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首页> 外文期刊>Breeding science >Characterization and fine mapping of thermo-sensitive chlorophyll deficit mutant1 in rice ( Oryza sativa L.)
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Characterization and fine mapping of thermo-sensitive chlorophyll deficit mutant1 in rice ( Oryza sativa L.)

机译:水稻热敏叶绿素缺陷型突变体1的特性和精细定位

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Chlorophyll content is one of the most important traits controlling crop biomass and economic yield in rice. Here, we isolated a spontaneous rice mutant named thermo-sensitive chlorophyll deficit 1 ( tscd1 ) derived from a backcross recombinant inbred line population. tscd1 plants grown normally from the seedling to tiller stages showed yellow leaves with reduced chlorophyll content, but showed no significant differences after the booting stage. At temperatures below 22°C, the tscd1 mutant showed the most obvious yellowish phenotype. With increasing temperature, the yellowish leaves gradually turned green and approached a normal wild type color. Wild type and tscd1 mutant plants had obviously different chloroplast structures and photosynthetic pigment precursor contents, which resulted in underdevelopment of chloroplasts and a yellowish phenotype in tscd1 . Genetic analysis indicated that the mutant character was controlled by a recessive nuclear gene. Through map-based cloning, we located the tscd1 gene in a 34.95 kb region on the long arm of chromosome 2, containing two BAC clones and eight predicted candidate genes. Further characterization of the tscd1 gene is underway. Because it has a chlorophyll deficit phenotype before the tiller stage and little influence on growth vigor, it may play a role in ensuring the purity of hybrids.
机译:叶绿素含量是控制水稻作物生物量和经济产量的最重要特征之一。在这里,我们分离了自交的重组近交系群体的自发水稻突变体,称为热敏叶绿素缺陷1(tscd1)。从幼苗到分plants期正常生长的tscd1植物显示出黄色的叶,叶绿素含量降低,但在孕穗期后无明显差异。在低于22°C的温度下,tscd1突变体表现出最明显的淡黄色表型。随着温度的升高,淡黄色的叶子逐渐变成绿色,并接近正常的野生型颜色。野生型和tscd1突变体植物的叶绿体结构和光合色素前体含量明显不同,导致tscd1的叶绿体发育不足和表型偏黄。遗传分析表明该突变体的性状是由隐性核基因控制的。通过基于图的克隆,我们将tscd1基因定位在2号染色体长臂的34.95 kb区域中,其中包含2个BAC克隆和8个预测的候选基因。 tscd1基因的进一步表征正在进行中。由于在分till期之前具有叶绿素缺乏表型,并且对生长活力的影响很小,因此它可能在确保杂种纯度方面发挥作用。

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