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1.
Plant Cell Environ ; 37(9): 2014-23, 2014 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-24471455

RESUMEN

In several species, seed germination is regulated by light in a way that restricts seedling emergence to the environmental conditions that are likely to be favourable for the success of the new individual, and therefore, this behaviour is recognized to have adaptive value. The phytochromes are one of the most relevant photoreceptors involved in light perception by plants. We explored the redundancy and diversity functions of the phytochrome family in the control of seed responsiveness to light and gibberellins (GA) by using a set of phytochrome mutants of Arabidopsis. Our data show that, in addition to the well-known role of phyB in the promotion of germination in response to high red to far-red ratios (R/FR), phyE and phyD stimulate germination at very low R/FR ratios, probably by promoting the action of phyA. Further, we show that phyC regulates negatively the seed responsiveness to light, unravelling unexpected functions for phyC in seed germination. Finally, we find that seed responsiveness to GA is mainly controlled by phyB, with phyC, phyD and phyE having relevant roles when acting in a phyB-deficient background. Our results indicate that phytochromes have multiple and complex roles during germination depending on the active photoreceptor background.


Asunto(s)
Arabidopsis/crecimiento & desarrollo , Arabidopsis/genética , Germinación/efectos de la radiación , Giberelinas/farmacología , Luz , Familia de Multigenes , Fitocromo/genética , Arabidopsis/efectos de los fármacos , Arabidopsis/efectos de la radiación , Germinación/efectos de los fármacos , Modelos Biológicos , Mutación/genética , Fitocromo/metabolismo , Semillas/efectos de los fármacos , Semillas/crecimiento & desarrollo , Semillas/efectos de la radiación
2.
Sci Rep ; 11(1): 10653, 2021 05 20.
Artículo en Inglés | MEDLINE | ID: mdl-34017012

RESUMEN

Sensitivity to water availability is a key physiological trait for grassland species located in arid and semiarid environments, where successful germination is closely related to rainfall dynamics. Festuca pallescens inhabits diverse environments along a steep precipitation gradient in North Patagonia, thus offering a suitable model for the study of germination behavior in response to water availability. By analyzing germination in nine populations using a hydrotime model approach, we aimed to find within-species variation. Seed population behavior was analyzed under different hydric conditions using hydrotime model parameters (hydrotime, mean base water potential and its standard deviation). We estimated the mean base water potential for F. pallescens (ψb(50) = - 2.79 ± 0.45 MPa), which did not differ significantly between populations. However, the hydrotime parameter (θH) varied markedly, suggesting physiological adaptation to local environments. Higher values of θH were found in populations located at the extremes of the distribution gradient, indicating that germination may be prevented or delayed in conditions that are suboptimal for the species. Since the variation in hydrotime model parameters did not follow a cline, micro-environmental cues may have the greatest influence on the physiological behavior of the species, rather than the macroscale rainfall gradient.

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