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Mapping of important taxonomic and productivity traits using genic and non-genic transposable element markers in peanut (Arachis hypogaea L.)

机译:使用基因和非基因转座因子标记对花生(花生)的重要生物分类和生产力性状进行定位

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摘要

A mapping population of recombinant inbred lines (RILs) derived from TMV 2 and its mutant, TMV 2-NLM was employed for mapping important taxonomic and productivity traits using genic and non-genic transposable element markers in peanut. Single nucleotide polymorphism and copy number variation using RAD-Sequencing data indicated very limited polymorphism between TMV 2 and TMV 2-NLM. But phenotypically they differed significantly for many taxonomic and productivity traits. Also, the RIL population showed significant variation for a few additional agronomic traits. A genetic linkage map of 1,205.66 cM was constructed using 91 genic and non-genic Arachis hypogaea transposable element (AhTE) markers. Using single marker analysis and QTL analysis, the markers with high phenotypic variance explained (PVE) were identified for branching pattern (32.3%), number of primary and secondary branches (19.9% and 28.4%, respectively), protein content (26.4%), days to 50% flowering (22.0%), content of oleic acid (15.1%), test weight (13.6%) and pod width (12.0%). Three genic markers (AhTE0357, AhTE0391, AhTE0025) with Arachis hypogaea miniature inverted-repeat transposable element (AhMITE1) activity in the genes Araip.TG1BL (B02 chromosome), Aradu.7N61X (A09 chromosome) and Aradu.7065G (A07 chromosome), respectively showed strong linkage with these taxonomic, productivity and quality traits. Since TMV 2 and TMV 2-NLM differed subtly at DNA level, the background noise in detecting the marker-trait associations was minimum; therefore, the markers identified in this study for the taxonomic and productivity traits may be significant and useful in peanut molecular breeding.
机译:来源于TMV 2及其突变体TMV 2-NLM的重组自交系(RIL)的作图群体用于利用基因和非基因转座子标记对花生的重要分类学和生产力性状进行作图。使用RAD测序数据的单核苷酸多态性和拷贝数变异表明TMV 2和TMV 2-NLM之间的非常有限的多态性。但是从表型上看,它们在许多分类学和生产力性状上差异很大。此外,RIL群体在一些其他农艺性状上也表现出显着差异。使用91个基因和非基因花生亚目转座子(AhTE)标记构建了1205.66 cM的遗传连锁图。使用单标记分析和QTL分析,鉴定出具有高表型变异解释(PVE)的标记的分支模式(32.3%),一级和二级分支数(分别为19.9%和28.4%),蛋白质含量(26.4%) ,开花至50%的天数(22.0%),油酸含量(15.1%),容重(13.6%)和豆荚宽度(12.0%)。在Araip.TG1BL(B02染色体),Aradu.7N61X(A09染色体)和Aradu.7065G(A07染色体)基因中具有Arachis hypogaea微型反向重复转座因子(AhMITE1)活性的三个基因标记(AhTE0357,AhTE0391,AhTE0025),分别显示出与这些分类,生产力和质量特性的紧密联系。由于TMV 2和TMV 2-NLM在DNA水平上存在细微差别,因此检测标记-性状关联的背景噪声最小。因此,在这项研究中确定的分类学和生产力性状的标记在花生分子育种中可能是重要的和有用的。

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