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QTL analysis of genetic loci affecting domestication-related spike characters in common wheat

机译:影响普通小麦驯化相关穗部性状的遗传基因座QTL分析

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Domestication-related changes that govern a spike morphology suitable for seed harvesting in cereals have resulted from mutation and selection of the genes. A synthetic hexaploid wheat (S-6214, genome AABBDD) produced by a cross between durum wheat (AABB) and wild goat grass (DD) showed partial non-domestication-related phenotypes due to genetic effects of the wild goat grass genome. Quantitative trait loci (QTLs) affecting wheat domestication-related spike characters including spike threshability, rachis fragility and spike compactness were investigated in F-2 progeny of a cross between Chinese Spring (CS) wheat (AABBDD) and S-6214. Of 15 relevant QTLs identified, eight seemed to be consistent with peaks previously reported in wheat, while four QTL regions were novel. Four QTLs that affected spike threshability were localized to chromosomes 2BS, 2DS, 4D and 5DS. The QTL on 2DS probably represents the tenacious glume gene, Tg-D1. Based on its map position, the QTL located on 2BS coincides with Ppd-B1 and seems to be a homoeolocus of the soft glume gene. Two novel QTLs were detected on 4D and 5DS, and their goat grass alleles increased glume tenacity. Three novel QTLs located on 2DL, 3DL and 4D for rachis fragility were found. Based on the map position, the QTL on 3DL seems different from Br1 and Br2 loci and its CS allele appears to promote the generation of barrel-type diaspores. Three disarticulation types of spikelets were found in F2 individuals: wedge-type, barrel-type and both types. Among eight QTL peaks that governed spike morphology, six, located on 2AS, 2BS, 2DS, 4AL and 5AL, coincided with ones previously reported. A QTL for spike compactness on 5AL was distinct from the Q gene. A novel QTL that controls spike length was detected on 5DL. Complex genetic interactions between genetic background and the action of each gene were suggested.
机译:基因的突变和选择导致了驯化相关的变化,这些变化控制着适合谷物收获的穗状形态。由硬质小麦(AABB)和野山羊草(DD)杂交产生的合成六倍体小麦(S-6214,基因组AABBDD)由于野山羊草基因组的遗传效应而显示出部分非驯化相关的表型。在中国春小麦(AABBDD)和S-6214杂交的F-2后代中研究了影响小麦驯化相关穗特征的定量性状基因座(QTL),包括穗脱粒性,轮轴脆性和穗紧实性。在确定的15个相关QTL中,有8个似乎与先前报道的小麦峰值一致,而4个QTL地区是新颖的。影响尖峰脱粒性的四个QTL位于2BS,2DS,4D和5DS染色体上。 2DS上的QTL可能代表顽强的颖片基因Tg-D1。根据其图谱位置,位于2BS上的QTL与Ppd-B1吻合,似乎是软颖片基因的同系物。在4D和5DS上检测到两个新的QTL,它们的山羊草等位基因提高了颖片的韧性。发现了两个新颖的QTL,分别位于2DL,3DL和4D上,以增强Rachis的脆弱性。根据地图位置,3DL上的QTL似乎与Br1和Br2基因座不同,其CS等位基因似乎促进了桶状渗漏的产生。在F2个体中发现了三种不同类型的小穗:楔形,桶形和两种。在控制尖峰形态的8个QTL峰中,有2个位于2AS,2BS,2DS,4AL和5AL上,与先前报道的峰重合。 QAL在5AL上的穗紧密性不同于Q基因。在5DL上检测到一种新型的控制尖峰长度的QTL。建议遗传背景和每个基因的作用之间复杂的遗传相互作用。

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