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1.
Plants (Basel) ; 12(15)2023 Jul 26.
Artigo em Inglês | MEDLINE | ID: mdl-37570923

RESUMO

Herbicides with desiccant actions may be used to anticipate the harvesting of soybean seeds. This technique aims to minimize the negative influence of biotic and abiotic factors on seed physiological quality at the end of the plant cycle. However, forced seed maturation with the application of herbicides can compromise the acquisition of seed quality components, especially longevity. Thus, the objective of this research was to evaluate the physiological quality of soybean seeds subjected to forced maturation with desiccants. The experiment was performed in a completely randomized design, with a treatment consisting of soybean plants subjected to the application of herbicides with desiccant action at stage R7.3 and another that underwent the natural process of maturation, that is, without herbicide application. The herbicide used was Paraquat. Seed germination, vigor (first germination count, dry mass, seedling length, time to reach 50% germination(t50), emergence index, and emergence speed), and longevity(P50) were evaluated. The herbicides did not affect germination (normal seedlings). However, the acquisition of vigor and longevity, and the preservation of seed vigor during storage were affected. Thus, the results indicate that the application of herbicide with desiccant action interrupts the process of acquisition of seed physiological quality, notably longevity in soybean seeds.

2.
Int J Mol Sci ; 23(21)2022 Nov 05.
Artigo em Inglês | MEDLINE | ID: mdl-36362362

RESUMO

A momentary increase in cytoplasmic Ca2+ generates an oscillation responsible for the activation of proteins, such as calmodulin and kinases, which interact with reactive oxygen species (ROS) for the transmission of a stress signal. This study investigated the influence of variations in calcium concentrations on plant defense signaling and photosynthetic acclimatization after mechanical damage. Solanum lycopersicum Micro-Tom was grown with 0, 2 and 4 mM Ca2+, with and without mechanical damage. The expression of stress genes was evaluated, along with levels of antioxidant enzymes, hydrogen peroxide, lipid peroxidation, histochemistry, photosynthesis and dry mass of organs. The ROS production generated by mechanical damage was further enhanced by calcium-free conditions due to the inactivation of the oxygen evolution complex, contributing to an increase in reactive species. The results indicated that ROS affected mechanical damage signaling because calcium-free plants exhibited high levels of H2O2 and enhanced expression of kinase and RBOH1 genes, necessary conditions for an efficient response to stress. We conclude that the plants without calcium supply recognized mechanical damage but did not survive. The highest expression of the RBOH1 gene and the accumulation of H2O2 in these plants signaled cell death. Plants grown in the presence of calcium showed higher expression of SlCaM2 and control of H2O2 concentration, thus overcoming the stress caused by mechanical damage, with photosynthetic acclimatization and without damage to dry mass production.


Assuntos
Solanum lycopersicum , Solanum lycopersicum/metabolismo , Peróxido de Hidrogênio/metabolismo , Espécies Reativas de Oxigênio/metabolismo , Sinalização do Cálcio , Fotossíntese/genética , Aclimatação , Antioxidantes/metabolismo , Expressão Gênica , Folhas de Planta/metabolismo
3.
PLoS One ; 15(2): e0229215, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32101558

RESUMO

We hypothesize that by simulating the natural priming in seeds of a species that forms transient seed banks it is possible to clarify molecular aspects of germination that lead to the recruitment of seedlings when the next rainy season begins. We used seeds of Solanum lycocarpum as a biological model. Our findings support the idea that the increment of seed germination kinetics when the rainy season returns is mainly based on the metabolism and embryonic growth, and that the hydropriming, at the end of seed dispersion, increases the germination window time of these seeds by mainly increasing the degradation of galactomannan of the cell wall. This can improve the energy supply (based on carbon metabolism) for seedling growth in post-germination, which improves the seedling's survival chances. From these findings, we promote a hypothetical model about how the priming at the end of the rainy season acts on mRNA synthesis in the germination of seeds from transient banks and the consequence of this priming at the beginning of the following rainy season. This model predicts that besides the Gibberellin and Abscisic Acid balance (content and sensitivity), Auxin would be a key component for the seed-seedling transition in Neotropical areas. Seed collection was performed under authorization number SISGEN AB0EB45.


Assuntos
Regulação da Expressão Gênica no Desenvolvimento , Germinação , Modelos Teóricos , Chuva , Banco de Sementes , Sementes/crescimento & desenvolvimento , Solanum lycopersicum/crescimento & desenvolvimento , Perfilação da Expressão Gênica , Regulação da Expressão Gênica de Plantas , Solanum lycopersicum/genética , Solanum lycopersicum/metabolismo , Dispersão de Sementes , Sementes/genética , Sementes/metabolismo , Transdução de Sinais
4.
Biosci. j. (Online) ; 33(6): 1412-1418, nov./dec. 2017. graf, tab
Artigo em Inglês | LILACS | ID: biblio-966459

RESUMO

Temperature can exert great influence on germination, being considered optimal the temperature in which seed expresses its maximum germination potential in the shortest period of time. The germination of parsley seeds is slow, irregular and uneven. The aim of this study was to determine whether there is occurrence of thermodormancy or thermoinhibition of parsley seeds as a function of temperature variations. The experimental design of the first stage was completely randomized (CRD) consisting of 7 temperatures and 4 replicates and the second stage in a 3x3 factorial scheme consisting of 3 parsley cultivars and 3 germination temperatures with 4 replicates. Seeds of the different cultivars did not germinate at temperature of 35°C. Parsley seeds showed thermoinhibition at high temperatures, being necessary to elucidate the mechanisms involved in this process.


A temperatura pode exercer grande influência na germinação, sendo considerada ótima aquela em que a semente expressa seu potencial máximo de germinação no menor período de tempo. A germinação das sementes de salsa é lenta, irregular e desuniforme. O objetivo do trabalho foi determinar se há ocorrência de termodormência ou de termoinibição em sementes de salsa em função da variação da temperatura. O delineamento experimental da primeira etapa foi inteiramente casualizado (DIC), constituído por 7 temperaturas, com 4 repetições e a segunda etapa em esquema fatorial 3x3, constituído por 3 cultivares de salsa e 3 temperaturas para germinação com 4 repetições. As sementes das cultivares estudadas não germinaram em temperaturas de 35°C. Sementes de salsa apresentam termoinibição em temperaturas elevadas, sendo necessário elucidar os mecanismos que estão envolvidos nesse processo.


Assuntos
Sementes , Temperatura , Germinação , Petroselinum
5.
Ciênc. rural ; 46(2): 227-232, fev. 2016. tab
Artigo em Português | LILACS | ID: lil-767639

RESUMO

RESUMO: A cultura da soja apresenta importância comercial extremamente relevante para a economia brasileira. O condicionamento fisiológico é uma técnica que permite melhorar a qualidade das sementes, sobretudo daquelas de baixo vigor. O vigor é definido como a capacidade das sementes em apresentar desempenho adequado, quando expostas a diferentes condições ambientais. Sementes de alto vigor produzem plantas com maior velocidade de emergência e maiores níveis nos componentes de rendimento, desdobrando assim em uma maior produtividade de sementes no final do seu ciclo. O objetivo foi avaliar o comportamento agronômico em plantas, em condições de campo, oriundas de sementes de soja condicionadas sob diferentes potenciais osmóticos, em função dos níveis de vigor. Foram avaliados os componentes de produção e a produtividade da soja. O condicionamento fisiológico em sementes de médio vigor influencia positivamente nos componentes (emergência de plântulas, altura de inserção da primeira vagem, número de vagens/planta, número de sementes/planta, número de sementes/vagem) e na produtividade da cultivar 'M7211RR' de soja. Os diferentes níveis de vigor das sementes de soja ocasionam diferenças no número de vagens/planta.


ABSTRACT: The Soybean crop is extremely relevant to the Brazilian economy. Priming is a technique that allows improvement of seed quality, especially those of low vigor. Vigor is defined as the ability of the seed to perform adequately when exposed to different environmental conditions. High vigor seeds generate plants with higher emergency speed and superior yield components, favoring into a higher seed yield. The objective of this work was to evaluate the agronomic behavior of soybean plants under field conditions originated from primed seeds with different level of vigor. Yield components and soybean yield were also evaluated. Seed priming in seed with medium vigor positively influences the components (seedling emergence, first pod height, number pods/plant, number of seeds/plant, number of seeds/pod) and favored productivity of soybean cultivar 'M7211RR'. Different levels of vigor of soybean seeds cause differences in the number of pods/plant.

6.
Braz. arch. biol. technol ; 54(3): 465-476, May-June 2011. graf, tab
Artigo em Inglês | LILACS | ID: lil-591183

RESUMO

The effect of seed drying and imbibition was studied by differential protein expression using two dimensional gel electrophoresis. After drying to a range of water contents, seeds were germinated to assess the viability. Seeds of Magnolia ovata did not withstand the desiccation down to 0.10 g H2O · g-1 dw. The critical water content below which the desiccation sensitivity became apparent was around 0.18 g H2O · g-1 dw (-26.5 MPa). Total protein was extracted and separated by 2D electrophoresis from fresh seeds (0.28 g H2O · g-1 dw), mild dried seeds (0.25 g H2O · g-1 dw) and seeds at low water content (0.10 g H2O · g-1 dw) before and after imbibition for 10 days. The proteome profile revealed the presence of 588 spots on each silver stained gel, from which 21 showed differential expression, correlated with desiccation and germination, by increased or decreased expression. After MS/MS sequencing, three protein spots produced spectra that matched to a Magnolia salicifolia legumin precursor. Results suggested an involvement of this protein in the events taking place during the drying and subsequent imbibitions of the dried seeds.

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