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基因组编辑三重隐性突变改变小麦种子休眠

Genome-Edited Triple-Recessive Mutation Alters Seed Dormancy in Wheat.

机构信息

Division of Wheat and Barley Research, Institute of Crop Science, NARO, Tsukuba 305-8518, Japan.

Institute of Plant Science and Resources, Okayama University, Kurashiki 710-0046, Japan.

出版信息

Cell Rep. 2019 Jul 30;28(5):1362-1369.e4. doi: 10.1016/j.celrep.2019.06.090.

Abstract

Common wheat has three sets of sub-genomes, making mutations difficult to observe, especially for traits controlled by recessive genes. Here, we produced hexaploid wheat lines with loss of function of homeoalleles of Qsd1, which controls seed dormancy in barley, by Agrobacterium-mediated CRISPR/Cas9. Of the eight transformed wheat events produced, three independent events carrying multiple mutations in wheat Qsd1 homeoalleles were obtained. Notably, one line had mutations in every homeoallele. We crossed this plant with wild-type cultivar Fielder to generate a transgene-free triple-recessive mutant, as revealed by Mendelian segregation. The mutant showed a significantly longer seed dormancy period than wild-type, which may result in reduced pre-harvest sprouting of grains on spikes. PCR, southern blotting, and whole-genome shotgun sequencing revealed that this segregant lacked transgenes in its genomic sequence. This technique serves as a model for trait improvement in wheat, particularly for genetically recessive traits, based on locus information from diploid barley.

摘要

普通小麦有三套亚基因组,这使得突变难以观察,尤其是对于隐性基因控制的性状。在这里,我们通过农杆菌介导的 CRISPR/Cas9 产生了六倍体小麦系,这些小麦系丧失了控制大麦种子休眠的 Qsd1 的同源等位基因的功能。在产生的八个转化小麦事件中,获得了三个携带多个小麦 Qsd1 同源等位基因突变的独立事件。值得注意的是,一个系的每个同源等位基因都发生了突变。我们将该植物与野生型品种 Fielder 杂交,产生了一个无转基因的三重隐性突变体,这是由孟德尔分离揭示的。突变体的种子休眠期明显长于野生型,这可能导致穗上谷物的收获前发芽减少。PCR、Southern 印迹和全基因组鸟枪法测序表明,该分离株在其基因组序列中缺乏转基因。该技术为小麦的性状改良提供了一个模型,特别是基于二倍体大麦的基因座信息,用于遗传隐性性状的改良。

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