首页> 美国卫生研究院文献>Journal of Experimental Botany >Structural–functional dissection and characterization of yield-contributing traits originating from a group 7 chromosome of the wheatgrass species Thinopyrum ponticum after transfer into durum wheat
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Structural–functional dissection and characterization of yield-contributing traits originating from a group 7 chromosome of the wheatgrass species Thinopyrum ponticum after transfer into durum wheat

机译:转化为硬粒小麦后源自小麦草物种Thonopyrum ponticum的第7组染色体的结构功能解剖和产量贡献性状的表征

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摘要

For the first time, using chromosome engineering of durum wheat, the underlying genetic determinants of a yield-improving segment from Thinopyrum ponticum (7AgL) were dissected. Three durum wheat–Th. ponticum near-isogenic recombinant lines (NIRLs), with distal portions of their 7AL arm (fractional lengths 0.77, 0.72, and 0.60) replaced by alien chromatin, were field-tested for two seasons under rainfed conditions. Yield traits and other agronomic characteristics of the main shoot and whole plant were measured. Loci for seed number per ear and per spikelet were detected in the proximal 7AgL segment (0.60–0.72). Loci determining considerable increases of flag leaf width and area, productive tiller number per plant, biomass per plant, and grain yield per plant were located in the distally adjacent 0.72–0.77 7AgL segment, while in the most distal portion (0.77–1.00) genetic effects on spikelet number per ear were identified. Contrary to previous reports, trials with the bread wheat T4 translocation line, carrying on 7DL a sizeable 7AgL segment of which those present in the durum wheat-Th. ponticum NIRLs represent fractions, gave no yield advantage. The hypothesis that ABA might be a factor contributing to the 7AgL effects was tested by analysing endogenous ABA contents of the NIRLs and their responses to exogenous ABA application. The 7AgL yield-related loci were shown to be ABA-independent. This study highlights the value of wheat–alien recombinant lines for dissecting the genetic and physiological basis of complex traits present in wild germplasm, and provides a basis for their targeted exploitation in wheat breeding.
机译:第一次,使用硬粒小麦的染色体工程技术,分析了ponticum ponticum(7AgL)产量提高部分的潜在遗传决定因素。三粒硬质小麦-Th。在雨育条件下,对两个半透明的近等基因重组系(NIRLs)的7AL臂远端部分(分数长度为0.77、0.72和0.60)替换为外来染色质进行了两个季节的现场测试。测量主茎和整株植物的产量性状和其他农艺特性。在近端7AgL段(0.60–0.72)中检测到每个耳朵和每个小穗的种子数位点。决定旗叶宽度和面积,每株植物的生产分,数,每株植物的生物量和每株植物的籽粒产量的显着增加的基因座位于远侧相邻的0.72-0.77 7AgL段,而在最远侧(0.77-1.00)遗传确定了对每只耳朵的小穗数的影响。与以前的报告相反,使用面包小麦T4易位系进行的试验对7DL进行了较大的7AgL片段,其中硬粒小麦Th中存在这些片段。 ponticum NIRLs代表馏分,没有产量优势。通过分析NIRLs的内源ABA含量及其对外源ABA施用的反应,验证了ABA可能是导致7AgL效应的因素的假设。 7AgL产量相关的基因座显示是不依赖ABA的。这项研究强调了小麦异源重组品系对解剖野生种质中复杂性状的遗传和生理基础的价值,并为其在小麦育种中的有针对性利用提供了基础。

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