首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Genomic Regions Analysis of Seedling Root Traits and Their Regulation in Responses to Phosphorus Deficiency Tolerance in CSSL Population of Elite Super Hybrid Rice
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Genomic Regions Analysis of Seedling Root Traits and Their Regulation in Responses to Phosphorus Deficiency Tolerance in CSSL Population of Elite Super Hybrid Rice

机译:超级超级杂交稻CSSL群体幼苗根系基因组区域分析及其对耐缺磷性的调控。

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摘要

Phosphorus (P) is the essential macro-element supporting rice productivity. Quantitative trait loci (QTL) underlying related traits at the seedling stage under two different phosphorus levels was investigated in rice using a population of 76 Chromosomal Sequence Substitution Lines (CSSLs) derived from a cross between the maintainer variety XieqingzaoB (P stress tolerant) and the restorer variety Zhonghui9308 (P stress sensitive); the parents of super hybrid rice Xieyou9308. A genetic linkage map with 120 DNA marker loci was constructed. At logarithmic odd (LOD) value of 2.0, a total of seven QTLs were detected for studied traits under two P levels and their relative ratio. The LOD values ranged from 2.00 to 3.32 and explaining 10.82% to 18.46% of phenotypic variation. Three QTLs were detected under low phosphorus (P), one under normal (P+) and three under their relative ratio (P/P+) on the rice chromosomes 3, 5, 6, 8 and 10. No significant QTLs were found for shoot dry weight (SDW) and total dry weight (TDW). The pleiotropic QTLs influencing root number (qRN5) and root dry weight (qRDW5) as novel QTLs under P level were detected near marker RM3638 on chromosome 5, which considered to directly contributing to phosphorus deficiency tolerance in rice. These QTLs need further analysis, including the fine mapping and cloning, which may use in molecular marker assisted breeding.
机译:磷(P)是支持水稻生产力的重要宏观元素。在水稻中,使用了76个染色体序列替代品系(CSSLs),这些基因是由维持品种XeeqingzaoB和P耐性品种之间的杂交得到的,在两个不同磷水平下,苗期的相关性状的数量性状位点(QTL)进行了研究。恢复品种Zhonghui9308(P胁迫敏感);超级杂交稻谢优9308的父母。构建具有120个DNA标记基因座的遗传连锁图。在2.0的对数奇数(LOD)值下,在两个P水平及其相对比下,共检测到七个研究性状的QTL。 LOD值范围为2.00至3.32,解释了表型变异的10.82%至18.46%。在低磷(P -)下检测到三个QTL,在正常(P + )下检测到一个QTL,在相对比率下(P - /水稻第3、5、6、8和10号染色体上的P + )没有发现明显的QTL(茎干重(SDW)和总干重(TDW))。在P -水平下,在根系5号标记RM3638附近检测到影响根系数量(qRN5)和根系干重(qRDW5)的多效性QTL,认为这直接促进了水稻对磷缺乏的耐受性。这些QTL需要进一步分析,包括精细的作图和克隆,可用于分子标记辅助育种。

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