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通过配子表达蛋白1的突变在玉米中诱导母本单倍体

Maternal haploid induction in maize via mutation of Gamete Expression protein 1.

作者信息

Sun Yuhui, Hou Lulu, Li Chengcheng, Zhou Zijian, Wu Jianyu, Yu Haidong

机构信息

College of Life Sciences, Henan Agricultural University, Zhengzhou, China.

出版信息

Plant Biotechnol J. 2025 Jul;23(7):2595-2607. doi: 10.1111/pbi.70081. Epub 2025 Apr 9.

Abstract

Doubled haploid (DH) technology, based on haploid induction (HI), is a crucial tool in enhancing crop-breeding efficiency and has been successfully applied in various plant species. While many HI-related genes have been identified using diverse strategies, the genetic basis and molecular mechanisms underlying HI remain incompletely understood. In this study, we present a novel system for inducing haploid offspring through targeted mutagenesis of the Zea mays Gamete Expression protein 1 (ZmGEX1) gene in maize. Our findings reveal that zmgex1 heterozygous plants (zmgex1) induce maternal haploids via self- and cross-pollination as the female parent, with an average rate of 1.34%. This indicates that the haploid progeny is exclusively maternal in origin, carrying the maternal genome. We also demonstrate that ZmGEX1 is expressed in both female spikelets and anthers, localizing to the cytoplasm, nucleus and endoplasmic reticulum. Although the transmission efficiency of the zmgex1 allele is reduced in female gametophytes, ZmGEX1 does not affect embryo sac development but influences fertilization. We propose that defective fusion of the sperm and egg nuclei may lead to haploid formation. Finally, a schematic that illustrates the potential application of the new gene ZmGEX1 in maize breeding programs is proposed. Collectively, this study identifies ZmGEX1 as a novel gene involved in maternal HI and provides a promising strategy for breeding improvements.

摘要

基于单倍体诱导(HI)的双单倍体(DH)技术是提高作物育种效率的关键工具,已在多种植物物种中成功应用。虽然已经使用多种策略鉴定了许多与HI相关的基因,但HI的遗传基础和分子机制仍未完全了解。在本研究中,我们提出了一种通过对玉米中的玉米配子表达蛋白1(ZmGEX1)基因进行靶向诱变来诱导单倍体后代的新系统。我们的研究结果表明,zmgex1杂合植物(zmgex1)作为母本通过自花授粉和异花授粉诱导产生母本单倍体,平均诱导率为1.34%。这表明单倍体后代完全来源于母本,携带母本基因组。我们还证明,ZmGEX1在雌小穗和花药中均有表达,定位于细胞质、细胞核和内质网。虽然zmgex1等位基因在雌配子体中的传递效率降低,但ZmGEX1不影响胚囊发育,但影响受精过程。我们认为精核和卵核的融合缺陷可能导致单倍体的形成。最后,我们提出了一个示意图,说明了新基因ZmGEX1在玉米育种计划中的潜在应用。总的来说,本研究鉴定出ZmGEX1是一个参与母本单倍体诱导的新基因,并为育种改良提供了一个有前景的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa5e/12205866/d42efaf22451/PBI-23-2595-g007.jpg

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