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一种通过卵细胞特异性肽酶诱变建立的雌性体内单倍体诱导系统。

A female in vivo haploid-induction system via mutagenesis of egg cell-specific peptidases.

作者信息

Zhang Xuecheng, Shi Ce, Li Siling, Zhang Bo, Luo Pan, Peng Xiongbo, Zhao Peng, Dresselhaus Thomas, Sun Meng-Xiang

机构信息

State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan 430072, China.

State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan 430072, China; Hubei Hongshan Laboratory, Wuhan 430070, China.

出版信息

Mol Plant. 2023 Feb 6;16(2):471-480. doi: 10.1016/j.molp.2023.01.001. Epub 2023 Jan 3.

Abstract

Crop breeding schemes can be significantly accelerated by using (doubled) haploid plants. In vivo haploid induction has been applied in plant breeding for decades but is still not available for all crops and genotypes, and haploidization rates are generally very low. Therefore, methodological improvements to and new concepts for haploidization are required. Here, we report a novel system for the induction of haploid plants by mutating genes encoding egg cell-specific aspartic endopeptidases (ECSs). We show that after successful sperm-egg cell fusion, ECSs play a critical role to ensure male and female nucleus fusion after fertilization. The ecs1 ecs2 double mutant can induce haploids by both selfing and hybridization in Arabidopsis and ECS mutation is also capable of producing haploids in rice. In summary, our study develops a novel approach for maternal haploidization and provides new insights into the molecular basis of fertilization.

摘要

利用(双单倍体)单倍体植物可显著加速作物育种计划。体内单倍体诱导已在植物育种中应用了数十年,但并非所有作物和基因型都适用,且单倍体化率通常很低。因此,需要对单倍体化方法进行改进并提出新的概念。在此,我们报告了一种通过突变编码卵细胞特异性天冬氨酸内肽酶(ECS)的基因来诱导单倍体植物的新系统。我们表明,在精卵细胞成功融合后,ECS对于确保受精后雄雌核融合起着关键作用。ecs1 ecs2双突变体在拟南芥中通过自交和杂交均可诱导单倍体,且ECS突变在水稻中也能产生单倍体。总之,我们的研究开发了一种新的母本单倍体化方法,并为受精的分子基础提供了新见解。

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