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Artificial Selection of Gn1a Plays an Important role in Improving Rice Yields Across Different Ecological Regions

机译:GN1A的人工选择在改善不同生态区域的水稻产量方面发挥着重要作用

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BackgroundRice is one of the most important crops, and it is essential to improve rice productivity to satisfy the future global food supply demands. Gn1a ( OsCKX2 ), which encodes cytokinin oxidase/dehydrogenase, plays an important role in regulating rice grain yield. ResultsIn this study, we analyzed the genetic variation of Gn1a , which influences grain yield through controlling the number of spikelets in rice. The allelic variations in the promoter, 5’ untranslated region (UTR) and coding sequence (CDS) of Gn1a were investigated in 175 cultivars and 21 wild rice accessions. We found that Gn1a showed less sequence variation in the cultivars, but exhibited significant nucleotide diversity in wild rice. A total of 14 alleles, named AP1 to AP14, were identified in the cultivars based on the amino acid divergence of GN1A. Association analysis revealed that the number of spikelets and grain yield were significantly different between the different alleles. Phylogenetic analysis indicated that the three main alleles, AP3, AP8 and AP9, in the cultivars might originate from a common ancestor allele, AP1, in wild rice. ConclusionsOf these alleles in the cultivars, AP9 was suggested as the best allele in indica , as it has shown strong artificial selection in breeding high-yield rice in the past. It might be valuable to explore the high-yield-related alleles of Gn1a to develop high-yield rice cultivars in future breeding programs.
机译:BackgroundRice是最重要的作物之一,并且必须提高水稻生产力,以满足未来的全球粮食供应需求。编码细胞蛋白氧化酶/脱氢酶的GN1A(OSCKX2)在调节水稻产量中起重要作用。结果本研究,我们分析了GN1A的遗传变异,通过控制水稻中的尖峰数来影响谷物产量。在175种栽培品种和21种野生水稻探险中研究了GN1A的启动子,5'未翻转区(UTR)和编码序列(CDS)的等位基因变化。我们发现GN1A显示出较少的品种序列变异,但在野生稻中表现出显着的核苷酸多样性。基于GN1A的氨基酸分歧,在品种中鉴定了Name AP1至AP14的14个等位基因。关联分析显示,不同等位基因之间的尖峰和谷物产量的数量显着差异。系统发育分析表明,三种主要等位基因,AP3,AP8和AP9,在品种中可能来自野生稻中的共同的祖先ALVEREE,AP1。结论这些等位基因在品种中,AP9被认为是籼稻中最好的等位基因,因为它在过去的育种高产大米中显示出强烈的人工选择。探讨GN1A的高产量相关等位基因可能是有价值的,以在未来的繁殖计划中开发高产水稻品种。

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