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四倍体小麦与其野生二倍体近缘种伞穗山羊草种间杂交中的杂种不亲和性。

Hybrid incompatibilities in interspecific crosses between tetraploid wheat and its wild diploid relative Aegilops umbellulata.

作者信息

Okada Moeko, Yoshida Kentaro, Takumi Shigeo

机构信息

Graduate School of Agricultural Science, Kobe University, Rokkodai 1-1, Nada, Kobe, 657-8501, Japan.

Japan Science and Technology Agency (JST), PRESTO, Kawaguchi-shi, Saitama, 332-0012, Japan.

出版信息

Plant Mol Biol. 2017 Dec;95(6):625-645. doi: 10.1007/s11103-017-0677-6. Epub 2017 Oct 31.

Abstract

Hybrid abnormalities, severe growth abortion and grass-clump dwarfism, were found in the tetraploid wheat/Aegilops umbellulata hybrids, and the gene expression changes were conserved in the hybrids with those in other wheat synthetic hexaploids. Aegilops umbellulata Zhuk., a diploid goatgrass species with a UU genome, has been utilized as a genetic resource for wheat breeding. Here, we examine the reproductive barriers between tetraploid wheat cultivar Langdon (Ldn) and various Ae. umbellulata accessions by conducting interspecific crossings. Through systematic cross experiments, three types of hybrid incompatibilities were found: seed production failure in crosses, hybrid growth abnormalities and sterility in the ABU hybrids. Hybrid incompatibilities were widely distributed over the entire range of the natural species, and in about 50% of the cross combinations between tetraploid Ldn and Ae. umbellulata accessions, ABU F hybrids showed one of two abnormal growth phenotypes: severe growth abortion (SGA) or grass-clump dwarfism. Expression of the shoot meristem maintenance-related and cell cycle-related genes was markedly repressed in crown tissues of hybrids showing SGA, suggesting dysfunction of mitotic cell division in the shoot apices. The grass-clump dwarf phenotype may be explained by down-regulation of wheat APETALA1-like MADS box genes, which act as flowering promoters, and altered expression in crown tissues of the miR156/SPLs module, which controls tiller number and branching. These gene expression changes in growth abnormalities were well conserved between the Ldn/Ae. umbellulata plants and interspecific hybrids from crosses of Ldn and wheat D-genome progenitor Ae. tauschii.

摘要

在四倍体小麦/伞穗山羊草杂种中发现了杂种异常、严重生长败育和草丛矮化现象,并且这些杂种中的基因表达变化与其他小麦人工合成六倍体中的变化一致。伞穗山羊草(Aegilops umbellulata Zhuk.)是一种具有UU基因组的二倍体山羊草物种,已被用作小麦育种的遗传资源。在此,我们通过进行种间杂交来研究四倍体小麦品种朗顿(Ldn)与各种伞穗山羊草材料之间的生殖障碍。通过系统的杂交实验,发现了三种类型的杂种不亲和性:杂交种子生产失败、杂种生长异常以及ABU杂种不育。杂种不亲和性广泛分布于整个天然物种范围内,在四倍体Ldn与伞穗山羊草材料之间约50%的杂交组合中,ABU F杂种表现出两种异常生长表型之一:严重生长败育(SGA)或草丛矮化。在表现出SGA的杂种冠部组织中,与茎尖分生组织维持和细胞周期相关的基因表达明显受到抑制,这表明茎尖有丝分裂细胞分裂功能异常。草丛矮化表型可能是由于作为开花促进因子的小麦APETALA1样MADS盒基因下调,以及控制分蘖数和分枝的miR156/SPLs模块在冠部组织中的表达改变所致。Ldn/伞穗山羊草植株与Ldn和小麦D基因组祖先节节麦杂交产生的种间杂种之间,这些生长异常中的基因表达变化具有良好的一致性。

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