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1.
BMC Plant Biol ; 21(1): 19, 2021 Jan 06.
Artigo em Inglês | MEDLINE | ID: mdl-33407144

RESUMO

BACKGROUND: Crassulacean acid metabolism (CAM) photosynthesis is an important carbon fixation pathway especially in arid environments because it leads to higher water-use efficiency compared to C3 and C4 plants. However, the role of DNA methylation in regulation CAM photosynthesis is not fully understood. RESULTS: Here, we performed temporal DNA methylome and transcriptome analysis of non-photosynthetic (white base) and photosynthetic (green tip) tissues of pineapple leaf. The DNA methylation patterns and levels in these two tissues were generally similar for the CG and CHG cytosine sequence contexts. However, CHH methylation was reduced in white base leaf tissue compared with green tip tissue across diel time course in both gene and transposon regions. We identified thousands of local differentially methylated regions (DMRs) between green tip and white base at different diel periods. We also showed that thousands of genes that overlapped with DMRs were differentially expressed between white base and green tip leaf tissue across diel time course, including several important CAM pathway-related genes, such as beta-CA, PEPC, PPCK, and MDH. CONCLUSIONS: Together, these detailed DNA methylome and transcriptome maps provide insight into DNA methylation changes and enhance our understanding of the relationships between DNA methylation and CAM photosynthesis.


Assuntos
Ananas/genética , Ananas/fisiologia , Metabolismo Ácido das Crassuláceas/genética , Metabolismo Ácido das Crassuláceas/fisiologia , Epigênese Genética , Epigenoma , Perfilação da Expressão Gênica , Folhas de Planta/fisiologia , Metilação de DNA/genética , Metilação de DNA/fisiologia , Regulação da Expressão Gênica de Plantas , Genes de Plantas , Genoma de Planta , Redes e Vias Metabólicas/genética , Filogenia , Folhas de Planta/genética
2.
Molecules ; 26(11)2021 May 27.
Artigo em Inglês | MEDLINE | ID: mdl-34072026

RESUMO

Pineapple is consumed on a large scale around the world due to its appreciated sensorial characteristics. The industry of minimally processed pineapple produces enormous quantities of by-products (30-50%) which are generally undervalued. The end-of-life of pineapple by-products (PBP) can be replaced by reuse and renewal flows in an integrated process to promote economic growth by reducing consumption of natural resources and diminishing food waste. In our study, pineapple shell (PS) and pineapple core (PC), vacuum-packed separately, were subjected to moderate hydrostatic pressure (225 MPa, 8.5 min) (MHP) as abiotic stress to increase bromelain activity and antioxidant capacity. Pressurized and raw PBP were lyophilized to produce a stable powder. The dehydrated samples were characterized by the following methodologies: chemical and physical characterization, total phenolic compounds (TPC), antioxidant capacity, bromelain activity, microbiology, and mycotoxins. Results demonstrated that PBP are naturally rich in carbohydrates (66-88%), insoluble (16-28%) and soluble (2-4%) fiber, and minerals (4-5%). MHP was demonstrated to be beneficial in improving TPC (2-4%), antioxidant activity (2-6%), and bromelain activity (6-32%) without affecting the nutritional value. Furthermore, microbial and mycotoxical analysis demonstrated that powdered PC is a safe by-product. PS application is possible but requires previous decontamination to reduce the microbiological load.


Assuntos
Ananas/química , Ananas/fisiologia , Antioxidantes/química , Alimento Funcional/análise , Benzotiazóis/química , Compostos de Bifenilo/química , Bromelaínas/análise , Carboidratos/química , Técnicas de Química Analítica , Cor , Fibras na Dieta , Embalagem de Alimentos , Conservação de Alimentos , Liofilização , Frutas/química , Micotoxinas/química , Valor Nutritivo , Fenol/química , Picratos/química , Pós , Pressão , Ácidos Sulfônicos/química , Água/química
3.
Plant J ; 92(1): 19-30, 2017 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-28670834

RESUMO

The altered carbon assimilation pathway of crassulacean acid metabolism (CAM) photosynthesis results in an up to 80% higher water-use efficiency than C3 photosynthesis in plants making it a potentially useful pathway for engineering crop plants with improved drought tolerance. Here we surveyed detailed temporal (diel time course) and spatial (across a leaf gradient) gene and microRNA (miRNA) expression patterns in the obligate CAM plant pineapple [Ananas comosus (L.) Merr.]. The high-resolution transcriptome atlas allowed us to distinguish between CAM-related and non-CAM gene copies. A differential gene co-expression network across green and white leaf diel datasets identified genes with circadian oscillation, CAM-related functions, and source-sink relations. Gene co-expression clusters containing CAM pathway genes are enriched with clock-associated cis-elements, suggesting circadian regulation of CAM. About 20% of pineapple microRNAs have diel expression patterns, with several that target key CAM-related genes. Expression and physiology data provide a model for CAM-specific carbohydrate flux and long-distance hexose transport. Together these resources provide a list of candidate genes for targeted engineering of CAM into C3 photosynthesis crop species.


Assuntos
Ananas/genética , Carbono/metabolismo , Regulação da Expressão Gênica de Plantas , MicroRNAs/genética , Proteínas de Plantas/genética , Transcriptoma , Ananas/fisiologia , Relógios Circadianos , Fotossíntese , Estômatos de Plantas/genética , Estômatos de Plantas/fisiologia , RNA de Plantas/genética , Água/metabolismo
4.
Ann Bot ; 118(6): 1199-1208, 2016 11.
Artigo em Inglês | MEDLINE | ID: mdl-27578765

RESUMO

BACKGROUND AND AIMS: Bromeliads are able to occupy some of the most nutrient-poor environments especially because they possess absorptive leaf trichomes, leaves organized in rosettes, distinct photosynthetic pathways [C3, Crassulacean acid metabolism (CAM) or facultative C3-CAM], and may present an epiphytic habit. The more derived features related to these traits are described for the Tillandsioideae subfamily. In this context, the aims of this study were to evaluate how terrestrial predators contribute to the nutrition and performance of bromeliad species, subfamilies and ecophysiological types, whether these species differ in their ecophysiological traits and whether the physiological outcomes are consistent among subfamilies and types (e.g. presence/absence of tank, soil/tank/atmosphere source of nutrients, trichomes/roots access to nutrients). METHODS: Isotopic (15N-enriched predator faeces) and physiological methods (analyses of plant protein, amino acids, growth, leaf mass per area and total N incorporated) in greenhouse experiments were used to investigate the ecophysiological contrasts between Tillandsioideae and Bromelioideae, and among ecophysiological types when a predatory anuran contributes to their nutrition. KEY RESULTS: It was observed that Bromelioideae had higher concentrations of soluble protein and only one species grew more (Ananas bracteatus), while Tillandsioideae showed higher concentrations of total amino acids, asparagine and did not grow. The ecophysiological types that showed similar protein contents also had similar growth. Additionally, an ordination analysis showed that the subfamilies and ecophysiological types were discrepant considering the results of the total nitrogen incorporated from predators, soluble protein and asparagine concentrations, relative growth rate and leaf mass per area. CONCLUSIONS: Bromeliad subfamilies showed a trade-off between two strategies: Tillandsioideae stored nitrogen into amino acids possibly for transamination reactions during nutritional stress and did not grow, whereas Bromelioideae used nitrogen for soluble protein production for immediate utilization, possibly for fast growth. These results highlight that Bromeliaceae evolution may be directly associated with the ability to stock nutrients.


Assuntos
Bromeliaceae/metabolismo , Proteínas de Plantas/metabolismo , Aminoácidos/metabolismo , Aminoácidos/fisiologia , Ananas/metabolismo , Ananas/fisiologia , Asparagina/metabolismo , Asparagina/fisiologia , Bromelia/metabolismo , Bromelia/fisiologia , Bromeliaceae/crescimento & desenvolvimento , Bromeliaceae/fisiologia , Isótopos de Nitrogênio/metabolismo , Folhas de Planta/metabolismo , Folhas de Planta/fisiologia , Fenômenos Fisiológicos Vegetais , Proteínas de Plantas/fisiologia , Tillandsia/metabolismo , Tillandsia/fisiologia
5.
Physiol Plant ; 156(1): 29-39, 2016 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-26362993

RESUMO

Plants with the crassulacean acid metabolism (CAM) express high-metabolic plasticity, to adjust to environmental stresses. This article hypothesizes that irradiance and nocturnal temperatures are the major limitations for CAM at higher latitudes such as the Azores (37°45'N). Circadian CAM expression in Ananas comosus L. Merr. (pineapple) was assessed by the diurnal pattern of leaf carbon fixation into l-malate at the solstices and equinoxes, and confirmed by determining maximal phosphoenolpyruvate carboxylase (PEPC) activity in plant material. Metabolic adjustments to environmental conditions were confirmed by gas exchange measurements, and integrated with environmental data to determine CAM's limiting factors: light and temperature. CAM plasticity was observed at the equinoxes, under similar photoperiods, but different environmental conditions. In spring, CAM expression was similar between vegetative and flowering plants, while in autumn, flowering (before anthesis) and fructifying (with fully developed fruit before ripening) plants accumulated more l-malate. Below 100 µmol m(-2) s(-1) , CAM phase I was extended, reducing CAM phase III during the day. Carbon fixation inhibition may occur by two major pathways: nocturnal temperature (<15°C) inhibiting PEPC activity and l-malate accumulation; and low irradiance influencing the interplay between CAM phase I and III, affecting carboxylation and decarboxylation. Both have important consequences for plant development in autumn and winter. Observations were confirmed by flowering time prediction using environmental data, emphasizing that CAM expression had a strong seasonal regulation due to a complex network response to light and temperature, allowing pineapple to survive in environments not suitable for high productivity.


Assuntos
Ananas/fisiologia , Regulação da Expressão Gênica de Plantas , Malatos/metabolismo , Ananas/efeitos da radiação , Ciclo do Carbono , Clima , Meio Ambiente , Flores/fisiologia , Flores/efeitos da radiação , Luz , Fotoperíodo , Folhas de Planta/fisiologia , Folhas de Planta/efeitos da radiação , Transpiração Vegetal/fisiologia , Estações do Ano , Temperatura , Fatores de Tempo
6.
Cryo Letters ; 36(4): 226-36, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26575997

RESUMO

BACKGROUND: The purpose of this study was to develop an efficient cryopreservation protocol for pineapple (Ananas comosus Merr.) shoot tips. OBJECTIVE: The optimal state of pineapple plantlets was investigated by using sucrose preconditioning to enhance survival after cryostorage. METHODS: To achieve a suitable state of plantlets before cryopreservation, 0.2 M to 0.4 M sucrose concentrations combined with short- (0-7 days), medium- (15-30 days), and long-term (75-150 days) preconditioning periods were compared. RESULTS AND CONCLUSION: The highest survival (100 %) was achieved using the following procedure: intact plantlets underwent long-term preconditioning with 0.2 M sucrose for 135 days, dissected shoot tips were treated with a loading solution containing 2.0 M glycerol + 0.4 M sucrose for 60 min at 25 degree and the shoot tips were dehydrated in PVS2 for 2h at 0 degree C before being plunged in liquid nitrogen. Rewarming was conducted in a water-bath for 30 s at 40 degree C and PVS2 was replaced with a 1.2 M sucrose solution for 30 min at 25 degree C. The shoot tips were transferred on semisolid medium and left in the dark for 1 week, then in dim light for 3 weeks.


Assuntos
Ananas/fisiologia , Criopreservação , Brotos de Planta/fisiologia , Vitrificação , Ananas/efeitos dos fármacos , Criopreservação/métodos , Crioprotetores/farmacologia , Glicerol/farmacologia , Brotos de Planta/efeitos dos fármacos , Sacarose/farmacologia
7.
J Exp Bot ; 65(13): 3395-404, 2014 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-24692645

RESUMO

The innovation of crassulacean acid metabolism (CAM) photosynthesis in arid and/or low CO2 conditions is a remarkable case of adaptation in flowering plants. As the most important crop that utilizes CAM photosynthesis, the genetic and genomic resources of pineapple have been developed over many years. Genetic diversity studies using various types of DNA markers led to the reclassification of the two genera Ananas and Pseudananas and nine species into one genus Ananas and two species, A. comosus and A. macrodontes with five botanical varieties in A. comosus. Five genetic maps have been constructed using F1 or F2 populations, and high-density genetic maps generated by genotype sequencing are essential resources for sequencing and assembling the pineapple genome and for marker-assisted selection. There are abundant expression sequence tag resources but limited genomic sequences in pineapple. Genes involved in the CAM pathway has been analysed in several CAM plants but only a few of them are from pineapple. A reference genome of pineapple is being generated and will accelerate genetic and genomic research in this major CAM crop. This reference genome of pineapple provides the foundation for studying the origin and regulatory mechanism of CAM photosynthesis, and the opportunity to evaluate the classification of Ananas species and botanical cultivars.


Assuntos
Ananas/genética , Variação Genética , Genoma de Planta/genética , Genômica , Fotossíntese/genética , Ananas/fisiologia , Mapeamento Cromossômico , Epigenômica , Marcadores Genéticos/genética , Genótipo , Folhas de Planta/genética , Folhas de Planta/fisiologia
8.
Plant Cell Rep ; 32(11): 1807-18, 2013 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-23959598

RESUMO

KEY MESSAGE: Proteomic and transcriptomic profiles of key enzymes were monitored in pineapple plants propagated under C3 and CAM-inducing metabolisms to obtain insight into the CAM-facultative metabolism and the relationship of CAM plants with oxidative stress. ABSTRACT: Pineapple is one of the most important tropical crops worldwide. The use of temporary immersion bioreactors for the first stages of pineapple propagation enables precise control of plant growth, increases the rate of plant multiplication, decreases space, energy and labor requirements for pineapple plants in commercial micropropagation. Once the plantlets are ready to be taken from the reactors, they are carefully acclimatized to natural environmental conditions, and a facultative C3/CAM metabolism in the first 2 months of growth is the characteristic of pineapple plants, depending on environmental conditions. We subjected two sets of micropropagated pineapple plants to C3 and CAM-inducing environmental conditions, determined by light intensity/relative humidity (respectively 40 µmol m−2 s−1/85 % and 260 µmol m−2 s−1/50 %). Leaves of pineapple plants grown under CAM-inducing conditions showed higher leaf thickness and more developed cuticles and hypodermic tissue. Proteomic profiles of several proteins, isoenzyme patterns and transcriptomic profiles were also measured. Five major spots were isolated and identified, two of them for the first time in Ananas comosus (OEE 1; OEE 2) and the other three corresponding to small fragments of the large subunit of Rubisco (LSU). PEPC and PEPCK were also detected by immunobloting of 2DE at the end of both ex vitro treatments (C3/CAM) during the dark period. Isoenzymes of SOD and CAT were identified by electrophoresis and the transcript levels of OEE 1 and CAT were associated with CAM metabolism in pineapple plants.


Assuntos
Ananas/genética , Ananas/fisiologia , Carbono/metabolismo , Meio Ambiente , Perfilação da Expressão Gênica , Proteômica , Sequência de Aminoácidos , Ananas/anatomia & histologia , Ananas/enzimologia , Eletroforese em Gel Bidimensional , Regulação da Expressão Gênica de Plantas , Concentração de Íons de Hidrogênio , Espectrometria de Massas , Dados de Sequência Molecular , Exsudatos de Plantas/metabolismo , Folhas de Planta/anatomia & histologia , Folhas de Planta/enzimologia , Folhas de Planta/genética , Proteínas de Plantas/química , Proteínas de Plantas/genética , Proteínas de Plantas/metabolismo , RNA Mensageiro/genética , RNA Mensageiro/metabolismo
9.
BMC Plant Biol ; 12: 240, 2012 Dec 18.
Artigo em Inglês | MEDLINE | ID: mdl-23245313

RESUMO

BACKGROUND: Pineapple (Ananas comosus) is a tropical fruit crop of significant commercial importance. Although the physiological changes that occur during pineapple fruit development have been well characterized, little is known about the molecular events that occur during the fruit ripening process. Understanding the molecular basis of pineapple fruit ripening will aid the development of new varieties via molecular breeding or genetic modification. In this study we developed a 9277 element pineapple microarray and used it to profile gene expression changes that occur during pineapple fruit ripening. RESULTS: Microarray analyses identified 271 unique cDNAs differentially expressed at least 1.5-fold between the mature green and mature yellow stages of pineapple fruit ripening. Among these 271 sequences, 184 share significant homology with genes encoding proteins of known function, 53 share homology with genes encoding proteins of unknown function and 34 share no significant homology with any database accession. Of the 237 pineapple sequences with homologs, 160 were up-regulated and 77 were down-regulated during pineapple fruit ripening. DAVID Functional Annotation Cluster (FAC) analysis of all 237 sequences with homologs revealed confident enrichment scores for redox activity, organic acid metabolism, metalloenzyme activity, glycolysis, vitamin C biosynthesis, antioxidant activity and cysteine peptidase activity, indicating the functional significance and importance of these processes and pathways during pineapple fruit development. Quantitative real-time PCR analysis validated the microarray expression results for nine out of ten genes tested. CONCLUSIONS: This is the first report of a microarray based gene expression study undertaken in pineapple. Our bioinformatic analyses of the transcript profiles have identified a number of genes, processes and pathways with putative involvement in the pineapple fruit ripening process. This study extends our knowledge of the molecular basis of pineapple fruit ripening and non-climacteric fruit ripening in general.


Assuntos
Ananas/genética , Frutas/genética , Análise em Microsséries , Transcriptoma , Ananas/fisiologia , Análise por Conglomerados , Biologia Computacional , DNA de Plantas/genética , Etiquetas de Sequências Expressas , Frutas/fisiologia , Redes e Vias Metabólicas , Reação em Cadeia da Polimerase em Tempo Real
10.
Plant Cell Rep ; 31(4): 757-69, 2012 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-22134875

RESUMO

Many plant species grown under in vitro controlled conditions can be used as models for the study of physiological processes. Adult pineapple can display CAM physiology while in vitro it functions as a C3 plant. Ex vitro Ananas comosus has plastic morphology and physiology, both easy to modify from C3 to CAM by changing the environmental conditions. The yield of survival for a rentable propagation protocol of pineapple is closely related with the C3/CAM shift and the associated physiological characteristics. In the present work, ex vitro pineapple plants were divided in two sets and subjected to C3 and CAM-inducing environmental conditions, determined by light intensity and relative humidity, respectively, 40 µmol m(-2) s(-1)/85% and 260 µmol m(-2) s(-1)/50%. The results demonstrated that the stress imposed by the environmental conditions switched pineapple plants from C3 to CAM behavior. Comparing to CAM induced, C3-induced pineapple plants showed substandard growth parameters and morphological leaf characteristics but a better rooting process and a higher ABA production, a phenotype closer to adult plants, which are expected to produce fruits in a normal production cycle. We conclude that the upholding of these characteristics is conditioned by low light intensity plus high relative humidity, especially during the first 8 weeks of ex vitro growth. It is expected that the better understanding of pineapple acclimatization will contribute to the design of a protocol to apply as a rentable tool in the pineapple agronomic industry.


Assuntos
Aclimatação/fisiologia , Ananas/fisiologia , Carbono/metabolismo , Ácido Abscísico/análise , Ácido Abscísico/metabolismo , Irrigação Agrícola , Ananas/crescimento & desenvolvimento , Ananas/efeitos da radiação , Biomassa , Clorofila/metabolismo , Clorofila A , Meio Ambiente , Fluorescência , Umidade , Luz , Malatos/análise , Malatos/metabolismo , Estresse Oxidativo/fisiologia , Fotossíntese/fisiologia , Folhas de Planta/crescimento & desenvolvimento , Folhas de Planta/fisiologia , Folhas de Planta/efeitos da radiação , Temperatura , Ceras/análise , Ceras/metabolismo
11.
Sci Rep ; 12(1): 8749, 2022 05 24.
Artigo em Inglês | MEDLINE | ID: mdl-35610243

RESUMO

Pineapples are an important agricultural economic crop in Taiwan. Considerable human resources are required to protect pineapples from excessive solar radiation, which could otherwise lead to overheating and subsequent deterioration. Note that simple covering all of the fruit with a paper bag is not a viable solution, due to the fact that it makes it impossible to determine whether the fruit is ripe. This paper proposes a system by which to automate the detection of ripe pineapples. The proposed deep learning architecture enables detection regardless of lighting conditions, achieving accuracy of more than 99.27% with error of less than 2% at distances of 300 ~ 800 mm. This proposed system using an Nvidia TX2 is capable of 15 frames per second, thereby making it possible to mount the device on machines that move at walking speed.


Assuntos
Ananas , Aprendizado Profundo , Ananas/crescimento & desenvolvimento , Ananas/fisiologia , Ananas/efeitos da radiação , Frutas/crescimento & desenvolvimento , Frutas/fisiologia , Frutas/efeitos da radiação , Humanos , Proteção Radiológica/instrumentação , Proteção Radiológica/métodos , Luz Solar/efeitos adversos , Taiwan
12.
Genes (Basel) ; 10(7)2019 07 16.
Artigo em Inglês | MEDLINE | ID: mdl-31315260

RESUMO

Xyloglucan endotransglycosylase/hydrolase (XTH) is a cell-wall-modifying enzyme participating in diverse cell morphogenetic processes and adaptation to stress. In this study, 48 XTH genes were identified from two pineapple (Ananas comosus) cultivars ('F153' and 'MD2') and designated Ac(F153)XTH1 to -24 and Ac(MD2)XTH1 to -24 based on their orthology with Arabidopsis thaliana genes. Endoglucanase family 16 members were identified in addition to XTHs of glycoside hydrolase family 16. Phylogenetic analysis clustered the XTHs into three major groups (Group I/II, III and Ancestral Group) and Group III was subdivided into Group IIIA and Group IIIB. Similar gene structure and motif number were observed within a group. Two highly conserved domains, glycosyl hydrolase family 16 (GH16-XET) and xyloglucan endotransglycosylase C-terminus (C-XET), were detected by multiple sequences alignment of all XTHs. Segmental replication were detected in the two cultivars, with only the paralogous pair Ac(F153)XTH7-Ac(F153)XTH18 presented in 'F153' prior to genomic expansion. Transcriptomic analysis indicated that XTHs were involved in the regulation of fruit ripening and crassulacean acid metabolism with tissue specificity and quantitative real-time PCR analysis suggested that Ac(MD2)XTH18 was involved in root growth. The results enhance our understanding of XTHs in the plant kingdom and provide a basis for further studies of functional diversity in A. comosus.


Assuntos
Ananas/fisiologia , Genoma de Planta , Estudo de Associação Genômica Ampla , Genômica , Glicosiltransferases/genética , Hidrolases/genética , Ananas/classificação , Fenômenos Químicos , Mapeamento Cromossômico , Biologia Computacional/métodos , Duplicação Gênica , Perfilação da Expressão Gênica , Genômica/métodos , Glicosiltransferases/química , Família Multigênica , Filogenia
13.
Med J Malaysia ; 63 Suppl A: 107-8, 2008 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-19025008

RESUMO

Large quantities of agro-based liquid wastes are produced every year and their disposal is often a problem for industries. In light of that, in this study prudent effort was done to screen the agro-industrial wastes - pineapple waste (PAW) and palm oil mill effluent (POME) for valuable biophenols product. Three different solvents; ethanol, acetone and distilled water were screened in order to enhance the process. All experiments were performed using fixed process conditions of solid to solvent ratio, temperatures, time and agitation speed. Effectiveness of extraction process to produce biophenol was based on high amount with more activity. POME was selected as potential source with biophenol content of 125.42 mg/L GAE.


Assuntos
Agricultura , Ananas/química , Exposição Ambiental , Poluentes Ambientais , Indústrias , Fenóis/farmacologia , Extratos Vegetais/farmacologia , Óleos de Plantas/farmacologia , Ananas/fisiologia , Humanos , Óleo de Palmeira , Projetos Piloto , Solventes/química
14.
Methods Mol Biol ; 1815: 269-277, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29981128

RESUMO

Cryopreservation is a technique that allows the conservation of many species for long periods. Among the protocols used for cryopreservation, droplet vitrification has shown efficient results in preserving shoot tips of various wild and cultivated pineapple genotypes. The method consists of extraction of shoot tips from plants grown in vitro, dehydration for a period of 48 h in a preculture medium supplemented with a high concentration of sucrose, treatment in a plant vitrification solution (PVS2), and immersion in liquid nitrogen. The method described in this chapter has produced survival and regeneration indices of around 70%, depending on the genotype and physiological conditions of the initial explants. The objective of this chapter is to describe in detail a droplet vitrification protocol for shoot tips that is easy to perform for cryopreservation of pineapple germplasm.


Assuntos
Ananas/fisiologia , Criopreservação/métodos , Brotos de Planta/fisiologia , Vitrificação , Nitrogênio , Soluções
15.
Methods Mol Biol ; 1815: 279-288, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29981129

RESUMO

Cryopreservation of pollen grains is an efficient technique to overcome asynchronous flowering and to support actions for genetic improvement and conservation of important alleles. It can be used both by germplasm curators and plant breeders. In the case of Bromeliaceae, a family with wide diversity but also high vulnerability, the form of conservation can be crucial to prevent the increasing problem of genetic erosion. This chapter describes a method of cryopreservation of pollen grains of different Bromeliaceae species, including pineapple, after dehydration with silica and subsequent immersion in liquid nitrogen. The efficiency of this protocol has been demonstrated by the high pollen viability percentage and production of seeds after in vivo pollination with cryopreserved grains. The protocol can be used for cryopreserving pollen of many species of bromeliads and is easy to perform.


Assuntos
Ananas/fisiologia , Bromeliaceae/fisiologia , Criopreservação/métodos , Pólen/fisiologia , Dessecação , Germinação , Inflorescência/fisiologia , Polinização/fisiologia
16.
Genome Biol Evol ; 9(9): 2170-2190, 2017 09 01.
Artigo em Inglês | MEDLINE | ID: mdl-28922793

RESUMO

Circadian clock provides fitness advantage by coordinating internal metabolic and physiological processes to external cyclic environments. Core clock components exhibit daily rhythmic changes in gene expression, and the majority of them are transcription factors (TFs) and transcription coregulators (TCs). We annotated 1,398 TFs from 67 TF families and 80 TCs from 20 TC families in pineapple, and analyzed their tissue-specific and diurnal expression patterns. Approximately 42% of TFs and 45% of TCs displayed diel rhythmic expression, including 177 TF/TCs cycling only in the nonphotosynthetic leaf tissue, 247 cycling only in the photosynthetic leaf tissue, and 201 cycling in both. We identified 68 TF/TCs whose cycling expression was tightly coupled between the photosynthetic and nonphotosynthetic leaf tissues. These TF/TCs likely coordinate key biological processes in pineapple as we demonstrated that this group is enriched in homologous genes that form the core circadian clock in Arabidopsis and includes a STOP1 homolog. Two lines of evidence support the important role of the STOP1 homolog in regulating CAM photosynthesis in pineapple. First, STOP1 responds to acidic pH and regulates a malate channel in multiple plant species. Second, the cycling expression pattern of the pineapple STOP1 and the diurnal pattern of malate accumulation in pineapple leaf are correlated. We further examined duplicate-gene retention and loss in major known circadian genes and refined their evolutionary relationships between pineapple and other plants. Significant variations in duplicate-gene retention and loss were observed for most clock genes in both monocots and dicots.


Assuntos
Ananas/fisiologia , Relógios Circadianos , Regulação da Expressão Gênica de Plantas , Proteínas de Plantas/genética , Fatores de Transcrição/genética , Ananas/genética , Perfilação da Expressão Gênica , Genoma de Planta , Especificidade de Órgãos
17.
J Plant Physiol ; 202: 121-33, 2016 Sep 01.
Artigo em Inglês | MEDLINE | ID: mdl-27517640

RESUMO

A typical symptom of postharvest chilling injury (PCI) in pineapple fruit (Ananas comosus (L.) Merr.) is internal browning (IB) near the fruit core. Since vascular bundles (VBs) are localized to this region, it was hypothesized that the VBs might be the site of IB. To test this, the anatomy and histochemistry of VBs during chilling stress in four pineapple cultivars with different levels of sensitivity to PCI were examined. Fruit were stored at 10°C for up to three weeks to stimulate translucency symptoms (TS; the initiation of IB). After three weeks of chilling exposure, the cultivars 'MD2' showed 0%, 'Pattavia' and 'Savee' showed 10-16%, and 'Trad Sri Thong' showed 100% TS and IB symptom. Scanning electron microscopy and in situ histochemical staining techniques that detect enzymes and substrates commonly associated with IB initiation were used in parallel. The TS of pineapple fruit coincided with the collapse of the phloem tissue. The VBs in the tissue where IB was initiated (i.e., the flesh adjacent to the core or F/C) had the highest activity of polyphenol oxidase, hydrogen peroxide, and phenolic compounds. The IB-resistant 'MD2' genotype had fewer VBs, but a greater proportion of sclerenchyma fibers (P<0.05) than did the susceptible 'Trad Sri Thong'. Based on these data, the first report of pineapple IB occurrence in the phloem was proposed.


Assuntos
Ananas/crescimento & desenvolvimento , Ananas/fisiologia , Frutas/fisiologia , Floema/fisiologia , Ananas/ultraestrutura , Catecol Oxidase/metabolismo , Temperatura Baixa , Frutas/ultraestrutura , Peróxido de Hidrogênio/metabolismo , Fenóis/metabolismo , Floema/anatomia & histologia , Floema/ultraestrutura , Coloração e Rotulagem
18.
J Plant Physiol ; 170(16): 1442-6, 2013 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-23777839

RESUMO

Blackheart is a physiological disorder induced by postharvest chilling storage during pineapple fruit export shipping. The aim of this study was to check the involvement of bromelain, the cysteine protease protein family abundantly present in pineapple fruits, and AcCYS1, an endogenous inhibitor of bromelain, in the development of blackheart. For this we checked the response to postharvest chilling treatment of two pineapple varieties (MD2 and Smooth Cayenne) differing in their resistance to blackheart. Quantitative RT-PCR analyses showed that postharvest chilling treatment induced a down-regulation of bromelain transcript accumulation in both varieties with the most dramatic drop in the resistant variety. Regarding AcCYS1 transcript accumulation, the varieties showed opposite trends with an up-regulation in the case of the resistant variety and a down-regulation in the susceptible one. Taken together our results suggest that the control of bromelain and AcCYS1 expression levels directly correlates to the resistance to blackheart development in pineapple fruits.


Assuntos
Ananas/fisiologia , Bromelaínas/genética , Cistatinas/genética , Regulação da Expressão Gênica de Plantas , Proteínas de Plantas/genética , Ananas/genética , Bromelaínas/metabolismo , Temperatura Baixa , Cistatinas/metabolismo , Frutas/genética , Frutas/fisiologia , Dados de Sequência Molecular , Proteínas de Plantas/metabolismo , Reação em Cadeia da Polimerase , Análise de Sequência de DNA
19.
Gene ; 500(1): 115-23, 2012 May 25.
Artigo em Inglês | MEDLINE | ID: mdl-22465534

RESUMO

The isolation and characterization of AcSERK2, another somatic embryogenesis receptor-like kinase (SERK) gene homolog, confirmed that there was a SERK gene family in pineapple. AcSERK2 shared high similarity to AcSERK1 and other SERKs, containing all the characteristic domains of the SERK family. The expressed recombinant protein of pET-AcSERK2 was soluble. AcSERK2 expression was effectively induced by 2,4-dichlorophenoxyacetic acid (2,4-D) and maintained in high level at the early stage of somatic embryogenesis (SE). The results of in situ hybridization showed that AcSERK2 expressed at high level in the competent cells under the induction of 2, 4-D and at low level during the development of meristematic center to globular embryo. This indicated that AcSERK2 could be used as a potential marker gene to monitor the acquisition of embryogenic competence. However, AcSERK2 expression was also detected in all the tested organs and the expression level decreased along with the development of calyx, ovule and ovary. These results suggested that AcSERK2 maybe play a broader role in organ development. AcSERK2 transcription could be induced by exogenous hormones and abiotic stress. It was deduced that AcSERK2 may participate in response to exogenous hormones and abiotic stress regulation in pineapple. The expression pattern of AcSERK2 during SE differed from that of AcSERK1, and this indicated that the SERK genes may be non-redundant in somatic embryogenesis.


Assuntos
Ananas/fisiologia , Proteínas de Plantas/genética , Proteínas de Plantas/metabolismo , Ananas/genética , Regulação da Expressão Gênica de Plantas , Sementes/metabolismo , Estresse Fisiológico
20.
Fungal Biol ; 115(12): 1251-8, 2011 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-22115444

RESUMO

Studies based on microbial ecology and antagonistic interactions play an important role in the development of new alternative strategies in controlling plant pathogens and are relevant to further biotechnological applications. Antagonistic interactions between the yeasts Candida krusei and Kloeckera apis isolated from rotten pineapple fruits, and two isolates of the pathogenic filamentous fungus Fusarium guttiforme (Syn.: Fusarium subglutinans f. sp. ananas) resistant and susceptible to fungicide benzimidazole were studied in broth culture, and on plate assays. The yeasts significantly reduced Fusarium conidial germination after 24h of cocultivation in broth culture, and also mycelial growth on plate assays. Slide coculture appeared to show attachment of yeasts to the hyphal surface and also slight morphological abnormalities caused by C. krusei. Filtrates of cocultures of fungi and yeasts inhibited fungal growth, but filtrates of the yeast cultures alone did not, suggesting that the antagonistic action of the yeasts is inducible. The F. guttiforme isolate sensitive to benzimidazole was most affected by both yeasts in pineapple juice, reaching a maximum of 36.5 % germ tube inhibition. This isolate was also inhibited by yeasts in mycocinogenic plate assay. These results demonstrated that C. krusei and K. apis are effective in inhibiting F. guttiforme growth and that the mode of action is associated with hyperparasitism and mycocinogenic activity.


Assuntos
Ananas/fisiologia , Antibiose , Candida/fisiologia , Fusarium/crescimento & desenvolvimento , Kloeckera/fisiologia , Doenças das Plantas/microbiologia , Ananas/microbiologia , Candida/isolamento & purificação , Fusarium/fisiologia , Kloeckera/isolamento & purificação
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