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Over?¢????expression of the rice LRK1 gene improves quantitative yield components

机译:水稻LRK1基因的过度表达提高了定量产量成分

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In rice ( Oryza sativa L.), the number of panicles, spikelets per panicle and grain weight are important components of grain yield. These characteristics are controlled by quantitative trait loci (QTLs) and are derived from variation inherent in crops. As a result of the complex genetic basis of these traits, only a few genes involved in their control have been cloned and characterized. We have previously map?¢????cloned a gene cluster including eight leucine?¢????rich repeat receptor?¢????like kinase ( LRK ) genes in Dongxiang wild rice ( Oryza rufipogon Griff.), which increased the grain yield by 16%. In the present study, we characterized the LRK1 gene, which was contained in the donor parent (Dongxiang wild rice) genome and absent from the recurrent parent genome (Guichao2, Oryza sativa L. ssp. indica ). Our data showed that rice LRK1 is a plasma membrane protein expressed constitutively in leaves, young panicles, roots and culms. The over?¢????expression of rice LRK1 results in increased panicles, spikelets per panicle, weight per grain and enhanced cellular proliferation, leading to a 27.09% increase in total grain yield per plant. The increased number of panicles and spikelets per panicle are associated with increased branch number. Our data suggest that rice LRK1 regulates rice branch number by enhancing cellular proliferation. The functional characterization of rice LRK1 facilitates an understanding of the mechanisms involved in cereal crop yield, and may have utility in improving grain yield in cereal crops.
机译:在水稻中,穗数,每穗的小穗数和粒重是谷物产量的重要组成部分。这些特征由数量性状基因座(QTL)控制,并源自作物固有的变异。由于这些性状具有复杂的遗传基础,因此仅克隆和表征了涉及其控制的少数基因。我们先前已经在东乡野生稻(Oryza rufipogon Griff。)中定位了一个包含八个亮氨酸富集重复序列受体类似激酶(LRK)基因的基因簇,该基因簇中有八个谷物产量提高了16%。在本研究中,我们表征了LRK1基因,该基因包含在供体亲本(东乡野生稻)基因组中,而在轮回亲本基因组(Guichao2,Oryza sativa L. ssp.indica)中不存在。我们的数据表明,水稻LRK1是在叶,幼穗,根和茎中组成性表达的质膜蛋白。水稻LRK1的过表达导致穗增加,每穗小穗,每粒重和细胞增殖增强,导致每株植物总谷物产量增加27.09%。穗数和每穗小穗数的增加与分支数的增加有关。我们的数据表明水稻LRK1通过增强细胞增殖来调节水稻分支数。水稻LRK1的功能特性有助于人们了解谷物产量的机制,并可能有助于提高谷物产量。

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