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Sex-related differences in stress tolerance in dioecious plants: a critical appraisal in a physiological context

机译:雌雄异株植物在胁迫耐受性方面的性别相关差异:在生理背景下的关键评估

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摘要

Sex-related differences in reproductive effort can lead to differences in vegetative growth and stress tolerance. However, do all dioecious plants show sex-related differences in stress tolerance? To what extent can the environmental context and modularity mask sex-related differences in stress tolerance? Finally, to what extent can physiological measurements help us understand secondary sexual dimorphism? This opinion paper aims to answer these three basic questions with special emphasis on developments in research in this area over the last decade. Compelling evidence indicates that dimorphic species do not always show differences in stress tolerance between sexes; and when sex-related differences do occur, they seem to be highly species-specific, with greater stress tolerance in females than males in some species, and the opposite in others. The causes of such sex-related species-specific differences are still poorly understood, and more physiological studies and diversity of plant species that allow comparative analyses are needed. Furthermore, studies performed thus far demonstrate that the expression of dioecy can lead to sex-related differences in physiological traits-from leaf gas exchange to gene expression-but the biological significance of modularity and sectoriality governing such differences has been poorly investigated. Future studies that consider the importance of modularity and sectoriality are essential for unravelling the mechanisms underlying stress adaptation in male and female plants growing in their natural habitat.
机译:生殖力方面与性别有关的差异可能导致营养生长和压力承受能力的差异。但是,所有雌雄异体的植物在胁迫耐受性方面是否表现出与性别相关的差异?环境背景和模块性可以在多大程度上掩盖与性别相关的压力耐受性差异?最后,生理测量能在多大程度上帮助我们理解继发性二态性?本意见书旨在回答这三个基本问题,并特别强调过去十年中该领域研究的发展。有力的证据表明,双态物种并不总是表现出两性之间的耐压差异。当确实发生性别相关的差异时,它们似乎是高度特定于物种的,在某些物种中,女性比男性具有更大的压力承受能力,而在另一些物种中则相反。这种性别相关物种特异性差异的原因仍然知之甚少,需要更多的生理研究和植物物种多样性以进行比较分析。此外,迄今进行的研究表明,雌雄异体的表达可导致生理特征的性别相关差异(从叶片气体交换到基因表达),但是控制这种差异的模块性和扇形性的生物学意义尚未得到充分研究。未来研究考虑模块性和部门性的重要性,对于阐明在自然栖息地生长的雄性和雌性植物的胁迫适应机制至关重要。

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