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一项对蒺藜苜蓿雄性育性控制的研究揭示了植物有性生殖过程中两个绒毡层bHLH亚家族在进化上保守的招募情况。

A study of male fertility control in Medicago truncatula uncovers an evolutionarily conserved recruitment of two tapetal bHLH subfamilies in plant sexual reproduction.

作者信息

Zheng Xiaoling, He Liangliang, Liu Ye, Mao Yawen, Wang Chaoqun, Zhao Baolin, Li Youhan, He Hua, Guo Shiqi, Zhang Liangsheng, Schneider Harald, Tadege Million, Chang Fang, Chen Jianghua

机构信息

CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming, Yunnan, 650223, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

New Phytol. 2020 Nov;228(3):1115-1133. doi: 10.1111/nph.16770. Epub 2020 Jul 25.

DOI:10.1111/nph.16770
PMID:32594537
Abstract

Male sterility is an important tool for plant breeding and hybrid seed production. Male-sterile mutants are largely due to an abnormal development of either the sporophytic or gametophytic anther tissues. Tapetum, a key sporophytic tissue, provides nutrients for pollen development, and its delayed degeneration induces pollen abortion. Numerous bHLH proteins have been documented to participate in the degeneration of the tapetum in angiosperms, but relatively little attention has been given to the evolution of the involved developmental pathways across the phylogeny of land plants. A combination of cellular, molecular, biochemical and evolutionary analyses was used to investigate the male fertility control in Medicago truncatula. We characterized the male-sterile mutant empty anther1 (ean1) and identified EAN1 as a tapetum-specific bHLH transcription factor necessary for tapetum degeneration. Our study uncovered an evolutionarily conserved recruitment of bHLH subfamily II and III(a + c)1 in the regulation of tapetum degeneration. EAN1 belongs to the subfamily II and specifically forms heterodimers with the subfamily III(a + c)1 members, which suggests a heterodimerization mechanism conserved in angiosperms. Our work suggested that the pathway of two tapetal-bHLH subfamilies is conserved in all land plants, and likely was established before the divergence of the spore-producing land plants.

摘要

雄性不育是植物育种和杂交种子生产的重要工具。雄性不育突变体主要是由于孢子体或配子体花药组织发育异常所致。绒毡层是一种关键的孢子体组织,为花粉发育提供营养,其延迟退化会导致花粉败育。已有大量文献记载,许多bHLH蛋白参与被子植物绒毡层的退化,但对于陆地植物系统发育中相关发育途径的进化,人们关注相对较少。本研究综合运用细胞、分子、生化和进化分析方法,对蒺藜苜蓿的雄性育性控制进行了研究。我们对雄性不育突变体空花药1(ean1)进行了表征,并鉴定出EAN1是绒毡层退化所必需的绒毡层特异性bHLH转录因子。我们的研究揭示了bHLH亚家族II和III(a + c)1在调控绒毡层退化过程中的进化保守招募。EAN1属于亚家族II,并且特异性地与亚家族III(a + c)1成员形成异源二聚体,这表明在被子植物中存在一种保守的异源二聚化机制。我们的研究表明,两个绒毡层bHLH亚家族的途径在所有陆地植物中都是保守的,并且可能在产生孢子的陆地植物分化之前就已建立。

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