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肉食性猪笼草陷阱的趋同和发散进化。

Convergent and divergent evolution in carnivorous pitcher plant traps.

机构信息

Botanic Garden, University of Oxford, Rose Lane, Oxford, OX1 4AZ, UK.

Department of Plant Sciences, University of Oxford, South Parks Road, Oxford, OX1 3RB, UK.

出版信息

New Phytol. 2018 Feb;217(3):1035-1041. doi: 10.1111/nph.14879. Epub 2017 Nov 13.

Abstract

Contents Summary 1035 I. Introduction 1035 II. Evolution of the pitcher 1036 III. Convergent evolution 1036 IV. Divergent evolution 1038 V. Adaptive radiation and speciation 1040 VI. Conclusions and perspectives 1040 Acknowledgements 1040 References 1040 SUMMARY: The pitcher trap is a striking example of convergent evolution across unrelated carnivorous plant lineages. Convergent traits that have evolved across pitcher plant lineages are essential for trap function, suggesting that key selective pressures are in action. Recent studies have also revealed patterns of divergent evolution in functional pitcher morphology within genera. Adaptations to differences in local prey assemblages may drive such divergence and, ultimately, speciation. Here, we review recent research on convergent and divergent evolution in pitcher plant traps, with a focus on the genus Nepenthes, which we propose as a new model for research into adaptive radiation and speciation.

摘要

内容摘要 1035 I. 引言 1035 II. pitcher 的进化 1036 III. 趋同进化 1036 IV. 分歧进化 1038 V. 适应辐射与物种形成 1040 VI. 结论与展望 1040 致谢 1040 参考文献 1040 摘要: pitcher 陷阱是趋同进化在无关肉食植物谱系中的一个显著例子。 pitcher 植物谱系中进化出的趋同特征对于陷阱功能至关重要,这表明关键的选择压力正在起作用。 最近的研究还揭示了属内功能性 pitcher 形态的分歧进化模式。 对当地猎物组合差异的适应可能导致这种分歧,并最终导致物种形成。 在这里,我们回顾了 pitcher 植物陷阱的趋同和分歧进化的最新研究,重点关注 Nepenthes 属,我们提出该属作为研究适应辐射和物种形成的新模型。

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