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首页> 外文期刊>Seed Science Research >Seed dormancy is a dynamic state: variable responses to pre- and post-shedding environmental signals in seeds of contrasting Arabidopsis ecotypes
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Seed dormancy is a dynamic state: variable responses to pre- and post-shedding environmental signals in seeds of contrasting Arabidopsis ecotypes

机译:种子休眠是一种动态状态:在不同拟南芥生态型种子中,对脱落前和脱落后环境信号的响应不同

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Seeds have evolved to be highly efficient environmental sensors that respond not only to their prevailing environment, but also their environmental history, to regulate dormancy and the initiation of germination. In the present work we investigate the combined impact of a number of environmental signals (temperature, nitrate, light) during seed development on the mother plant, during post-shedding imbibition and during prolonged post-shedding exposure in both dry and imbibed states, simulating time in the soil seed bank. The differing response to these environments was observed in contrasting winter (Cvi, Ler) and summer (Bur) annual Arabidopsis ecotypes. Results presented show that environmental signals both pre- and post-shedding determine the depth of physiological dormancy and therefore the germination response to the ambient environment. The ecotype differences in seed response to ambient germination conditions are greatly enhanced by seed maturation in different environments. Further variation in response develops following shedding when seeds do not receive the full complement of environmental signals required for germination and enter the soil seed bank in either dry or imbibed states. Species seed dormancy characteristics cannot therefore be easily defined, as seed dormancy is a dynamic state subject to within-species adaptation to local environments.
机译:种子已经发展成为一种高效的环境传感器,不仅可以对周围环境做出反应,还可以对环境历史做出反应,从而调节休眠和萌发状态。在目前的工作中,我们研究了种子生长期间,母本植物上,脱落后吸水期间以及长期脱落后暴露在干燥和吸收状态下许多环境信号(温度,硝酸盐,光照)的综合影响,模拟时间在土壤种子库中。在不同的冬季(Cvi,Ler)和夏季(Bur)年度拟南芥生态型中观察到了对这些环境的不同反应。呈现的结果表明,脱毛前后的环境信号决定了生理休眠的深度,因此决定了对周围环境的萌发反应。通过在不同环境中进行种子成熟,可以大大增强种子对环境萌发条件的生态型差异。当种子没有收到发芽所需的全部环境信号并以干燥或吸收状态进入土壤种子库时,在脱落后响应的进一步变化会进一步发展。由于种子休眠是一种动态状态,容易受到物种内部适应当地环境的影响,因此无法轻易确定其种子休眠特性。

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