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Fine Mapping of QUICK ROOTING 1 and 2 Quantitative Trait Loci Increasing Root Length in Rice

机译:水稻快速生根1、2的定量定位增加根长的数量性状基因座

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摘要

The volume that the root system can occupy is associated with the efficiency of water and nutrient uptake from soil. Genetic improvement of root length, which is a limiting factor for root distribution, is necessary for increasing crop production. In this report, we describe identification of two quantitative trait loci (QTLs) for maximal root length, QUICK ROOTING 1 (QRO1) on chromosome 2 and QRO2 on chromosome 6, in cultivated rice (Oryza sativa L.). We measured the maximal root length in 26 lines carrying chromosome segments from the long-rooted upland rice cultivar Kinandang Patong in the genetic background of the short-rooted lowland cultivar IR64. Five lines had longer roots than IR64. By rough mapping of the target regions in BC4F2 populations, we detected putative QTLs for maximal root length on chromosomes 2, 6, and 8. To fine-map these QTLs, we used BC4F3 recombinant homozygous lines. QRO1 was mapped between markers RM5651 and RM6107, which delimit a 1.7-Mb interval on chromosome 2, and QRO2 was mapped between markers RM20495 and RM3430-1, which delimit an 884-kb interval on chromosome 6. Both QTLs may be promising gene resources for improving root system architecture in rice.
机译:根系可以占据的体积与土壤中水分和养分吸收的效率有关。根长的遗传改良是增加根系产量所必需的,而根长是根系分布的限制因素。在此报告中,我们描述了在栽培稻(Oryza sativa L.)中鉴定两个最大根长度的数量性状基因座(QTL),即2号染色体上的快速生根1(QRO1)和6号染色体上的QRO2。我们在短根低地栽培品种IR64的遗传背景中,测量了26个带有长根旱稻品种Kinandang Patong染色体片段的品系的最大根长。五根线的根比IR64长。通过粗略地绘制BC4F2群体中的目标区域,我们在2号,6号和8号染色体上检测到了最大根长的假定QTL。为了精细定位这些QTL,我们使用了BC4F3重组纯合系。 QRO1映射在标记RM5651和RM6107之间,在2号染色体上限定了1.7 Mb的间隔,QRO2映射在标记RM20495和RM3430-1之间,在6号染色体上限定了884 KB的间隔。这两个QTL都可能是有前途的基因资源改善水稻的根系结构。

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