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首页> 外文期刊>Scientific reports. >Partial loss-of-function of NAL1 alters canopy photosynthesis by changing the contribution of upper and lower canopy leaves in rice
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Partial loss-of-function of NAL1 alters canopy photosynthesis by changing the contribution of upper and lower canopy leaves in rice

机译:NAL1的部分功能丧失通过改变水稻上,下冠层叶片的贡献而改变冠层光合作用

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Little is known about the genetic basis of leaf and canopy photosynthesis. Here we aimed to detect novel quantitative trait loci (QTL) controlling photosynthesis by increasing leaf nitrogen content (LNC) per leaf area and analysed its effect on leaf and canopy photosynthesis. To identify QTL that increase photosynthetic rate in leaves, we screened chromosome segment substitution lines (CSSLs) of Oryza sativa ssp. japonica cultivar Koshihikari and O. sativa ssp. indica cultivar Nona Bokra using LNC per leaf area as the phenotype indicator. Locus leaf nitrogen content on chromosome four (qLNC4) is associated with increased LNC and photosynthetic rate per leaf area. Moreover, a non-synonymous amino acid substitution was identified in the NARROW LEAF 1 (NAL1) gene located in the qLNC4 region. This NAL1 allele increases LNC and photosynthetic rate per leaf area in flag leaves but does not increase whole-leaf photosynthesis. This NAL1 allele also increases light capture and whole-leaf nitrogen content of the lower leaves and is associated with slower senescence in flag leaves. These results suggest that this NAL1 allele does not increase whole-leaf photosynthesis but plays a role in regulating spatial and temporal trade-offs among traits at the whole-plant level.
机译:关于叶和冠层光合作用的遗传基础知之甚少。在这里,我们旨在通过增加每叶面积的叶片氮含量(LNC)来检测控制光合作用的新数量性状基因座(QTL),并分析其对叶片和冠层光合作用的影响。为了鉴定增加叶片光合作用速率的QTL,我们筛选了稻(Oryza sativa ssp)的染色体片段替代系(CSSLs)。粳稻栽培品种越光和水稻使用每个叶面积的LNC作为表型指标的印度品种Nona Bokra。第四个染色体(qLNC4)上的叶氮含量与LNC的增加和每叶面积的光合速率有关。此外,在位于qLNC4区的NARROW LEAF 1(NAL1)基因中鉴定出非同义氨基酸取代。该NAL1等位基因增加了旗叶中每片叶的LNC和光合速率,但不增加全叶的光合作用。该NAL1等位基因还增加了下部叶片的光捕获和全叶氮含量,并且与剑叶的衰老有关。这些结果表明该NAL1等位基因不会增加全叶的光合作用,但在整个植物水平上在调节性状之间的时空平衡方面起着作用。

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