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种子脱水敏感性的进化生态生理学

Evolutionary ecophysiology of seed desiccation sensitivity.

作者信息

Marques Alexandre, Buijs Gonda, Ligterink Wilco, Hilhorst Henk

机构信息

Laboratory of Plant Physiology, Wageningen University and Research, PO Box 16, 6700AA Wageningen, The Netherlands.

出版信息

Funct Plant Biol. 2018 Oct;45(11):1083-1095. doi: 10.1071/FP18022.

Abstract

Desiccation sensitive (DS) seeds do not survive dry storage due to their lack of desiccation tolerance. Almost half of the plant species in tropical rainforests produce DS seeds and therefore the desiccation sensitivity of these seeds represents a problem for and long-term biodiversity conservation. This phenomenon raises questions as to how, where and why DS (desiccation sensitive)-seeded species appeared during evolution. These species evolved probably independently from desiccation tolerant (DT) seeded ancestors. They adapted to environments where the conditions are conducive to immediate germination after shedding, e.g. constant and abundant rainy seasons. These very predictable conditions offered a relaxed selection for desiccation tolerance that eventually got lost in DS seeds. These species are highly dependent on their environment to survive and they are seriously threatened by deforestation and climate change. Understanding of the ecology, evolution and molecular mechanisms associated with seed desiccation tolerance can shed light on the resilience of DS-seeded species and guide conservation efforts. In this review, we survey the available literature for ecological and physiological aspects of DS-seeded species and combine it with recent knowledge obtained from DT model species. This enables us to generate hypotheses concerning the evolution of DS-seeded species and their associated genetic alterations.

摘要

脱水敏感(DS)种子由于缺乏脱水耐受性,无法在干燥储存条件下存活。热带雨林中近一半的植物物种会产生DS种子,因此这些种子的脱水敏感性对长期生物多样性保护而言是个问题。这一现象引发了关于DS(脱水敏感)种子物种在进化过程中如何、何处以及为何出现的问题。这些物种可能是从脱水耐受(DT)种子的祖先独立进化而来的。它们适应了种子脱落后有利于立即萌发的环境,例如持续且充足的雨季。这些非常可预测的条件使得对脱水耐受性的选择较为宽松,最终DS种子失去了这种耐受性。这些物种高度依赖其生存环境,并且受到森林砍伐和气候变化的严重威胁。了解与种子脱水耐受性相关的生态学、进化和分子机制,有助于揭示DS种子物种的恢复力,并指导保护工作。在本综述中,我们调查了关于DS种子物种生态和生理方面的现有文献,并将其与从DT模式物种获得的最新知识相结合。这使我们能够提出关于DS种子物种进化及其相关基因改变的假设。

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