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玉米花发育和性别决定的遗传调控。

Genetic regulation of maize flower development and sex determination.

作者信息

Li Qinglin, Liu Baoshen

机构信息

College of Agronomy/State Key Laboratory of Crop Biology, Shandong Agricultural University, Daizong Road No. 61, Taian, 271018, Shandong, China.

出版信息

Planta. 2017 Jan;245(1):1-14. doi: 10.1007/s00425-016-2607-2. Epub 2016 Oct 21.

Abstract

The determining process of pistil fate are central to maize sex determination, mainly regulated by a genetic network in which the sex-determining genes SILKLESS 1 , TASSEL SEED 1 , TASSEL SEED 2 and the paramutagenic locus Required to maintain repression 6 play pivotal roles. Maize silks, which emerge from the ear shoot and derived from the pistil, are the functional stigmas of female flowers and play a pivotal role in pollination. Previous studies on sex-related mutants have revealed that sex-determining genes and phytohormones play an important role in the regulation of flower organogenesis. The processes determining pistil fate are central to flower development, where a silk identified gene SILKLESS 1 (SK1) is required to protect pistil primordia from a cell death signal produced by two commonly known genes, TASSEL SEED 1 (TS1) and TASSEL SEED 2 (TS2). In this review, maize flower developmental process is presented together with a focus on important sex-determining mutants and hormonal signaling affecting pistil development. The role of sex-determining genes, microRNAs, phytohormones, and the paramutagenic locus Required to maintain repression 6 (Rmr6), in forming a regulatory network that determines pistil fate, is discussed. Cloning SK1 and clarifying its function were crucial in understanding the regulation network of sex determination. The signaling mechanisms of phytohormones in sex determination are also an important research focus.

摘要

雌蕊命运的决定过程是玉米性别决定的核心,主要由一个遗传网络调控,其中性别决定基因无花丝1(SILKLESS 1)、雄花不育1(TASSEL SEED 1)、雄花不育2(TASSEL SEED 2)和维持抑制6所需的副突变位点(Required to maintain repression 6)发挥关键作用。玉米雌蕊丝从雌穗抽出,由雌蕊发育而来,是雌花的功能性柱头,在授粉过程中起关键作用。先前对性别相关突变体的研究表明,性别决定基因和植物激素在花器官发生的调控中起重要作用。决定雌蕊命运的过程是花发育的核心,其中一个已鉴定的雌蕊丝基因无花丝1(SK1)可保护雌蕊原基免受两个已知基因雄花不育1(TS1)和雄花不育2(TS2)产生的细胞死亡信号的影响。在这篇综述中,介绍了玉米花的发育过程,重点关注影响雌蕊发育的重要性别决定突变体和激素信号传导。讨论了性别决定基因、微小RNA、植物激素以及维持抑制6所需的副突变位点(Rmr6)在形成决定雌蕊命运的调控网络中的作用。克隆SK1并阐明其功能对于理解性别决定的调控网络至关重要。植物激素在性别决定中的信号传导机制也是一个重要的研究重点。

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