首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Fine mapping and candidate gene analysis ofqRN5a, a novel QTL promoting root number in rice under low potassium
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Fine mapping and candidate gene analysis ofqRN5a, a novel QTL promoting root number in rice under low potassium

机译:QRN5A的精细测绘和候选基因分析,新型QTL在低钾下促进水稻中的根数

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Key message qRN5a, a novel QTL for increasing root number under low K in rice, was fine mapped to a 48.8-kb region on chromosome 5, andLOC_Os05g27980is the most likely candidate gene. Potassium (K) is a mineral nutrient essential for plant growth and development, but the molecular mechanism for low-K (LK) tolerance in rice remains poorly understood. In our previous study, the quantitative trait locus (QTL)qRN5afor root number (RN) under LK was identified in the chromosome segment substitution line CSSL35 carrying segments from XieqingzaoB in the genetic background of Zhonghui9308 (ZH9308). CSSL35 developed more roots than ZH9308 under LK at the seedling stage, andqRN5awas initially located within a 1,023-kb genomic region. In this study, to understand the molecular basis ofqRN5a, a large F-2:3(BC5F2:3) population obtained from crossing CSSL35 and ZH9308 was constructed for fine mapping. High-resolution linkage analysis narrowed downqRN5ato a 48.8-kb interval flanked by markers A99 and A139. Seven putative candidate genes were annotated in the delimited region, and three genes (Os05g0346700,LOC_Os05g27980, andLOC_Os05g28000) had nonsynonymous single-nucleotide polymorphisms in the coding sequence between the two parents. Expression analysis suggests thatLOC_Os05g27980, which encodes a LATERAL ORGAN BOUNDARIES domain-containing protein, is a positive regulator of RN under LK and is the most likely candidate gene forqRN5a. Moreover, we found thatqRN5apromotes expression of OsIAA23and repressesOsHAK5expression in root tissues to promote root initiation in CSSL35 under LK conditions. Additional investigations onOsHAK5in rice are needed to elucidate the basis of changing root architecture under different K(+)concentrations.qRN5ais useful for marker-assisted selection to develop an ideotype with improved root architecture in rice under K deficiency.
机译:关键信息qRN5a是一个在低钾条件下增加水稻根系数量的新QTL,被精细定位到5号染色体上48.8kb的区域,Loc_Os05G27980是最有可能的候选基因。钾(K)是植物生长发育所必需的矿质养分,但水稻耐低钾(LK)的分子机制仍不清楚。在我们之前的研究中,LK下的根数数量性状位点(QTL)QRN5AFO是在中恢9308(ZH9308)遗传背景下,从协青早B染色体片段替换系CSSL35中鉴定出来的。在苗期LK条件下,CSSL35比ZH9308发育出更多的根,QRN5Awas最初位于1023kb的基因组区域内。在本研究中,为了理解QRN5A的分子基础,构建了一个从CSSL35和ZH9308杂交获得的大F-2:3(BC5F2:3)群体,用于精细定位。高分辨率连锁分析将qrn5ato缩小到48.8kb的区间,两侧是标记A99和A139。在限定的区域中注释了七个假定的候选基因,三个基因(Os05g0346700、LOC_Os05g27980和LOC_Os05g28000)在双亲之间的编码序列中具有非同义单核苷酸多态性。表达分析表明,Loc_Os05g27980编码一个含有侧器官边界结构域的蛋白质,是LK下RN的正调节因子,是QRN5A最可能的候选基因。此外,我们发现在LK条件下,QRN5A促进OSIAA23的表达,抑制根组织中OSHAK5的表达,从而促进CSSL35的生根。为了阐明在不同K(+)浓度下改变根系结构的基础,还需要对水稻中的ONOSHAK5进行进一步的研究。QRN5AI可用于标记辅助选择,以在缺钾条件下培育具有改良根系结构的水稻理想型。

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    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

    China Natl Rice Res Inst China Natl Ctr Rice Improvement Hangzhou 310006 Peoples R China;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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