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Seed Heteromorphism: An Important Adaptation of Halophytes for Habitat Heterogeneity

机译:种子异常:栖息地异质性嗜睡剂的重要适应

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摘要

Seed germination is a very critical and important step for seedling establishment under saline environments, as high level of salinity in the soil can prevent seed germination. However halophytes exhibit an interesting mechanism to cope with salt stress. Many halophytes produce heteromorphic seeds, which have different dormancy and germination behavior under saline conditions. This characteristic is related to the structural and physiological differences among heteromorphic seeds. It was unclear that how heteromorphic seeds differently accumulate organic and inorganic substances under saline conditions, and what are the physiological and molecular mechanisms involved in the production of heteromorphic seeds, and in the development of transgenerational plasticity in heteromorphic seeds. In the current brief review, dormancy and germination and the possible role of seed coat and storage compounds in this process of heteromorphic seeds development have been discussed. Moreover, the role of maternal effects on heteromorphic seeds production under saline environments and growth and reproduction capability of the descendants from them have been highlighted.
机译:种子萌发是在盐水环境幼苗建立,在土壤可以防止种子发芽高水平盐度的一个非常关键和重要的一步。然而盐生植物显示出了一个有趣的机制,以应付盐胁迫。许多盐生植物生产异型种子,其中有盐条件下不同的休眠和萌发行为。这个特性涉及异型种子之间的结构和生理差异。目前还不清楚的是如何异形种子不同积累有机和无机物质的盐水的条件下,和什么都参与生产异形种子的生理和分子机制,并且在跨代可塑性在异型种子的发展。在当前的简要回顾,休眠和萌发和的种皮和存储化合物中异形种子发育的这个过程中可能发挥的作用进行了讨论。此外,对在盐水环境,并从他们的后代的生长和繁殖能力异型种子生产母体效应的作用已经凸显。

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