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首页> 外文期刊>The New Phytologist >Mosaic modularity: an updated perspective and research agenda for the evolution of vascular cambial growth
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Mosaic modularity: an updated perspective and research agenda for the evolution of vascular cambial growth

机译:马赛克模块化:一个更新的透视和研究议程,用于血管山羊生长的演变

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摘要

Secondary growth from a vascular cambium, present today only in seed plants and isoetalean lycophytes, has a 400-million-yr evolutionary history that involves considerably broader taxonomic diversity, most of it hidden in the fossil record. Approaching vascular cambial growth as a complex developmental process, we review data from living plants and fossils that reveal diverse modes of secondary growth. These are consistent with a modular nature of secondary growth, when considered as a tracheophyte-wide structural feature. This modular perspective identifies putative constituent developmental modules of cambial growth, for which we review developmental anatomy and regulation. Based on these data, we propose a hypothesis that explains the sources of diversity of secondary growth, considered across the entire tracheophyte clade, and opens up new avenues for exploring the origin of secondary growth. In this hypothesis, various modes of secondary growth reflect a mosaic pattern of expression of different developmental-regulatory modules among different lineages. We outline an approach that queries three information systems (living seed plants, living seed-free plants, and fossils) and integrates data on developmental regulation, anatomy, gene evolution and phylogeny to test the mosaic modularity hypothesis and its implications, and to inform efforts aimed at understanding the evolution of secondary growth.
机译:目前仅在种子植物和isoeTalean促菌细胞中的血管结合血管结合的二次生长具有4000万美元的进化历史,涉及大多数更广泛的分类多样性,其中大部分隐藏在化石记录中。接近血管牙龈生长作为复杂的发育过程,我们审查了生活植物和化石的数据,揭示了各种二次增长模式。这些与二次生长的模块化性质一致,当被认为是气管梭宽的结构特征时。这种模块化的透视图识别了Cambial Grower的推定构成发展模块,我们审查了发展解剖和监管。根据这些数据,我们提出了一个假设,解释了整个气管型思路中考虑的二次生长的多样性来源,并开辟了用于探索二次增长的起源的新途径。在这一假设中,各种二次生长模式反映了不同谱系中不同发育调节模块的表达式表达的马赛克模式。我们概述了一种询问三种信息系统(生活种子植物,无生物植物和化石)的方法,并整合有关发育调节,解剖学,基因进化和系统发育的数据,以测试马赛克模块化假设及其含义,并提供信息旨在了解二次生长的演变。

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