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首页> 外文期刊>Molecular Breeding >Co-localization of QTLs for pod fiber content and pod shattering in F-2 and backcross populations between yardlong bean and wild cowpea
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Co-localization of QTLs for pod fiber content and pod shattering in F-2 and backcross populations between yardlong bean and wild cowpea

机译:在Q-2上,在码子豆和野生cow豆之间的F-2和回交种群中,荚果纤维含量和荚果破碎的QTL共定位

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摘要

Yardlong bean [Vigna unguiculata (L.) Walp. ssp. unguiculata cv.-gr. sesquipedalis] is a vegetable legume crop evolved from cultivated grain cowpea (V. unguiculata ssp. unguiculata cv.-gr. unguiculata) which is domesticated from wild cowpea. It has a dramatic change in pod length and pod fiber content, and a complete loss of pod shattering, as compared to its wild progenitor. In this study, we identified quantitative trait loci (QTLs) controlling pod fiber content and pod shattering in two populations (BC1F1 and F-2) derived from a cross between yardlong bean and wild cowpea. BC1F1:2 and F-2:3 families were grown under field condition in which insoluble dietary fiber (cellulose, hemicelluloses and lignin) contents in mature pods, and pod shattering were evaluated. Correlation analysis showed positive relationship among the types of fiber, and between the fiber and shattering. Inclusive composite interval mapping revealed that a major QTL on linkage group 7 (LG7) controlled cellulose, hemicellulose and lignin contents in pod, and pod shattering. The other QTLs related to pod fibers on LG1 and LG4 also co-localized with the QTLs for pod shattering. Comparative genome analysis with azuki bean (Vigna angularis) suggested that the QTL region on LG7 for cellulose, hemiclellulose, lignin and pod shattering in yardlong bean contains genes encoding MYB transcription factor, MYB83, regulating biosynthesis of the three fibers, while the QTL region for cellulose and shattering of pod on LG1 harbors gene encoding cellulose synthase A7 (CESA7). These genes may be important targets for functional study to reveal major factors regulating pod fiber biosynthesis and pod shattering in yardlong bean.
机译:Yardlong豆[Vigna unguiculata(L.)Walp。 ssp。 Unguiculata cv.-gr. sesquipedalis]是从栽培的cow豆(V. unguiculata ssp。unguiculata cv.-gr. unguiculata)进化而来的一种蔬菜豆类作物,是从野生cow豆驯化而来的。与野生祖先相比,它的荚果长度和荚果纤维含量发生了巨大变化,并且荚果破碎完全消失。在这项研究中,我们确定了定量性状位点(QTL),它们控制着由长码豆和野生cow豆杂交而来的两个种群(BC1F1和F-2)的荚果纤维含量和荚果破碎。 BC1F1:2和F-2:3家族在田间条件下生长,其中评估了成熟豆荚中不溶性膳食纤维(纤维素,半纤维素和木质素)的含量,并对豆荚破碎进行了评估。相关分析表明,纤维类型之间以及纤维与破碎之间存在正相关关系。包容性复合区间作图显示,第7个连锁基团(LG7)的主要QTL控制着豆荚中的纤维素,半纤维素和木质素含量以及豆荚破碎。与LG1和LG4上的荚果纤维相关的其他QTL也与QTL共同定位,以进行荚果破碎。用小豆(Vigna angularis)进行的比较基因组分析表明,码7上LG7上用于纤维素,半纤维素,木质素和荚果破碎的QTL区域包含编码MYB转录因子MYB83的基因,调节三根纤维的生物合成,而QTL区域纤维素和LG1上豆荚的破碎带有编码纤维素合酶A7(CESA7)的基因。这些基因可能是功能研究的重要目标,以揭示调节码子豆中荚果纤维生物合成和荚果破碎的主要因素。

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