificial infestation of Sh and Sa. The test genotypes were profiled for grain yield (GY), Striga emergence counts at 8 (SEC8) and 10 (SEC10) weeks after planting, and Striga damage rate scores at 8 (SDR8) and 10 (SDR10) weeks after planting. Population structure analysis and genome-wide association mapping were undertaken based on 16,000 single nucleotide polymorphism (SNP) markers. RESULTS: A linkage disequilibrium (LD) analysis in 798,675 marker pairs revealed that 21.52% of pairs were in significant linkage (P < 0.001). Across the chromosomes, the LD between SNPs decayed below a critical level (r2 = 0.1) at a map distance of 0.19 Mbp. The genome-wide association study identified 50 significant loci associated with Sh resistance and 22 significant loci linked to Sa resistance, corresponding to 39 and 19 candidate genes, respectively. CONCLUSION: The study found non-significant QTL associated with dual resistance to the two examined Striga species Some of the detected genes reportedly conditioned insect and pathogen resistance, plant cell development, variable senescence, and pollen fertility. The markers detected in the present study for Sa resistance were reported for the first time. The gene Zm00001eb219710 was pleiotropic, and conditioned GY and SEC10, while Zm00001eb165170 affected SDR8 and SDR10, and Zm00001eb112030 conditioned SDR8 and SDR10 associated with Sh resistance. The candidate genes may facilitate simultaneous selection for Sh and Sa resistance and grain yield in maize after further validation and introgression in breeding pipelines. Overall, we recommend breeding maize specifically for resistance to each Striga species using germplasm adapted to the endemic region of each parasite.


Assuntos
Grão Comestível , Estudo de Associação Genômica Ampla , Desequilíbrio de Ligação , Locos de Características Quantitativas , Striga , Zea mays , Zea mays/genética , Zea mays/crescimento & desenvolvimento , Zea mays/parasitologia , Striga/fisiologia , Grão Comestível/genética , Grão Comestível/crescimento & desenvolvimento , Polimorfismo de Nucleotídeo Único , Resistência à Doença/genética , Genótipo , Doenças das Plantas/parasitologia , Doenças das Plantas/genética , Clima Tropical , Marcadores Genéticos
2.
PLoS One ; 19(8): e0306263, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-39106250

RESUMO

Striga hermonthica (Sh) and S. asiatica (Sa) are major parasitic weeds limiting cereal crop production and productivity in sub-Saharan Africa (SSA). Under severe infestation, Striga causes yield losses of up to 100%. Breeding for Striga-resistant maize varieties is the most effective and economical approach to controlling the parasite. Well-characterized and genetically differentiated maize germplasm is vital to developing inbred lines, hybrids, and synthetic varieties with Striga resistance and desirable product profiles. The objective of this study was to determine the genetic diversity of 130 tropical and sub-tropical maize inbred lines, hybrids, and open-pollinated varieties germplasm using phenotypic traits and single nucleotide polymorphism (SNP) markers to select Striga-resistant and complementary genotypes for breeding. The test genotypes were phenotyped with Sh and Sa infestations using a 13x10 alpha lattice design with two replications. Agro-morphological traits and Striga-resistance damage parameters were recorded under a controlled environment. Further, high-density Diversity Array Technology Sequencing-derived SNP markers were used to profile the test genotypes. Significant phenotypic differences (P<0.001) were detected among the assessed genotypes for the assessed traits. The SNP markers revealed mean gene diversity and polymorphic information content of 0.34 and 0.44, respectively, supporting the phenotypic variation of the test genotypes. Higher significant variation was recorded within populations (85%) than between populations using the analysis of molecular variance. The Structure analysis allocated the test genotypes into eight major clusters (K = 8) in concordance with the principal coordinate analysis (PCoA). The following genetically distant inbred lines were selected, displaying good agronomic performance and Sa and Sh resistance: CML540, TZISTR25, TZISTR1248, CLHP0303, TZISTR1174, TZSTRI113, TZDEEI50, TZSTRI115, CML539, TZISTR1015, CZL99017, CML451, CML566, CLHP0343 and CML440. Genetically diverse and complementary lines were selected among the tropical and sub-tropical maize populations that will facilitate the breeding of maize varieties with Striga resistance and market-preferred traits.


Assuntos
Polimorfismo de Nucleotídeo Único , Striga , Zea mays , Zea mays/genética , Zea mays/parasitologia , Striga/fisiologia , Striga/genética , Variação Genética , Fenótipo , Genótipo , Doenças das Plantas/parasitologia , Doenças das Plantas/genética , Resistência à Doença/genética , Melhoramento Vegetal , Plantas Daninhas/genética , Clima Tropical , Marcadores Genéticos
3.
Braz J Biol ; 84: e280817, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-39109715

RESUMO

The maize weevil, Sitophilus zeamais Motschulsky, 1855 (Coleoptera: Curculionidae), generally reaches pest status in stored grain. Chemical control is the most used method for population suppression, which can cause adverse impacts, thus creating a need for alternatives such as using inert powders. The present work aims to verify the effect of different concentrations of different types of inert powders on the mortality of S. zeamais in the laboratory. To this end, the experiments were carried out in a completely randomized design, with 13 treatments and four replications, ten adults per replication, where the effect of different inert powders (basalt powder, gypsum powder, and diatomaceous earth) was tested at concentrations of 0.025 g, 0.05 g, 0.1 g and 0.2 g/20 g of corn grains. Variance, normality, and homoscedasticity tests were applied in addition to controlling efficiency (CE%), median lethal time (TL50), and survival curves. All treatments caused mortality in S. zeamais, and all concentrations with diatomaceous earth were more efficient, with 100% mortality at 20 days, followed by the treatment of 0.2 g of gypsum powder/20 g of corn grains, with superior efficiency, to 95% in 20 days and 100% in 30 days. The results indicated that treatments with diatomaceous earth had the highest mortality rate and the best average survival time.


Assuntos
Gorgulhos , Animais , Gorgulhos/classificação , Terra de Diatomáceas , Sulfato de Cálcio , Poeira , Controle de Insetos/métodos , Fatores de Tempo , Distribuição Aleatória , Zea mays/parasitologia
4.
Braz J Biol ; 84: e283233, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-39140505

RESUMO

The cotton or solenopsis mealybug, Phenacoccus solenopsis (Tinsley, 1898) (Hemiptera: Pseudococcidae), infests various host plants in Egypt. A study was conducted to observe the incidence of mealybugs and the possible influences of meteorological variables and plant age on the insect population of maize (single-hybrid 168 yellow maize cultivar) plants in Esna district, Luxor governorate, Egypt, in two consecutive seasons (2021 and 2022). P. solenopsis infested maize plants from the 3rd week of June to harvest, and had three peaks of seasonal incidence/season namely; in the 1st week of June in the 3rd/4th week of July, and the 2nd week of August. Similarly, there were three peaks in the percent of infestations per season. In the first season, the average population density of P. solenopsis per sample was 174.04 ± 16.93 individuals, and in the second season, 156.72 ± 14.28 individuals. The most favorable climate for P. solenopsis population increase and infestation occurred in August in the first season and in September in the second season, while June was less suitable in both growing seasons (as estimated by weekly surveys). The combined effects of weather conditions and plant age are significantly related to the estimates of P. solenopsis populations, with an explained variance (E.V.) of 93.18 and 93.86%, respectively, in the two seasons. In addition, their influences explained differences in infestation percentages of 93.30 and 95.54%, respectively, in the two seasons. Maize plant age was the most effective factor in determining changes in P. solenopsis population densities in each season. The mean daily minimum temperature in the first season and mean daily dew point in the second season were the most important factors affecting the percent changes in infestation. However, in both seasons, the mean daily maximum temperature was the least effective variable in population and infestation variation. This study paves the way for monitoring and early detection of mealybugs in maize; as well as the optimal climatic conditions for its development.


Assuntos
Hemípteros , Densidade Demográfica , Estações do Ano , Tempo (Meteorologia) , Zea mays , Hemípteros/fisiologia , Animais , Zea mays/parasitologia , Egito , Dinâmica Populacional
5.
Science ; 385(6712): 920-921, 2024 Aug 30.
Artigo em Inglês | MEDLINE | ID: mdl-39208102
6.
Mol Biol Rep ; 51(1): 918, 2024 Aug 19.
Artigo em Inglês | MEDLINE | ID: mdl-39158609

RESUMO

BACKGROUND: Root-lesion nematodes (RLN) are the most economically important pathogenic nematodes attacking maize. Significant economic losses due to lesion nematodes have been reported in maize producing countries in the world. METHODS AND RESULTS: This study was conducted to determine the distribution and identity of root-lesion nematodes (Pratylenchus spp.) (Tylenchida: Hoplolaimidae) in maize (Zea mays L.) (Poales: Poaceae) fields of the Black Sea region of Türkiye. For this purpose, 39 locations were surveyed and soil samples were taken from 17 regional provinces. Nematodes were extracted using the modified Baerman funnel technique. The species were identified based on sequences of the Internal Transcribed Spacer (ITS) region of ribosomal DNA, as well as morphological characters and morphometrics. In addition, species identifications were confirmed using species-specific primers in the D3 expansion region of 26 S rDNA. At the end of the study, 51.3% of the maize production areas sampled in the region were infected with root-lesion nematode species. Pratylenchus agilis, P. mediterraneus, P. neglectus, P. penetrans, P. thornei, and P. vulnus were identified, and were present in 25%, 5%, 25%, 10%, 15%, and 20% of samples, respectively. To our knowledge, this is the first report of P. agilis in Türkiye. CONCLUSION: The present study concluded that the molecular analysis of Pratylenchus sequences based on the ITS and D3 region of ribosomal RNA genes allowed the identification of six root lesion nematode species. This study is of great importance in terms of adding additional species to the root-lesion nematode fauna in Turkey and will provide data for future research on the management of these nematodes.


Assuntos
Filogenia , Doenças das Plantas , Raízes de Plantas , Tylenchida , Zea mays , Animais , Zea mays/parasitologia , Zea mays/genética , Raízes de Plantas/parasitologia , Raízes de Plantas/genética , Tylenchida/genética , Tylenchida/patogenicidade , Doenças das Plantas/parasitologia , Doenças das Plantas/genética , DNA Espaçador Ribossômico/genética , Turquia , DNA Ribossômico/genética , DNA de Helmintos/genética
7.
J Insect Sci ; 24(4)2024 Jul 01.
Artigo em Inglês | MEDLINE | ID: mdl-39149910

RESUMO

Little is known about winter-season parasitism of eggs of the corn leafhopper Dalbulus maidis DeLong (Hemiptera: Cicadellidae), an important pest of maize throughout the Americas. Our study, conducted in Mexico, aimed to characterize winter-season parasitism of corn leafhopper eggs on maize crops cultivated with drip irrigation and on wild grasses that grow on the edges of maize crops when maize is not present. Maize leaves baited with D. maidis eggs were used to trap the egg parasitoids in the field. In the first year (2022), parasitism of D. maidis eggs was investigated in maize fields planted contiguously on different dates (asynchronous planting). In the second year (2023), parasitism of D. maidis eggs was evaluated in edge grasses and in adjacent maize crops planted on the same date (synchronous). The highest percentage of parasitism (53%), percentage of emergence, and total abundance of egg parasitoids were found in asynchronous maize fields. Here, Anagrus virlai Triapitsyn (Hymenoptera: Mymaridae), Paracentrobia subflava (Girault) (Hymenoptera: Trichogrammatidae), and Pseudoligosita sp. (Hymenoptera: Trichogrammatidae) wasps were found parasitizing the D. maidis eggs, with P. subflava being the most abundant. In wild edge grasses, only P. subflava was found, showing low levels of parasitism, while in synchronous maize, P. subflava increased its percentage of parasitism (up to 37%), percentage of emergence, and abundance, during winter. These results suggest that P. subflava acts as an efficient biological control agent of D. maidis in irrigation-grown maize crops during the winter season, and that edge grasses are overwinter habitats for P. subflava.


Assuntos
Hemípteros , Óvulo , Estações do Ano , Zea mays , Animais , Hemípteros/parasitologia , Hemípteros/fisiologia , Zea mays/parasitologia , Óvulo/parasitologia , Óvulo/crescimento & desenvolvimento , México , Poaceae/parasitologia , Irrigação Agrícola , Vespas/fisiologia , Vespas/crescimento & desenvolvimento , Interações Hospedeiro-Parasita , Controle Biológico de Vetores , Produtos Agrícolas/parasitologia
8.
Sci Rep ; 14(1): 19607, 2024 08 23.
Artigo em Inglês | MEDLINE | ID: mdl-39179737

RESUMO

Plants are attacked by diverse herbivorous pests with different host specializations. While host plant resistance influences pest pressure, how resistance impacts the behaviors of generalist and specialist herbivores, and the relationship to resistance, is less well known. Here, we investigated the short-term (< 1 h) behavioral changes of a generalist herbivore, the two-spotted spider mite (TSM), and a specialist herbivore, the Banks grass mite (BGM), after introduction to no-choice Tanglefoot leaf-arenas (2 × 2 cm) of three maize inbred lines (B73, B75, and B96). The widely-used inbred line B73 is susceptible to spider mites, while B75 and B96 are known to be mite resistant, especially to TSM. Video tracking was used to record TSM and BGM walking, probing, feeding, resting, web-building and travel distance on arenas of each line. Mite oviposition was also recorded after 72 h. B75, a resistant line, decreased the feeding behavior (i.e., time) of both mite species compared to B73 (susceptible control) and B96. Moreover, TSM appeared to be sensitive to both resistant lines (B75 and B96) with reduced oviposition, and increased resting and web-building times compared to susceptible B73. In contrast, the specialist BGM showed no difference in oviposition, resting and web-building time across all maize inbred lines. Our findings of quite broad and short-term responses of TSM to B75 and B96 are consistent with a role for constitutive or rapidly induced plant defenses in maize in conferring TSM resistance. Other mechanisms of plant resistance may be needed, however, for defense against specialists like BGM.


Assuntos
Herbivoria , Tetranychidae , Zea mays , Zea mays/parasitologia , Zea mays/genética , Zea mays/fisiologia , Animais , Tetranychidae/fisiologia , Oviposição/fisiologia , Comportamento Alimentar/fisiologia , Folhas de Planta/parasitologia , Feminino
9.
Funct Integr Genomics ; 24(4): 129, 2024 Jul 23.
Artigo em Inglês | MEDLINE | ID: mdl-39039331

RESUMO

Genetically modified (GM) crops, expressing Bacillus thuringiensis (Bt) insecticidal toxins, have substantially transformed agriculture. Despite rapid adoption, their environmental and economic benefits face scrutiny due to unsustainable agricultural practices and the emergence of resistant pests like Spodoptera frugiperda, known as the fall armyworm (FAW). FAW's adaptation to Bt technology in corn and cotton compromises the long-term efficacy of Bt crops. To advance the understanding of the genetic foundations of resistance mechanisms, we conducted an exploratory comparative transcriptomic analysis of two divergent FAW populations. One population exhibited practical resistance to the Bt insecticidal proteins Cry1A.105 and Cry2Ab2, expressed in the genetically engineered MON-89Ø34 - 3 maize, while the other population remained susceptible to these proteins. Differential expression analysis supported that Cry1A.105 and Cry2Ab2 significantly affect the FAW physiology. A total of 247 and 254 differentially expressed genes were identified in the Cry-resistant and susceptible populations, respectively. By integrating our findings with established literature and databases, we underscored 53 gene targets potentially involved in FAW's resistance to Cry1A.105 and Cry2Ab2. In particular, we considered and discussed the potential roles of the differentially expressed genes encoding ABC transporters, G protein-coupled receptors, the P450 enzymatic system, and other Bt-related detoxification genes. Based on these findings, we emphasize the importance of exploratory transcriptomic analyses to uncover potential gene targets involved with Bt insecticidal proteins resistance, and to support the advantages of GM crops in the face of emerging challenges.


Assuntos
Toxinas de Bacillus thuringiensis , Proteínas de Bactérias , Endotoxinas , Proteínas Hemolisinas , Resistência a Inseticidas , Spodoptera , Transcriptoma , Spodoptera/efeitos dos fármacos , Spodoptera/genética , Animais , Endotoxinas/genética , Endotoxinas/farmacologia , Proteínas Hemolisinas/genética , Proteínas Hemolisinas/farmacologia , Proteínas de Bactérias/genética , Proteínas de Bactérias/metabolismo , Resistência a Inseticidas/genética , Plantas Geneticamente Modificadas/genética , Plantas Geneticamente Modificadas/parasitologia , Zea mays/genética , Zea mays/parasitologia , Perfilação da Expressão Gênica
10.
Sci Rep ; 14(1): 16823, 2024 07 22.
Artigo em Inglês | MEDLINE | ID: mdl-39039220

RESUMO

Exploring host plant resistance and elevating plant defense mechanisms through the application of exogenous elicitors stands as a promising strategy for integrated pest management. The fall armyworm, a pernicious menace to grain crops in tropical and subtropical regions, stands as a formidable threat due to its capacity for devastation and a wide-ranging spectrum of host plants. There is no literature regarding artificially induced resistance in maize against fall armyworm (Spodoptera frugiperda) by exogenous application of phytohormones. The present investigation was performed to evaluate the role of jasmonic acid (JA) and salicylic acid (SA) on two maize hybrids namely FH-1046 and YH-1898 against fall armyworm. Results showed that plant height, biomass and lengths, fresh and dry weight of root shoot which decreased with armyworm infestation improved with phytohormonal application. JA treatment resulted in a higher increase in all attributes as compared to SA treatment. Improvement in relative water contents, photosynthetic pigments and pronounced levels of phenol and proline accumulation were observed in infested plants after JA treatment. Infested plants recovered from oxidative stress as JA application activated and increased the antioxidant enzyme activity of superoxide dismutase, peroxidase and polyphenol oxidase activity in both FH-1046 and YH-1898 . The oxidative stress reduction in infested plants after JA treatment was also evident from a fair decrease in MDA and H2O2 in both varieties. The SA and JA mediated genes expression was studied and it was found that in FH1046 maize cultivar, JA dependent genes, particularly marker genes PR1 and Lox5 were highly expressed along with TPS10 and BBT12. Whereas SPI, WRKY28, ICS and PAL were shown to be activated upon SA application. Evidently, both JA and SA elicited a robust defensive response within the maize plants against the voracious S. frugiperda, which in consequence exerted a discernible influence over the pest's developmental trajectory and physiological dynamics. A decrease in detoxification enzyme activity of the insects was observed after feeding on treated plants. Moreover, it was recorded that the survival and weight gain of FAW feeding on phytohormone treated maize plants also decelerated. In conclusion, FH-1046 was found to be more tolerant than YH-1898 against fall armyworm infestation and 1 mM JA was more effective than 1 mM SA for alleviation of fall armyworm stress. Therefore, it was inferred that phytohormones regulated redox homeostasis to circumvent oxidative damage and mediate essential metabolic events in maize under stress. To our current understanding, this study is the very first presentation of induced resistance in maize against S. frugiperda with the phytohormonal application (JA and SA).


Assuntos
Ciclopentanos , Oxilipinas , Ácido Salicílico , Spodoptera , Zea mays , Zea mays/parasitologia , Zea mays/metabolismo , Zea mays/efeitos dos fármacos , Zea mays/genética , Spodoptera/efeitos dos fármacos , Animais , Ácido Salicílico/metabolismo , Ácido Salicílico/farmacologia , Ciclopentanos/farmacologia , Ciclopentanos/metabolismo , Oxilipinas/metabolismo , Oxilipinas/farmacologia , Oxirredução/efeitos dos fármacos , Homeostase/efeitos dos fármacos , Reguladores de Crescimento de Plantas/farmacologia , Reguladores de Crescimento de Plantas/metabolismo , Doenças das Plantas/parasitologia , Estresse Oxidativo/efeitos dos fármacos
11.
Plant Physiol Biochem ; 213: 108835, 2024 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-38901230

RESUMO

Herbivorous insects such as Spodoptera litura, pose a constant threat to agricultural crops. The incompetence of contemporary pest management tools and techniques stipulates unravelling of molecular dogma, that drives pest-plant interaction. From our previous observations, we inferred that despite being a voracious polyphagous herbivore, S. litura growth and adaptability is severely hampered on maize foliage diet. In this investigation we explored further and demonstrated the impact of maize diet on the insect gut peritrophic membrane (PM, a crucial membrane involved in compartmentalizing digestive events and absorption of nutrients), its structural analysis using scanning electron microscopy (SEM) revealed damaged and perforated PM. Further, this study delves into the intricate resistance mechanism adapted by Z. mays against S. litura by conducting a comparative proteome analysis. We have detected 345 differentially abundant proteins (DAPs) at p < 0.05 and fold change ≥1. The DAPs were categorized as plant defense, secondary metabolite synthesis, redox homeostasis, cytoskeleton/cell wall biosynthesis, primary metabolism, transport and molecular processes. We remarkably report differential expression of proteolysis- and defense-related proteins that have potential to target insect gut, digestion and absorption of nutrients. Our findings contribute to a deeper understanding of the molecular dynamics governing maize resistance against S. litura. Understanding of such intricate molecular dialogues at these interfaces could provide valuable information on the arms race between plants and herbivores, it may pave the way for innovative pest management strategies.


Assuntos
Proteoma , Spodoptera , Zea mays , Zea mays/metabolismo , Zea mays/parasitologia , Animais , Proteoma/metabolismo , Proteínas de Insetos/metabolismo , Herbivoria , Proteínas de Plantas/metabolismo , Proteínas de Plantas/genética , Proteômica/métodos
12.
Sci Rep ; 14(1): 13721, 2024 06 14.
Artigo em Inglês | MEDLINE | ID: mdl-38877078

RESUMO

The beet armyworm, Spodoptera exigua (Hubner) (Lepidoptera: Noctuidae), has become a significant pest of chickpea in recent years. The polyphagous nature allows it to survive on various hosts during the off-season, creating a great menace to the crop in the following season. To assess the incidence and document the alternate hosts of S. exigua, a rapid roving survey was conducted in 11 chickpea-growing areas of Prakasam district, Andhra Pradesh, India. Additionally, the life history traits of S. exigua were studied on major alternate host plants under laboratory conditions (27 ± 1 °C and 70 ± 2% RH) to understand the survival, life expectancy and potential contribution to future populations. The results show that, among the different crops surveyed, the maximum larval incidence was noticed in maize (1.93 larvae/plant), cowpea (1.73 larvae/plant), and sunflower (1.68 larvae/plant) during the off-season. Life history studies of S. exigua showed that highest larval survival percentage was observed on chickpea (83.6%), while the lowest was on maize (44.5%). The mean developmental time for larvae was longest on maize (27.1 days) and shortest on chickpea (14.9 days). Larvae did not develop beyond the third instar when fed with chilli. The growth index statistics showed chickpea (9.2) was the most suitable host plant, whereas maize (0.9) was the least suitable host. The age-stage-specific survival rate (Sxj) varied across developmental stages, and the survival curves overlapped, indicating different growth rates among individuals. The life expectancy (exj) at age zero was highest on groundnut (37.06 days). The intrinsic rate of increase (r) of S. exigua was lowest on maize (0.10 ± 0.0013) and highest on chickpea (0.22 ± 0.0010). Similarly, the net reproductive rate (R0) was highest on chickpea (846.39 ± 18.22) and lowest on maize (59.50 ± 2.06). The population doubled every 3.08 ± 0.011 days on chickpea compared to 7.22 ± 0.80 days on maize. The study conclusively indicates that chickpea and sunflower, primarily cultivated during the rabi season in India, are the most preferred hosts for S. exigua. In contrast, maize and cotton, mainly grown during the kharif season, are less preferred and merely support the pest's survival. Consequently, S. exigua switches hosts between different crops growing seasons, so effective management of S. exigua during the kharif season can help prevent pest outbreaks during the rabi season.


Assuntos
Cicer , Larva , Estações do Ano , Spodoptera , Animais , Spodoptera/crescimento & desenvolvimento , Spodoptera/fisiologia , Larva/crescimento & desenvolvimento , Cicer/parasitologia , Produtos Agrícolas/parasitologia , Índia , Zea mays/parasitologia , Vigna/parasitologia , Vigna/crescimento & desenvolvimento
13.
Biosci Biotechnol Biochem ; 88(8): 872-884, 2024 Jul 22.
Artigo em Inglês | MEDLINE | ID: mdl-38782714

RESUMO

Common cutworm, Spodoptera litura is an important pest of corn causing significant crop yield loss. Synthetic insecticides have mostly been used to combat this pest, raising human and environmental health concerns. Plant growth-promoting rhizobacteria (PGPR) could compensate for or augment the harmful effects of agrochemicals. Herein, we aimed to assess whether PGPR-induced defenses in corn plants impact the host-plant selection behavior of S. litura. Headspace volatile organic compounds were analyzed using gas chromatography-mass spectrometry. Larvae fed inoculated corn exhibited lower weights and relative growth rate than noninoculated plants. Under choice experiments, PGPR-treated plants significantly reduced percentage leaf damage area and oviposition rate compared to untreated plants. Volatile organic compound ratio emission varied significantly between control and PGPR treatments, which, in part, explains feeding and oviposition deterrence in PGPR-treated plants. The results demonstrate that PGPR inoculation can enhance corn resistance to S. litura, making it a promising candidate for crop protection strategies.


Assuntos
Larva , Oviposição , Spodoptera , Compostos Orgânicos Voláteis , Zea mays , Animais , Zea mays/microbiologia , Zea mays/parasitologia , Spodoptera/fisiologia , Spodoptera/crescimento & desenvolvimento , Compostos Orgânicos Voláteis/metabolismo , Compostos Orgânicos Voláteis/farmacologia , Oviposição/efeitos dos fármacos , Larva/fisiologia , Folhas de Planta/microbiologia
14.
PLoS One ; 19(5): e0299154, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38709802

RESUMO

The fall armyworm (FAW), Spodoptera frugiperda (JE Smith) (Lepidoptera: Noctuidae), an invasive agricultural pest, has significantly impacted crop yields across Africa. This study investigated the relationship between temperature and FAW life history traits, employing life cycle modeling at temperatures of 20, 25, 28, 30, and 32°C. The development time for eggs, larvae, and pupae varied from 0-3 days, 10-18 days, and 7-16 days, respectively. The optimal temperature range for immature stage survival and female fecundity was identified as 21-25°C, with the intrinsic rate of increase (rm) and gross reproductive rate (GRR) peaking at 25-28°C. Model validation confirmed the accuracy of these findings. The research further projected the Establishment Risk Index (ERI), Activity Index (AI), and Generation Index (GI) for FAW under current and future climates (2050 and 2070) using RCP 2.6 and RCP 8.5 scenarios. Results indicate that RCP 2.6 leads to a reduction in high-risk FAW areas, particularly in central Africa. Conversely, RCP 8.5 suggests an increase in areas conducive to FAW activity. These findings highlight the impact of climate policy on pest dynamics and the importance of incorporating climatic factors into pest management strategies. The study predicts a potential decrease in FAW prevalence in West Africa by 2070 under aggressive climate mitigation, providing a basis for future FAW management approaches.


Assuntos
Estágios do Ciclo de Vida , Spodoptera , Temperatura , Zea mays , Animais , Spodoptera/fisiologia , Spodoptera/crescimento & desenvolvimento , África , Zea mays/parasitologia , Zea mays/crescimento & desenvolvimento , Tábuas de Vida , Feminino , Larva/fisiologia , Larva/crescimento & desenvolvimento
15.
J Agric Food Chem ; 72(19): 10794-10804, 2024 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-38711396

RESUMO

Chitin-degrading enzymes are critical components in regulating the molting process of the Asian corn borer and serve as potential targets for controlling this destructive pest of maize. Here, we used a scaffold-hopping strategy to design a series of efficient naphthylimide insecticides. Among them, compound 8c exhibited potent inhibition of chitinase from OfChi-h and OfChtI at low nanomolar concentrations (IC50 = 1.51 and 9.21 nM, respectively). Molecular docking simulations suggested that 8c binds to chitinase by mimicking the interaction of chitin oligosaccharide substrates with chitinase. At low ppm concentrations, compound 8c performed comparably to commercial insecticides in controlling the highly destructive plant pest, the Asian corn borer. Tests on a wide range of nontarget organisms indicate that compound 8c has very low toxicity. In addition, the effect of inhibitor treatment on the expression of genes associated with the Asian corn borer chitin-degrading enzymes was further investigated by quantitative real-time polymerase chain reaction. In conclusion, our study highlights the potential of 8c as a novel chitinase-targeting insecticide for effective control of the Asian corn borer, providing a promising solution in the quest for sustainable pest management.


Assuntos
Quitina , Quitinases , Proteínas de Insetos , Inseticidas , Simulação de Acoplamento Molecular , Mariposas , Zea mays , Animais , Quitinases/química , Quitinases/genética , Quitinases/metabolismo , Mariposas/enzimologia , Mariposas/efeitos dos fármacos , Mariposas/genética , Quitina/química , Quitina/metabolismo , Inseticidas/química , Inseticidas/farmacologia , Proteínas de Insetos/genética , Proteínas de Insetos/metabolismo , Proteínas de Insetos/química , Proteínas de Insetos/antagonistas & inibidores , Zea mays/química , Zea mays/parasitologia , Inibidores Enzimáticos/química , Inibidores Enzimáticos/farmacologia , Desenho de Fármacos , Controle de Insetos , Larva/crescimento & desenvolvimento , Larva/efeitos dos fármacos , Relação Estrutura-Atividade
16.
Pest Manag Sci ; 80(9): 4286-4296, 2024 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-38624249

RESUMO

BACKGROUND: In Thailand, the scaly grain mite, Suidasia pontifica Oudemans, impacts the feed industry by emitting a lemongrass-like odor in contaminated feed, reducing its palatability. This study focused on identifying volatile organic compounds (VOCs) associated with this odor in contaminated chicken feeds and ground maize, as well as individual mites using gas chromatography-mass spectrometry (GC-MS). We explored the relationship between VOC concentration and mite population size in chicken feed cultures, aiming to detect minimal mite presence through regression models. Additionally, we tested the sensitivity of nine electronic odor sensors in detecting these VOCs. RESULTS: Our results showed Z-citral and E-citral present in mite-contaminated ground maize, chicken feeds, but absent in uncontaminated samples. Mite populations in chicken feed followed a normal distribution, increasing rapidly, peaking, and then declining, a pattern mirrored in the concentrations of Z-citral and E-citral. Simple linear regression models confirmed a positive correlation between mite density and citral concentrations. Polynomial regression models indicated Z-citral is detectable at mite densities over 67 individuals per gram and E-citral over 3.89 individuals per gram. Odor sensors showed varying readings across different citral concentrations, uncontaminated, and mite-infested chicken feeds. CONCLUSIONS: Our study confirms that S. pontifica are responsible for the lemongrass-like odor in infested samples, due to Z-citral and E-citral. The citral concentrations increase with mite population growth and are detectable at low mite densities, suggesting their effectiveness as biomarkers for early mite infestation detection. Additionally, MQ series odor sensors detected these VOCs, indicating their potential for monitoring mite infestations in storage environments. © 2024 Society of Chemical Industry.


Assuntos
Galinhas , Odorantes , Compostos Orgânicos Voláteis , Animais , Compostos Orgânicos Voláteis/análise , Odorantes/análise , Ração Animal/análise , Cromatografia Gasosa-Espectrometria de Massas , Zea mays/química , Zea mays/parasitologia , Ácaros/fisiologia , Tailândia
17.
Nat Plants ; 10(5): 771-784, 2024 05.
Artigo em Inglês | MEDLINE | ID: mdl-38684916

RESUMO

The fall armyworm (FAW) poses a significant threat to global crop production. Here we showed that overexpression of jasmonate ZIM-domain (JAZ) protein GhJAZ24 confers resistance to cotton bollworm and FAW, while also causing sterility in transgenic cotton by recruiting TOPLESS and histone deacetylase 6. We identified the NGR motif of GhJAZ24 that recognizes and binds the aminopeptidase N receptor, enabling GhJAZ24 to enter cells and disrupt histone deacetylase 3, leading to cell death. To overcome plant sterility associated with GhJAZ24 overexpression, we developed iJAZ (i, induced), an approach involving damage-induced expression and a switch from intracellular to extracellular localization of GhJAZ24. iJAZ transgenic cotton maintained fertility and showed insecticidal activity against cotton bollworm and FAW. In addition, iJAZ transgenic rice, maize and tobacco plants showed insecticidal activity against their lepidopteran pests, resulting in an iJAZ-based approach for generating alternative insecticidal proteins with distinctive mechanisms of action, thus holding immense potential for future crop engineering.


Assuntos
Produtos Agrícolas , Gossypium , Mariposas , Plantas Geneticamente Modificadas , Animais , Produtos Agrícolas/genética , Mariposas/fisiologia , Mariposas/genética , Gossypium/genética , Gossypium/parasitologia , Proteínas de Plantas/genética , Proteínas de Plantas/metabolismo , Oryza/genética , Oryza/parasitologia , Zea mays/genética , Zea mays/parasitologia , Nicotiana/genética , Nicotiana/parasitologia
18.
Genes (Basel) ; 15(4)2024 03 25.
Artigo em Inglês | MEDLINE | ID: mdl-38674336

RESUMO

Extensive genome structure variations, such as copy number variations (CNVs) and presence/absence variations, are the basis for the remarkable genetic diversity of maize; however, the effect of CNVs on maize herbivory defense remains largely underexplored. Here, we report that the naturally occurring duplication of the maize 9-lipoxygenase gene ZmLOX5 leads to increased resistance of maize to herbivory by fall armyworms (FAWs). Previously, we showed that ZmLOX5-derived oxylipins are required for defense against chewing insect herbivores and identified several inbred lines, including Yu796, that contained duplicated CNVs of ZmLOX5, referred to as Yu796-2×LOX5. To test whether introgression of the Yu796-2×LOX5 locus into a herbivore-susceptible B73 background that contains a single ZmLOX5 gene is a feasible approach to increase resistance, we generated a series of near-isogenic lines that contained either two, one, or zero copies of the Yu796-2×LOX5 locus in the B73 background via six backcrosses (BC6). Droplet digital PCR (ddPCR) confirmed the successful introgression of the Yu796-2×LOX5 locus in B73. The resulting B73-2×LOX5 inbred line displayed increased resistance against FAW, associated with increased expression of ZmLOX5, increased wound-induced production of its primary oxylipin product, the α-ketol, 9-hydroxy-10-oxo-12(Z),15(Z)-octadecadienoic acid (9,10-KODA), and the downstream defense hormones regulated by this molecule, 12-oxo-phytodienoic acid (12-OPDA) and abscisic acid (ABA). Surprisingly, wound-induced JA-Ile production was not increased in B73-2×LOX5, resulting from the increased JA catabolism. Furthermore, B73-2×LOX5 displayed reduced water loss in response to drought stress, likely due to increased ABA and 12-OPDA content. Taken together, this study revealed that the duplicated CNV of ZmLOX5 quantitively contributes to maize antiherbivore defense and presents proof-of-concept evidence that the introgression of naturally occurring duplicated CNVs of a defensive gene into productive but susceptible crop varieties is a feasible breeding approach for enhancing plant resistance to herbivory and tolerance to abiotic stress.


Assuntos
Variações do Número de Cópias de DNA , Proteínas de Plantas , Zea mays , Zea mays/genética , Zea mays/parasitologia , Animais , Proteínas de Plantas/genética , Proteínas de Plantas/metabolismo , Lipoxigenase/genética , Herbivoria , Oxilipinas/metabolismo , Doenças das Plantas/parasitologia , Doenças das Plantas/genética
19.
Phytopathology ; 114(7): 1657-1663, 2024 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-38427606

RESUMO

This study provides the first report of a quantitative trait locus (QTL) in maize (Zea mays) for resistance to the southern root-knot nematode (SRKN) (Meloidogyne incognita). The SRKN can feed on the roots of maize in the U.S. Southern Coastal Plain region and can cause yield losses of 30% or more in heavily infested fields. Increases in SRKN density in the soil may reduce the yield for subsequently planted susceptible crops. The use of maize hybrids with resistance to SRKN could prevent an increase in SRKN density, yet no genetic regions have been identified that confer host resistance. In this study, a B73 (susceptible) × Ky21 (resistant) S5 recombinant inbred line (RIL) population was phenotyped for total number of eggs (TE) and root weight. This population had been genotyped using single-nucleotide polymorphisms (SNPs). By utilizing the SNP data with the phenotype data, a single QTL was identified on chromosome 5 that explained 15% of the phenotypic variation (PV) for the number of eggs and 11% of the PV for the number of eggs per gram of root (EGR). Plants that were homozygous for the Ky21 allele for the most associated marker PZA03172.3 had fewer eggs and fewer EGR than the plants that were homozygous or heterozygous for the B73 allele. Thus, the first QTL for SRKN resistance in maize has been identified and could be incorporated into maize hybrids.


Assuntos
Cromossomos de Plantas , Resistência à Doença , Fenótipo , Doenças das Plantas , Raízes de Plantas , Polimorfismo de Nucleotídeo Único , Locos de Características Quantitativas , Tylenchoidea , Zea mays , Zea mays/genética , Zea mays/parasitologia , Locos de Características Quantitativas/genética , Animais , Tylenchoidea/fisiologia , Raízes de Plantas/parasitologia , Raízes de Plantas/genética , Doenças das Plantas/parasitologia , Doenças das Plantas/imunologia , Doenças das Plantas/genética , Cromossomos de Plantas/genética , Resistência à Doença/genética , Polimorfismo de Nucleotídeo Único/genética , Genótipo , Mapeamento Cromossômico
20.
Plant Cell Environ ; 47(6): 2228-2239, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38483021

RESUMO

The selection of oviposition sites by female moths is crucial in shaping their progeny performance and survival, and consequently in determining insect fitness. Selecting suitable plants that promote the performance of the progeny is referred to as the Preference-Performance hypothesis (or 'mother-knows-best'). While root infestation generally reduces the performance of leaf herbivores, little is known about its impact on female oviposition. We investigated whether maize root infestation by the Western corn rootworm (WCR) affects the oviposition preference and larval performance of the European corn borer (ECB). ECB females used leaf volatiles to select healthy plants over WCR-infested plants. Undecane, a compound absent from the volatile bouquet of healthy plants, was the sole compound to be upregulated upon root infestation and acted as a repellent for first oviposition. ECB larvae yet performed better on plants infested below-ground than on healthy plants, suggesting an example of 'bad motherhood'. The increased ECB performance on WCR-infested plants was mirrored by an increased leaf consumption, and no changes in the plant primary or secondary metabolism were detected. Understanding plant-mediated interactions between above- and below-ground herbivores may help to predict oviposition decisions, and ultimately, to manage pest outbreaks in the field.


Assuntos
Larva , Mariposas , Oviposição , Folhas de Planta , Raízes de Plantas , Compostos Orgânicos Voláteis , Zea mays , Animais , Oviposição/efeitos dos fármacos , Zea mays/fisiologia , Zea mays/parasitologia , Compostos Orgânicos Voláteis/metabolismo , Compostos Orgânicos Voláteis/farmacologia , Mariposas/fisiologia , Feminino , Larva/fisiologia , Raízes de Plantas/parasitologia , Raízes de Plantas/fisiologia , Folhas de Planta/fisiologia , Herbivoria
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