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植物进化:走向陆地生命的里程碑。

Plant evolution: landmarks on the path to terrestrial life.

机构信息

Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, Nova Scotia, B3H 4R2, Canada.

出版信息

New Phytol. 2018 Mar;217(4):1428-1434. doi: 10.1111/nph.14975. Epub 2018 Jan 10.

Abstract

UNLABELLED

Contents Summary 1428 I. The singularity of plant terrestrialization 1428 II. Adaptation vs exaptation - what shaped the land plant toolkit? 1430 III. Trait mosaicism in (higher-branching) streptophyte algae 1431 IV.

CONCLUSIONS

a streptophyte algal perspective on land plant trait evolution 1432 Acknowledgements 1432 ORCID 1433 References 1433 SUMMARY: Photosynthetic eukaryotes thrive anywhere there is sunlight and water. But while such organisms are exceptionally diverse in form and function, only one phototrophic lineage succeeded in rising above its substrate: the land plants (embryophytes). Molecular phylogenetic data show that land plants evolved from streptophyte algae most closely related to extant Zygnematophyceae, and one of the principal aims of plant evolutionary biology is to uncover the key features of such algae that enabled this important transition. At the present time, however, mosaic and reductive evolution blur our picture of the closest algal ancestors of plants. Here we discuss recent progress and problems in inferring the biology of the algal progenitor of the terrestrial photosynthetic macrobiome.

摘要

未标记

内容概要 1428 I. 植物陆地化的独特性 1428 II. 适应与适应辐射——是什么塑造了陆地植物工具包? 1430 III. (高等)石莼藻类的性状镶嵌性 1431 IV.

结论

从石莼藻类看陆地植物性状演化 1432 致谢 1432 ORCID 1433 参考文献 1433 概要:只要有阳光和水,光合作用的真核生物就能茁壮成长。尽管这些生物在形态和功能上非常多样化,但只有一条光养谱系成功地超越了其基质:陆地植物(胚胎植物)。分子系统发育数据表明,陆地植物是从最接近现存的接合藻纲的石莼藻类进化而来的,而植物进化生物学的主要目标之一就是揭示使这种重要转变成为可能的藻类的关键特征。然而,目前,镶嵌和简化进化使我们对植物最接近的藻类祖先的了解变得模糊不清。在这里,我们讨论了推断陆地光合作用宏基因组藻类祖先生物学的最新进展和问题。

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