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首页> 外文期刊>International journal of plant sciences >THE EVOLUTION OF GROWTH FORMS WITH EXPANDED ROOT AND SHOOT PARENCHYMATOUS STORAGE IS CORRELATED ACROSS THE EUDICOTS
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THE EVOLUTION OF GROWTH FORMS WITH EXPANDED ROOT AND SHOOT PARENCHYMATOUS STORAGE IS CORRELATED ACROSS THE EUDICOTS

机译:横断面和根茎横生储藏量的增长形式的演变与整个杂种相关

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Premise of research. Plant succulence in leaves, stems, hypocotyls, and roots is heralded as an adaptation to aridity. Subterranean succulence is an underappreciated dimension of succulent plant diversity. Remarkable parallel evolution of proliferation of parenchyma and vascularization of stem and root parenchyma reported in previous case studies led us to predict that the evolution of stem succulence is tightly coupled to the evolution of subterranean succulence more broadly across the eudicots. Methodology. We applied a taxonomic rank-based measurement of relatedness to examine the distances between eudicot taxa with aboveground succulence (representing >20 separate origins of succulence) and their closest relatives with subterranean succulence. We compared these distances to the distances between a random sample of eudicot taxa that lack aboveground succulence (mesophytes) and their closest relatives with subterranean succulence. Pivotal results. Using a statistically conservative test, the ancestral distance test, we found that taxa with aboveground succulence were significantly more closely related to taxa with subterranean succulence than are mesophytes. Strikingly, all groups in which extensive aboveground succulence evolved are closely related to taxa with subterranean succulence, With the exception of the Fouquieriaceae. Conclusions. The phylogenetic coupling between aboveground and belowground succulence is a broad and strong pattern across a huge clade of plants, the eudicots. Despite high relatedness among taxa with aboveground and belowground succulence, the adaptive benefits of parenchymatous tissue are complex, and they likely differ for aboveground and belowground plant organs. The apparent lability of evolutionary change among succulent forms may reflect a common developmental program for parenchyma production whose spatial expression in different plant organs is altered during evolutionary diversification. These results encourage an expanded view of the evolutionary convergence among succulent plant forms that includes both aboveground and belowground components.
机译:研究前提。叶子,茎,下胚轴和根中的植物肉质被预示为对干旱的适应。地下肉质是肉质植物多样性的一个未被重视的维度。在先前的案例研究中,薄壁组织的增殖以及茎和根薄壁组织的血管形成显着平行发展,这使我们预测,在整个双子叶植物中,茎多汁性的演变与地下多汁性的变化紧密相关。方法。我们应用了基于分类的等级相关性度量,以检验地上肉质(代表> 20多个肉质起源)的双子叶植物分类群与地下肉质的近亲之间的距离。我们将这些距离与缺乏地上肉质(中生植物)的双子叶植物类群的随机样本与其具有地下肉质的近亲之间的距离进行了比较。关键的结果。使用统计保守检验,祖先距离检验,我们发现具有地上肉质的类群与具有地下肉质的类群比中生植物更密切相关。引人注目的是,地上肉质发达的所有群体都与具有地下肉质的类群密切相关,但杜鹃花科除外。结论。地上和地下多汁植物之间的系统发育耦合是跨越巨大植物枝(双子叶植物)的广泛而牢固的模式。尽管类群与地上和地下肉质之间的相关性很高,但是薄壁组织的适应性好处是复杂的,并且对于地上和地下植物器官它们可能有所不同。肉质形式之间进化变化的明显不稳定性可能反映了薄壁组织生产的共同发展程序,其在不同植物器官中的空间表达在进化多样化过程中发生了变化。这些结果鼓励对包括地上和地下成分在内的多肉植物形式之间进化趋同的扩展观点。

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