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Genetic analysis and fine mapping of a qualitative trait locus wpb1 for albino panicle branches in rice

机译:水稻白化穗部枝质性状位点wpb1的遗传分析和精细定位。

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摘要

Chloroplast plays an important role in the plant life cycle. However, the details of its development remain elusive in rice. In this study, we report the fine-mapping of a novel rice gene wpb1 (white panicle branch 1), which affects chloroplast biogenesis, from a tropical japonica variety that results in an albino panicle branches at and after the heading stage. The wpb1 variety was crossed with Nipponbare to generate the F2 and BC1F2 populations. Green and white panicle branch phenotypes with a 3:1 segregation ratio was observed in the F2 population. Bulked segregant analysis (BSA) based on whole genome resequencing was conducted to determine the wpb1 locus. A candidate interval spanning from 11.35 to 23.79M (physical position) on chromosome 1 was identified. The results of BSA analysis were verified by a 40K rice SNP-array using the BC1F2 population. A large-scale F2 population was used to pinpoint wpb1, and the locus was further narrowed down to a 95-kb interval. Furthermore, our results showed that the expression levels of the majority of the genes involved in Chl biosynthesis, photosynthesis and chloroplast development were remarkably affected in wpb1 variety and in F2 plants with a white panicle branch phenotype. In line with the results mentioned above, anatomical structural examination and chlorophyll (Chl) content measurement suggested that wpb1 might play an important role in the regulation of chloroplast development. Further cloning and functional characterization of the wpb1 gene will shed light on the molecular mechanism underlying chloroplast development in rice.
机译:叶绿体在植物的生命周期中起着重要的作用。然而,其发展的细节在水稻中仍然难以捉摸。在这项研究中,我们报告了一个新的水稻基因wpb1(白穗分枝1)的精细映射,该基因影响叶绿体生物发生,来自热带粳稻品种,导致抽穗期及抽穗后产生白化穗分枝。 wpb1品种与Nipponbare杂交产生F2和BC1F2种群。在F2种群中观察到绿色和白色圆锥花序表型的分离比为3:1。进行了基于全基因组重测序的批量隔离分析(BSA),以确定wpb1基因座。确定了一个候选区间,其范围为1号染色体上的11.35到23.79M(物理位置)。通过使用BC1F2群体的40K水稻SNP阵列验证了BSA分析的结果。大规模的F2种群用于查明wpb1,并且基因座进一步缩小到95kb的间隔。此外,我们的结果表明,在wpb1品种和具有白色圆锥花序表型的F2植物中,与Chl生物合成,光合作用和叶绿体发育有关的大多数基因的表达水平受到显着影响。与上述结果一致,解剖结构检查和叶绿素(Chl)含量测定表明wpb1可能在调节叶绿体发育中起重要作用。 wpb1基因的进一步克隆和功能表征将阐明水稻叶绿体发育的分子机制。

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