首页> 美国卫生研究院文献>Journal of Experimental Botany >TEF-7A a transcript elongation factor gene influences yield-related traits in bread wheat (Triticum aestivum L.)
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TEF-7A a transcript elongation factor gene influences yield-related traits in bread wheat (Triticum aestivum L.)

机译:转录延伸因子基因TEF-7A影响面包小麦(Triticum aestivum L.)的产量相关性状

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摘要

In this study, TaTEF-7A, a member of the transcript elongation factor gene family, and its flanking sequences were isolated. TaTEF-7A was located on chromosome 7A and was flanked by markers Xwmc83 and XP3156.3. Subcellular localization revealed that TaTEF-7A protein was localized in the nucleus. This gene was expressed in all organs, but the highest expression occurred in young spikes and developing seeds. Overexpression of TaTEF-7A in Arabidopsis thaliana produced pleiotropic effects on vegetative and reproductive development that enhanced grain length, silique number, and silique length. No diversity was found in the coding region of TaTEF-7A, but 16 single nucleotide polymorphisms and Indels were detected in the promoter regions of different cultivars. Markers based on sequence variations in the promoter regions (InDel-629 and InDel-604) were developed, and three haplotypes were identified based on those markers. Haplotype–trait association analysis of the Chinese wheat mini core collection revealed that TaTEF-7A was significantly associated with grain number per spike. Phenotyping of near-isogenic lines (NILs) confirmed that TaTEF-7A increases potential grain yield and yield-related traits. Frequency changes in favoured haplotypes gradually increased in cultivars released in China from the 1940s. Geographic distributions of favoured haplotypes were characterized in six major wheat production regions worldwide. The presence of Hap-7A-3, the favoured haplotype, showed a positive correlation with yield in a global set of breeding lines. These results suggest that TaTEF-7A is a functional regulatory factor for grain number per spike and provide a basis for marker-assisted selection.
机译:在这项研究中,TaTEF-7A,转录延伸因子基因家族的成员,及其侧翼序列被分离出来。 TaTEF-7A位于7A染色体上,侧翼是标记Xwmc83和XP3156.3。亚细胞定位揭示TaTEF-7A蛋白位于细胞核中。该基因在所有器官中都有表达,但最高的表达发生在幼穗和发育中的种子中。 TaTEF-7A在拟南芥中的过表达对营养和生殖发育产生多效性作用,从而增加了谷粒长度,长角果数和长角果长度。 TaTEF-7A的编码区未发现多样性,但在不同品种的启动子区检测到16个单核苷酸多态性和Indels。开发了基于启动子区域(InDel-629和InDel-604)中序列变异的标记,并基于这些标记鉴定了三种单倍型。中国小麦小核心种质的单倍型-性状关联分析表明,TaTEF-7A与每个穗粒数显着相关。近等基因系(NIL)的表型鉴定证实TaTEF-7A增加了潜在的谷物产量和与产量相关的性状。从1940年代开始在中国发行的品种中,单倍型的频率变化逐渐增加。全球六个主要小麦产区都对有利的单倍型的地理分布进行了表征。 Hap-7A-3(最爱的单倍型)的存在与全球种系中的产量呈正相关。这些结果表明,TaTEF-7A是每个穗粒数的功能性调节因子,并为标记辅助选择提供了基础。

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