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1.
PLoS Pathog ; 19(3): e1011262, 2023 03.
Artigo em Inglês | MEDLINE | ID: mdl-36947551

RESUMO

Microorganisms living in and on macroorganisms may produce microbial volatile compounds (mVOCs) that characterise organismal odours. The mVOCs might thereby provide a reliable cue to carnivorous enemies in locating their host or prey. Parasitism by parasitoid wasps might alter the microbiome of their caterpillar host, affecting organismal odours and interactions with insects of higher trophic levels such as hyperparasitoids. Hyperparasitoids parasitise larvae or pupae of parasitoids, which are often concealed or inconspicuous. Odours of parasitised caterpillars aid them to locate their host, but the origin of these odours and its relationship to the caterpillar microbiome are unknown. Here, we analysed the odours and microbiome of the large cabbage white caterpillar Pieris brassicae in relation to parasitism by its endoparasitoid Cotesia glomerata. We identified how bacterial presence in and on the caterpillars is correlated with caterpillar odours and tested the attractiveness of parasitised and unparasitised caterpillars to the hyperparasitoid Baryscapus galactopus. We manipulated the presence of the external microbiome and the transient internal microbiome of caterpillars to identify the microbial origin of odours. We found that parasitism by C. glomerata led to the production of five characteristic volatile products and significantly affected the internal and external microbiome of the caterpillar, which were both found to have a significant correlation with caterpillar odours. The preference of the hyperparasitoid was correlated with the presence of the external microbiome. Likely, the changes in external microbiome and body odour after parasitism were driven by the resident internal microbiome of caterpillars, where the bacterium Wolbachia sp. was only present after parasitism. Micro-injection of Wolbachia in unparasitised caterpillars increased hyperparasitoid attraction to the caterpillars compared to untreated caterpillars, while no differences were found compared to parasitised caterpillars. In conclusion, our results indicate that host-parasite interactions can affect multi-trophic interactions and hyperparasitoid olfaction through alterations of the microbiome.


Assuntos
Borboletas , Vespas , Animais , Odorantes , Larva , Borboletas/parasitologia , Vespas/parasitologia , Interações Hospedeiro-Parasita
2.
J Econ Entomol ; 115(5): 1464-1471, 2022 10 12.
Artigo em Inglês | MEDLINE | ID: mdl-36062941

RESUMO

The parasitoid Cotesia glomerata L. (Hymenoptera: Braconidae) oviposits in larvae of the large cabbage white butterfly (Pieris brassicae L.). Many parasitoids are attracted by volatile organic compounds (VOCs) emitted by the plant that the host insects feed on. The objectives of the study were to identify the VOCs in leaves of two varieties of cabbage (white cabbage, Brassica oleracea var. capitata f. alba and cauliflower, B. oleracea var. botrytis) damaged by P. brassicae caterpillars which elicit antennal responses of C. glomerata, and characterize the olfactory spectra of females and males. Leaf extracts were analyzed by using gas chromatography equipped with an electroantennographic detector (GC-EAD) and GC-mass spectrometry. In total, 32 olfactory-active compounds for C. glomerata in cauliflower and 24 in white cabbage were revealed. The females perceived more compounds than males. Hexan-1-ol, (E)-3-hexen-1-ol, (E)-2-octenal, benzylcianide, tetradecanal, and two unidentified compounds elicited EAG responses in females but not in males. Females were more sensitive to (E)-3-hexenal, (Z)-3-hexenal, and pentadecenal, whereas males showed higher sensitivity to (Z)-3-hexenyl butanoate, heptanal, (Δ)-2-pentenal, (E)-2-hexenol, and octanal. The olfactory spectrum of C. glomerata was expanded from 18 to 41 VOCs emitted by different varieties of cabbage damaged by P. brassicae caterpillars. Eight EAG-active VOCs were common for all cabbage varieties. In tritrophic interactions, benzylcyanide can serve as an important signal for C. glomerata females indicating damage of cabbage caused by P. brassicae caterpillars. The data are useful for development of a push-pull strategy for P. brassicae control, based on parasitoid behavior regulation by VOCs.


Assuntos
Brassica , Borboletas , Himenópteros , Compostos Orgânicos Voláteis , Vespas , Animais , Borboletas/parasitologia , Borboletas/fisiologia , Feminino , Cromatografia Gasosa-Espectrometria de Massas , Interações Hospedeiro-Parasita , Himenópteros/fisiologia , Larva , Masculino , Compostos Orgânicos Voláteis/farmacologia , Vespas/fisiologia
3.
Syst Parasitol ; 99(6): 715-726, 2022 12.
Artigo em Inglês | MEDLINE | ID: mdl-36057076

RESUMO

Paddy, Oryza sativa L. (Poales: Poaecea) is infested by a series of lepidopteran, coleopteran, hemipteran, and acarine pests in India. Of the long list, the species Rice Leaf-Roller Pelopidas mathias (Fabricius, 1798) (Lepidoptera: Hesperiidae) is one of most encountered defoliators on paddy. Here we record and describe with illustrations, a new parasitic complex comprising of two new species of parasitic wasps, viz. Brachymeria eastwoodi Binoy, sp. nov. and Sympiesis eastwoodi James & Santhosh, sp. nov. on the pupae of P. mathias from southern India. The parasitoid complexes on P. mathias are also augmented.


Assuntos
Borboletas , Lepidópteros , Oryza , Vespas , Animais , Borboletas/parasitologia , Índia , Lepidópteros/parasitologia , Folhas de Planta , Especificidade da Espécie
4.
J Insect Physiol ; 141: 104425, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-35878702

RESUMO

In the lengthy co-evolution between insects and their animal or plant hosts, insects have evolved a wide range of salivary strategies to help evade host defenses. Although there is a very large literature on saliva of herbivorous and hematophagous insects, little attention has been focused on the saliva of parasitoid wasps. Some parasitoid species are natural enemies that effectively regulate insect population sizes in nature that they are applied for biological control of agricultural pests. Here, we demonstrate the influence of the endoparasitoid, Pteromalus puparum, larval saliva on the cellular and humoral immunity of its host. Larval saliva increases mortality of hemocytes, and inhibits hemocyte spreading, a specific cellular immune action. We report that high saliva concentrations inhibit host cellular encapsulation of foreign invaders. The larval saliva also inhibits melanization in host hemolymph. The saliva inhibits the growth of some bacterial species, Bacillus subtilis, Staphylococcus aureus and Pseudomonas aeruginosa in vitro. This may promote larvae fitness by protecting them from infections. Insight into such functions of parasitic wasp saliva provides a new insight into host-parasitoid relationships and possibly leads to new agricultural pest management technologies.


Assuntos
Borboletas , Vespas , Animais , Borboletas/parasitologia , Interações Hospedeiro-Parasita , Larva , Saliva , Venenos de Vespas , Vespas/fisiologia
5.
J Anim Ecol ; 91(4): 780-793, 2022 04.
Artigo em Inglês | MEDLINE | ID: mdl-35174493

RESUMO

Insect-pathogen dynamics can show seasonal and inter-annual variations that covary with fluctuations in insect abundance and climate. Long-term analyses are especially needed to track parasite dynamics in migratory insects, in part because their vast habitat ranges and high mobility might dampen local effects of density and climate on infection prevalence. Monarch butterflies Danaus plexippus are commonly infected with the protozoan Ophryocystis elektroscirrha (OE). Because this parasite lowers monarch survival and flight performance, and because migratory monarchs have experienced declines in recent decades, it is important to understand the patterns and drivers of infection. Here we compiled data on OE infection spanning 50 years, from wild monarchs sampled in the United States, Canada and Mexico during summer breeding, fall migrating and overwintering periods. We examined eastern versus western North American monarchs separately, to ask how abundance estimates, resource availability, climate and breeding season length impact infection trends. We further assessed the intensity of migratory culling, which occurs when infected individuals are removed from the population during migration. Average infection prevalence was four times higher in western compared to eastern subpopulations. In eastern North America, the proportion of infected monarchs increased threefold since the mid-2000s. In the western region, the proportion of infected monarchs declined sharply from 2000 to 2015, and increased thereafter. For both eastern and western subpopulations, years with greater summer adult abundance predicted greater infection prevalence, indicating that transmission increases with host breeding density. Environmental variables (temperature and NDVI) were not associated with changes in the proportion of infected adults. We found evidence for migratory culling of infected butterflies, based on declines in parasitism during fall migration. We estimated that tens of millions fewer monarchs reach overwintering sites in Mexico as a result of OE, highlighting the need to consider the parasite as a potential threat to the monarch population. Increases in infection among eastern North American monarchs post-2002 suggest that changes to the host's ecology or environment have intensified parasite transmission. Further work is needed to examine the degree to which human practices, such as mass caterpillar rearing and the widespread planting of exotic milkweed, have contributed to this trend.


Assuntos
Borboletas , Parasitos , Migração Animal , Animais , Borboletas/parasitologia , México , Melhoramento Vegetal , Estações do Ano , Estados Unidos
6.
J Invertebr Pathol ; 186: 107670, 2021 11.
Artigo em Inglês | MEDLINE | ID: mdl-34560107

RESUMO

Island ecosystems, which often contain undescribed insects and small populations of single island endemics, are at risk from diverse threats. The spread of pathogens is a major factor affecting not just pollinator species themselves, but also posing significant knock-on effects to often fragile island ecosystems through disruption of pollination networks. Insects are vulnerable to diverse pathogens and these can be introduced to islands in a number of ways, e.g. via the introduction of infected managed pollinator hosts (e.g. honey bees and their viruses, in particular Deformed wing virus), long-range migrants (e.g. monarch butterflies and their protozoan parasite, Ophryocystit elektroscirrha) and invasive species (e.g. social wasps are common invaders and are frequently infected with multi-host viruses such as Kashmir bee virus and Moku virus). Furthermore, these introductions can negatively affect island ecosystems through outcompeting native taxa for resources. As such, the greatest threat to island pollinator communities is not one particular pathogen, but the combination of pathogens and introduced and invasive insects that will likely carry them.


Assuntos
Abelhas/virologia , Borboletas/parasitologia , Ilhas , Polinização , Vespas/virologia , Animais , Vírus de Insetos , Espécies Introduzidas
7.
PLoS One ; 16(6): e0251884, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34077444

RESUMO

Varroa mites (Varroa destructor) are parasitic mites that, combined with other factors, are contributing to high levels of honey bee (Apis mellifera) colony losses. A Varroa-active dsRNA was recently developed to control Varroa mites within honey bee brood cells. This dsRNA has 372 base pairs that are homologous to a sequence region within the Varroa mite calmodulin gene (cam). The Varroa-active dsRNA also shares a 21-base pair match with monarch butterfly (Danaus plexippus) calmodulin mRNA, raising the possibility of non-target effects if there is environmental exposure. We chronically exposed the entire monarch larval stage to common (Asclepias syriaca) and tropical (Asclepias curassavica) milkweed leaves treated with concentrations of Varroa-active dsRNA that are one- and ten-fold higher than those used to treat honey bee hives. This corresponded to concentrations of 0.025-0.041 and 0.211-0.282 mg/g leaf, respectively. Potassium arsenate and a previously designed monarch-active dsRNA with a 100% base pair match to the monarch v-ATPase A mRNA (leaf concentration was 0.020-0.034 mg/g) were used as positive controls. The Varroa mite and monarch-active dsRNA's did not cause significant differences in larval mortality, larval or pupal development, pupal weights, or adult eclosion rates when compared to negative controls. Irrespective of control or dsRNA treatment, larvae that consumed approximately 7500 to 10,500-mg milkweed leaf within 10 to 12 days had the highest pupal weights. The lack of mortality and sublethal effects following dietary exposure to dsRNA with 21-base pair and 100% base pair match to mRNAs that correspond to regulatory genes suggest monarch mRNA may be refractory to silencing by dsRNA or monarch dsRNase may degrade dsRNA to a concentration that is insufficient to silence mRNA signaling.


Assuntos
Borboletas/crescimento & desenvolvimento , Interações Hospedeiro-Parasita , Larva/crescimento & desenvolvimento , RNA de Cadeia Dupla/toxicidade , Varroidae/fisiologia , Animais , Borboletas/efeitos dos fármacos , Borboletas/genética , Borboletas/parasitologia , Larva/efeitos dos fármacos , Larva/genética , Larva/parasitologia
8.
PLoS One ; 16(5): e0250464, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-33951057

RESUMO

The pomegranate butterfly Deudorix (= Virachola) livia is the major pest of pomegranate, a crop of economic importance, in Oman. A species of parasitoid wasp in the hymenopteran family Scelionidae is responsible for high levels of mortality of its eggs. This wasp is described herein as Telenomus nizwaensis Polaszek sp. n., based on morphology and DNA sequence data. T. nizwaensis is currently known only from D. livia, which is also a pest of economic importance on other crops in North Africa, the Arabian Peninsula, and the Mediterranean. We summarise current knowledge of T. nizwaensis life-history and its potential to provide biological pest control.


Assuntos
Borboletas/parasitologia , Himenópteros/fisiologia , Óvulo/parasitologia , Animais , Interações Hospedeiro-Parasita , Omã , Controle Biológico de Vetores
9.
J Invertebr Pathol ; 183: 107544, 2021 07.
Artigo em Inglês | MEDLINE | ID: mdl-33582107

RESUMO

Many parasites have external transmission stages that persist in the environment prior to infecting a new host. Understanding how long these stages can persist, and how abiotic conditions such as temperature affect parasite persistence, is important for predicting infection dynamics and parasite responses to future environmental change. In this study, we explored environmental persistence and thermal tolerance of a debilitating protozoan parasite that infects monarch butterflies. Parasite transmission occurs when dormant spores, shed by adult butterflies onto host plants and other surfaces, are later consumed by caterpillars. We exposed parasite spores to a gradient of ecologically-relevant temperatures for 2, 35, or 93 weeks. We tested spore viability by feeding controlled spore doses to susceptible monarch larvae, and examined relationships between temperature, time, and resulting infection metrics. We also examined whether distinct parasite genotypes derived from replicate migratory and resident monarch populations differed in their thermal tolerance. Finally, we examined evidence for a trade-off between short-term within-host replication and long-term persistence ability. Parasite viability decreased in response to warmer temperatures over moderate-to-long time scales. Individual parasite genotypes showed high heterogeneity in viability, but differences did not cluster by migratory vs. resident monarch populations. We found no support for a negative relationship between environmental persistence and within-host replication, as might be expected if parasites invest in short-term reproduction at the cost of longer-term survival. Findings here indicate that dormant spores can survive for many months under cooler conditions, and that heat dramatically shortens the window of transmission for this widespread and virulent butterfly parasite.


Assuntos
Apicomplexa/fisiologia , Borboletas/parasitologia , Animais , Borboletas/crescimento & desenvolvimento , Feminino , Larva/crescimento & desenvolvimento , Larva/parasitologia , Masculino , Termotolerância , Estados Unidos
10.
J Chem Ecol ; 47(2): 175-191, 2021 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-33507456

RESUMO

Plants in the flowering stage need to ensure reproduction by protecting themselves from attack and by preserving interactions with mutualist pollinators. When different plant mutualists are using the same type of cues, such as volatile compounds, attraction of parasitoids and pollinators may trade off. To explore this, we compared volatile emission of Brassica nigra plants in response to single or dual attack on their inflorescences. Additionally, we recorded flower visitation by pollinators and the attraction of parasitoids in the greenhouse and/or field. Brassica nigra were exposed in the flowering stage to one or two of the following three attackers: Brevicoryne brassicae aphids, Pieris brassicae caterpillars, and Xanthomonas campestris pv. raphani bacteria. We found that single attack by caterpillars, and dual attack by caterpillars plus aphids, induced the strongest changes in plant volatile emission. The caterpillars' parasitoid C. glomerata did not exhibit preference for plants exposed to caterpillars only vs. plants exposed to caterpillars plus aphids or plus bacteria. However, the composition of the pollinator community associated with flowers of B. nigra was affected by plant exposure to the attackers, but the total number of pollinators visiting the plants did not change upon attack. We conclude that, when B. nigra were exposed to single or dual attack on their inflorescences, the plants maintained interactions with natural enemies of the insect attackers and with pollinators. We discuss how chemical diversity may contribute to plant resilience upon attack.


Assuntos
Afídeos/fisiologia , Borboletas/fisiologia , Herbivoria , Mostardeira/fisiologia , Polinização , Vespas/fisiologia , Animais , Borboletas/parasitologia , Feminino , Aptidão Genética , Interações Hospedeiro-Parasita , Larva/parasitologia , Larva/fisiologia , Mostardeira/química , Oviposição , Sementes/crescimento & desenvolvimento , Compostos Orgânicos Voláteis/análise
11.
Artigo em Inglês | MEDLINE | ID: mdl-32438058

RESUMO

Endoparasitoid wasps inject venom along with their eggs to adjust the physiological and nutritional environment inside their hosts to benefit the development of their offspring. In particular, wasp venoms are known to modify host lipid metabolism, lipid storage in the fat body, and release of lipids into the hemolymph, but how venoms accomplish these functions remains unclear. Here, we use an UPLC-MS-based lipidomics approach to analyze the identities and concentrations of lipids in both fat body and hemolymph of host cabbage butterfly (Pieris rapae) infected by the pupal endoparasitoid Pteromalus puparum. During infection, host fat body levels of highly unsaturated, soluble triacylglycerides (TAGs) increased while less unsaturated, less soluble forms decreased. Furthermore, in infected host hemolymph, overall levels of TAG and phospholipids (the major component of cell membranes) increased, suggesting that fat body cells are destroyed and their contents are dispersed. Altogether, these data suggest that wasp venom induces host fat body TAGs to be transformed into lower melting point (more liquid) forms and released into the host hemolymph following infection, allowing simple absorption and nutritional acquisition by wasp larvae. Finally, cholesteryl esters (CEs, a dietary lipid derived from cholesterol) increased in host hemolymph following infection with no concomitant decrease in host cholesterol, implying that the wasp may provide this necessary food resource to its offspring via its venom. This study provides novel insight into how parasitoid infection alters lipid metabolism in insect hosts, and begins to uncover the wasp venom proteins responsible for host physiological changes and offspring development.


Assuntos
Borboletas/metabolismo , Borboletas/parasitologia , Corpo Adiposo/metabolismo , Hemolinfa/metabolismo , Interações Hospedeiro-Parasita , Metabolismo dos Lipídeos , Vespas/fisiologia , Animais , Feminino , Glicerídeos/metabolismo , Lipidômica , Masculino , Fosfolipídeos/metabolismo , Pupa/fisiologia
12.
Proc Biol Sci ; 287(1926): 20200443, 2020 05 13.
Artigo em Inglês | MEDLINE | ID: mdl-32345166

RESUMO

Polymorphic Batesian mimics exhibit multiple protective morphs that each mimic a different noxious model. Here, we study the genomic transitions leading to the evolution of different mimetic wing patterns in the polymorphic Mocker Swallowtail Papilio dardanus. We generated a draft genome (231 Mb over 30 chromosomes) and re-sequenced individuals of three morphs. Genome-wide single nucleotide polymorphism (SNP) analysis revealed elevated linkage disequilibrium and divergence between morphs in the regulatory region of engrailed, a developmental gene previously implicated in the mimicry switch. The diverged region exhibits a discrete chromosomal inversion (of 40 kb) relative to the ancestral orientation that is associated with the cenea morph, but not with the bottom-recessive hippocoonides morph or with non-mimetic allopatric populations. The functional role of this inversion in the expression of the novel phenotype is currently unknown, but by preventing recombination, it allows the stable inheritance of divergent alleles enabling geographic spread and local coexistence of multiple adaptive morphs.


Assuntos
Mimetismo Biológico/fisiologia , Borboletas/parasitologia , Inversão Cromossômica , Animais , Genes de Insetos , Genômica , Desequilíbrio de Ligação , Fenótipo , Sequências Reguladoras de Ácido Nucleico , Asas de Animais
13.
J Invertebr Pathol ; 170: 107328, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-31952966

RESUMO

Many parasites are constrained to only one or a few hosts, showing host specificity. It remains unclear why some parasites are specialists and other parasites are generalists. The parasite Ophryocystis elektroscirrha (OE) is a neogregarine protozoan thought to be restricted to monarch butterflies, Danaus plexippus (Nymphaliae) and D. gilippus. Recently, we found OE-like spores in other Lepidoptera, specifically in three noctuid moths: Helicoverpa armigera, H. assulta and H. punctigera, as well as another nymphalid, Parthenos sylvia. To our knowledge, this is the first report of OE-like parasite infections in species other than the genus Danaus. In sequencing 558 bp of 18S rRNA, we found the genetic similarity between OE from D. plexippus and OE-like parasite from the moths H. armigera and H. punctigera to be 95.2%. When we conducted cross-species infection experiments, we could not infect the moths with OE from D. plexippus, but OE-like parasite from H. armigera did infect D. plexippus and a closely related moth species Heliothis virescens. Interestingly, we did not find the OE-like parasite in the H. armigera population from Spain. Inter-population infection experiments with H. armigera demonstrated a higher sensitivity to OE-like infection in the population from Spain compared to the populations from Australia and China. These results suggest geographic variation in OE-like susceptibility and coevolution between parasite and host. Our findings give important new insights into the prevalence and host specificity of OE and OE-like parasites, and provide opportunities to study parasite transmission over spatial and temporal scales.


Assuntos
Apicomplexa/fisiologia , Borboletas/parasitologia , Especificidade de Hospedeiro , Interações Hospedeiro-Parasita , Mariposas/parasitologia , Animais , Borboletas/crescimento & desenvolvimento , Larva/crescimento & desenvolvimento , Larva/parasitologia , Mariposas/crescimento & desenvolvimento , Pupa/crescimento & desenvolvimento , Pupa/parasitologia , Especificidade da Espécie
14.
Arch Insect Biochem Physiol ; 103(2): e21632, 2020 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-31621105

RESUMO

Biogenic amines (BAs), such as octopamine, tyramine, dopamine, serotonin, and acetylcholine regulate various behaviors and physiological functions in insects. Here, we identified seven genes encoding BA biosynthetic enzymes and 16 genes encoding BA G protein-coupled receptors in the genome of the endoparasitoid wasp, Pteromalus puparum. We compared the genes with their orthologs in its host Pieris rapae and the related ectoparasitic wasp Nasonia vitripennis. All the genes show high (>90%) identity to orthologs in N. vitripennis. P. puparum and N. vitripennis have the smallest number of BA receptor genes among the insect species we investigated. We then analyzed the expression profiles of the genes, finding those acting in BA biosynthesis were highly expressed in adults and larvae and those encoding BA receptors are highly expressed in adults than immatures. Octα1R and 5-HT7 genes were highly expressed in salivary glands, and a high messenger RNA level of 5-HT1A was found in venom apparatuses. We infer that BA signaling is a fundamental component of the organismal organization, homeostasis and operation in parasitoids, some of the smallest insects.


Assuntos
Aminas Biogênicas/metabolismo , Borboletas/genética , Proteínas de Insetos/genética , Vespas/genética , Sequência de Aminoácidos , Animais , Borboletas/química , Borboletas/metabolismo , Borboletas/parasitologia , Embrião não Mamífero/química , Embrião não Mamífero/metabolismo , Feminino , Perfilação da Expressão Gênica , Interações Hospedeiro-Parasita , Proteínas de Insetos/química , Proteínas de Insetos/metabolismo , Larva/genética , Larva/metabolismo , Masculino , Filogenia , Pupa/genética , Pupa/metabolismo , Alinhamento de Sequência , Vespas/enzimologia , Vespas/crescimento & desenvolvimento , Vespas/metabolismo
15.
Proc Biol Sci ; 286(1910): 20191630, 2019 09 11.
Artigo em Inglês | MEDLINE | ID: mdl-31480975

RESUMO

Understanding factors that allow highly virulent parasites to reach high infection prevalence in host populations is important for managing infection risks to human and wildlife health. Multiple transmission routes have been proposed as one mechanism by which virulent pathogens can achieve high prevalence, underscoring the need to investigate this hypothesis through an integrated modelling-empirical framework. Here, we examine a harmful specialist protozoan infecting monarch butterflies that commonly reaches high prevalence (50-100%) in resident populations. We integrate field and modelling work to show that a combination of three empirically-supported transmission routes (vertical, adult transfer and environmental transmission) can produce and sustain high infection prevalence in this system. Although horizontal transmission is necessary for parasite invasion, most new infections post-establishment arise from vertical transmission. Our study predicts that multiple transmission routes, coupled with high parasite virulence, can reduce resident host abundance by up to 50%, suggesting that the protozoan could contribute to declines of North American monarchs.


Assuntos
Borboletas/parasitologia , Animais , Interações Hospedeiro-Parasita , Prevalência , Virulência
16.
Braz. j. biol ; 79(3): 377-382, July-Sept. 2019. tab, graf
Artigo em Inglês | LILACS | ID: biblio-1001454

RESUMO

Abstract Brazil is a leading palm oil producer, but the defoliating caterpillars Opsiphanes invirae Hübner Brassolis sophorae L. (Lepidoptera: Nymphalidae) can reduce the productivity of this crop. The aim of this study was to evaluate the development and reproduction of the parasitoid Trichospilus diatraeae Cherian & Margabandhu (Hymenoptera: Eulophidae) in pupae of these oil palm defoliators. Ten O. invirae or B. sophorae pupae with up to two days old were exposed each to 30 T. diatraeae females for 48 hours. Parasitism and emergence of the progeny of T. diatraeae were similar in pupae of both Lepidoptera defoliators. The life cycle of this parasitoid was shorter in O. invirae (21.50 ± 0.42 days) pupae than with those of B. sophorae (27.60 ± 1.80 days). The number of the progeny (669.00 ± 89.62) and dead immature (217.13 ± 58.18) of T. diatraeae were higher in B. sophorae pupae than in those of O. invirae with 447.83 ± 51.52 and 13.50 ± 5.23, respectively. The sex ratio and female and male longevity of T. diatraeae emerged from these hosts were similar. The reproductive traits, especially the number of individuals (offspring) of T. diatraeae were better with B. sophorae pupae than with those of O. invirae.


Resumo O Brasil é um dos principais produtores de óleo de palma, porém as lagartas desfolhadoras Opsiphanes invirae Hübner e Brassolis sophorae L. (Lepidoptera: Nymphalidae) podem comprometer a produtividade dessa cultura. O objetivo deste trabalho foi avaliar o desenvolvimento e aspectos reprodutivos do parasitoide Trichospilus diatraeae Cherian & Margabandhu (Hymenoptera: Eulophidae) em pupas desses desfolhadores da palma de óleo. Dez pupas de O. invirae ou de B. sophorae com até dois dias de idade, foram expostas, cada uma, ao parasitismo por 30 fêmeas de T. diatraeae , por 48 horas. O parasitismo e a emergência da progênie de T. diatraeae foram semelhantes em pupas de ambas as espécies de lepidópteros desfolhadores da palma de óleo. O ciclo de vida desse parasitoide foi mais curto em pupas de O. invirae (21,50 ± 0,42 dias) que com as de B. sophorae (27,60 ± 1,80 dias). O número de progênie (669,00 ± 89,62) e de imaturos mortos (217,13 ± 58,18) de T. diatraeae foram maiores em pupas de B. sophorae que naquelas de O. invirae com 447,83 ± 51,52 e 13,50 ± 5,23, respectivamente. A razão sexual e a longevidade de fêmeas e machos de T. diatraeae emergidos desses hospedeiros foram semelhantes. As características reprodutivas, especialmente, o número de indivíduos (progênie) de T. diatraeae foram melhores com pupas de B. sophorae que com as de O. invirae .


Assuntos
Animais , Masculino , Feminino , Vespas/fisiologia , Borboletas/parasitologia , Herbivoria , Interações Hospedeiro-Parasita , Reprodução , Vespas/crescimento & desenvolvimento , Brasil , Borboletas/crescimento & desenvolvimento , Folhas de Planta/crescimento & desenvolvimento , Arecaceae/crescimento & desenvolvimento , Larva/crescimento & desenvolvimento , Larva/fisiologia , Larva/parasitologia
17.
Pest Manag Sci ; 75(12): 3346-3355, 2019 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-31054206

RESUMO

BACKGROUND: Midgut and salivary gland α-amylases are digestive enzymes required for the development of insects and have been investigated in some insect species. However, α-amylases in the endoparasitioid wasps have not been reported. Pteromalus puparum (Hymenoptera: Pteromalidae) is a dominant endoparasitioid wasp that parasitizes many butterfly species, including the Brassicaceae pest Pieris rapae (Lepidoptera: Pieridae). Here, we studied the characteristics and functions of three α-amylases in P. puparum. RESULTS: We cloned three genes encoding α-amylases in P. puparum, PpAmy1, PpAmy2 and PpAmy3. The full length of the PpAmy1 cDNA is 1872 bp, encoding 496 amino acids, the PpAmy2 cDNA is 1863 bp long, encoding 518 amino acids, and PpAmy3 cDNA consists of 1802 bp encoding 521 amino acids. PpAmys are highly similar in amino acid sequences, but they have separate tissue distributions. Phylogenetic results show that gene duplications may occur between PpAmy2 and PpAmy3. PpAmy1 and PpAmy3 are most highly expressed in the digestive tract and the venom apparatus, respectively, while PpAmy2 is broadly expressed in all tissues. We report that PpAmy1 acts in the digestive tract, where it influences lifespan as demonstrated using RNAi and α-amylase rescue analyses, and there is no significant difference in longevity when PpAmy2 and PpAmy3 are knocked down. CONCLUSION: PpAmys probably have roles in carbohydrate metabolism of P. puparum and its host/parasitoid relationships. The characterization and functional study of PpAmys lays the foundation for the protection and utilization of parasitoid resources, and the biological control of agricultural pests. © 2019 Society of Chemical Industry.


Assuntos
Proteínas de Insetos/genética , Vespas/fisiologia , alfa-Amilases/genética , Animais , Borboletas/crescimento & desenvolvimento , Borboletas/parasitologia , Feminino , Trato Gastrointestinal/enzimologia , Interações Hospedeiro-Parasita , Proteínas de Insetos/metabolismo , Longevidade/fisiologia , Pupa/crescimento & desenvolvimento , Pupa/parasitologia , Interferência de RNA , Transcriptoma , Vespas/enzimologia , alfa-Amilases/metabolismo
18.
Braz J Biol ; 79(3): 377-382, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-30484477

RESUMO

Brazil is a leading palm oil producer, but the defoliating caterpillars Opsiphanes invirae Hübner Brassolis sophorae L. (Lepidoptera: Nymphalidae) can reduce the productivity of this crop. The aim of this study was to evaluate the development and reproduction of the parasitoid Trichospilus diatraeae Cherian & Margabandhu (Hymenoptera: Eulophidae) in pupae of these oil palm defoliators. Ten O. invirae or B. sophorae pupae with up to two days old were exposed each to 30 T. diatraeae females for 48 hours. Parasitism and emergence of the progeny of T. diatraeae were similar in pupae of both Lepidoptera defoliators. The life cycle of this parasitoid was shorter in O. invirae (21.50 ± 0.42 days) pupae than with those of B. sophorae (27.60 ± 1.80 days). The number of the progeny (669.00 ± 89.62) and dead immature (217.13 ± 58.18) of T. diatraeae were higher in B. sophorae pupae than in those of O. invirae with 447.83 ± 51.52 and 13.50 ± 5.23, respectively. The sex ratio and female and male longevity of T. diatraeae emerged from these hosts were similar. The reproductive traits, especially the number of individuals (offspring) of T. diatraeae were better with B. sophorae pupae than with those of O. invirae.


Assuntos
Borboletas/parasitologia , Herbivoria , Interações Hospedeiro-Parasita , Vespas/fisiologia , Animais , Arecaceae/crescimento & desenvolvimento , Brasil , Borboletas/crescimento & desenvolvimento , Feminino , Larva/crescimento & desenvolvimento , Larva/parasitologia , Larva/fisiologia , Masculino , Folhas de Planta/crescimento & desenvolvimento , Reprodução , Vespas/crescimento & desenvolvimento
19.
Proc Biol Sci ; 285(1885)2018 08 22.
Artigo em Inglês | MEDLINE | ID: mdl-30135149

RESUMO

Climate change can increase spatial synchrony of population dynamics, leading to large-scale fluctuation that destabilizes communities. High trophic level species such as parasitoids are disproportionally affected because they depend on unstable resources. Most parasitoid wasps have complementary sex determination, producing sterile males when inbred, which can theoretically lead to population extinction via the diploid male vortex (DMV). We examined this process empirically using a hyperparasitoid population inhabiting a spatially structured host population in a large fragmented landscape. Over four years of high host butterfly metapopulation fluctuation, diploid male production by the wasp increased, and effective population size declined precipitously. Our multitrophic spatially structured model shows that host population fluctuation can cause local extinctions of the hyperparasitoid because of the DMV. However, regionally it persists because spatial structure allows for efficient local genetic rescue via balancing selection for rare alleles carried by immigrants. This is, to our knowledge, the first empirically based study of the possibility of the DMV in a natural host-parasitoid system.


Assuntos
Borboletas/fisiologia , Borboletas/parasitologia , Interações Hospedeiro-Parasita , Vespas/fisiologia , Animais , Diploide , Masculino , Densidade Demográfica , Dinâmica Populacional , Suécia , Vespas/genética
20.
Ecol Lett ; 21(11): 1670-1680, 2018 11.
Artigo em Inglês | MEDLINE | ID: mdl-30152196

RESUMO

Environmental change induces some wildlife populations to shift from migratory to resident behaviours. Newly formed resident populations could influence the health and behaviour of remaining migrants. We investigated migrant-resident interactions among monarch butterflies and consequences for life history and parasitism. Eastern North American monarchs migrate annually to Mexico, but some now breed year-round on exotic milkweed in the southern US and experience high infection prevalence of protozoan parasites. Using stable isotopes (δ2 H, δ13 C) and cardenolide profiles to estimate natal origins, we show that migrant and resident monarchs overlap during fall and spring migration. Migrants at sites with residents were 13 times more likely to have infections and three times more likely to be reproductive (outside normal breeding season) compared to other migrants. Exotic milkweed might either attract migrants that are already infected or reproductive, or alternatively, induce these states. Increased migrant-resident interactions could affect monarch parasitism, migratory success and long-term conservation.


Assuntos
Migração Animal , Asclepias , Borboletas , Doenças Parasitárias , Animais , Borboletas/parasitologia , Estações do Ano
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