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The role of ecotypic variation in driving worldwide colonization by a cosmopolitan plant

机译:生态型变异在推动世界性植物在世界范围内定植的作用

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摘要

For almost 100 years now, ecotypic differentiation of plant species has been a major topic of research. In changing environments, the question needs to be answered as to how long it takes to adapt, and which parameters are subject to this fast adaptation. Short-living colonizing plant species are excellent examples, especially when they are selfing. Shepherd’s Purse Capsella bursa-pastoris (Brassicaceae) is one of the most wide-spread flowering species on earth and avoids only the hot and humid tropics. Many studies demonstrated the ecotypic differentiation of C. bursa-pastoris in various regions of the world but ecotypic differentiation regarding adaptability of anatomy and physiology of rosette leaves so far remained less recognized. However, the leaves are relevant for subsequent seed set; in particular, winter-annual accessions require a robust rosette to survive adverse conditions. Leaf-related traits such as the thickness of the mesophyll and epidermis, stomatal density, photosynthetic capacity and the ability to withstand and even use high light conditions were therefore analysed in provenances from various climatic zones. Photosynthetic capacity depends on leaf anatomy and cellular physiological parameters. In particular, the ability to dynamically adjust the photosynthetic capacity to changing environmental conditions results in higher fitness. Here, we attempt to relate these results to the four Mendelian leaf types according to Shull.
机译:近一百年来,植物物种的生态型分化一直是研究的主要课题。在不断变化的环境中,需要回答以下问题:适应需要多长时间,以及哪些参数需要进行快速适应。短寿命的定殖植物物种就是一个很好的例子,特别是在自交时。牧羊人的Cap菜(Capsella bursa-pastoris)(十字花科)是地球上分布最广的开花物种之一,仅避开湿热的热带地区。许多研究表明,世界不同地区的伯氏梭菌的生态型分化,但到目前为止,关于莲座丛的解剖适应性和生理学的生态型分化仍然鲜为人知。但是,叶子与随后的结实有关。特别是,冬季一年生的种质需要结实的莲座丛才能在不利条件下生存。因此,在不同气候区的种源中分析了与叶有关的性状,如叶肉和表皮的厚度,气孔密度,光合能力以及抵御甚至使用强光条件的能力。光合能力取决于叶片的解剖结构和细胞生理参数。特别地,动态调节光合作用能力以改变环境条件的能力导致更高的适应性。在这里,我们尝试根据Shull将这些结果与四种孟德尔叶类型相关联。

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