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植物进化过程中干细胞因子WUS/WOX5的两步功能创新

Two-Step Functional Innovation of the Stem-Cell Factors WUS/WOX5 during Plant Evolution.

作者信息

Zhang Yuzhou, Jiao Yue, Jiao Hengwu, Zhao Huabin, Zhu Yu-Xian

机构信息

Institute for Advanced Studies, Wuhan University, Wuhan, China.

Development Center for Science and Technology, Ministry of Agriculture, Beijing, China.

出版信息

Mol Biol Evol. 2017 Mar 1;34(3):640-653. doi: 10.1093/molbev/msw263.

Abstract

WUS and WOX5, which are expressed, respectively, in the organizing center (OC) and the quiescent center (QC), are essential for shoot/root apical stem-cell maintenance in flowering plants. However, little is known about how these stem-cell factors evolved their functions in flowering plants. Here, we show that the WUS/WOX5 proteins acquired two distinct capabilities by a two-step functional innovation process in the course of plant evolution. The first-step is the apical stem-cell maintenance activity of WUS/WOX5, which originated in the common ancestor of ferns and seed plants, as evidenced by the interspecies complementation experiments, showing that ectopic expression of fern Ceratopteris richardii WUS-like (CrWUL) surrounding OC/QC, or exclusive OC-/QC-expressed gymnosperms/angiosperms WUS/WOX5 in Arabidopsis wus-1 and wox5-1 mutants, could rescue their phenotypes. The second-step is the intercellular mobility that emerged in the common ancestor of seed plants after divergence from the ferns. Evidence for this includes confocal imaging of GFP fusion proteins, showing that WUS/WOX5 from seed plants, rather than from the fern CrWUL, can migrate into cells adjacent to the OC/QC. Evolutionary analysis showed that the WUS-like gene was duplicated into two copies prior to the divergence of gymnosperms/angiosperms. Then the two gene copies (WUS and WOX5) have undergone similar levels of purifying selection, which is consistent with their conserved functions in angiosperm shoot/root stem-cell maintenance and floral organ formation. Our results highlight the critical roles and the essential prerequisites that the two-step functional innovation of these genes performs and represents in the origin of flowering plants.

摘要

WUS和WOX5分别在组织中心(OC)和静止中心(QC)中表达,对于开花植物茎尖/根尖干细胞的维持至关重要。然而,关于这些干细胞因子在开花植物中如何进化其功能,人们知之甚少。在这里,我们表明WUS/WOX5蛋白在植物进化过程中通过两步功能创新过程获得了两种不同的能力。第一步是WUS/WOX5的顶端干细胞维持活性,它起源于蕨类植物和种子植物的共同祖先,种间互补实验证明了这一点,该实验表明在拟南芥wus-1和wox5-1突变体中,蕨类植物里氏鸟巢蕨WUS样蛋白(CrWUL)在OC/QC周围异位表达,或裸子植物/被子植物中仅在OC-/QC表达的WUS/WOX5,可以挽救它们的表型。第二步是在与蕨类植物分化后,种子植物的共同祖先中出现的细胞间移动性。这方面的证据包括GFP融合蛋白的共聚焦成像,表明种子植物的WUS/WOX5,而不是蕨类植物的CrWUL,可以迁移到与OC/QC相邻的细胞中。进化分析表明,WUS样基因在裸子植物/被子植物分化之前复制成了两个拷贝。然后这两个基因拷贝(WUS和WOX5)经历了相似程度的纯化选择,这与它们在被子植物茎尖/根尖干细胞维持和花器官形成中的保守功能一致。我们的结果突出了这些基因的两步功能创新在开花植物起源中所起的关键作用和基本前提。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ec0/5400392/3af7356177c4/msw263f1.jpg

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