Weng Jianfeng, Gu Suhai, Wan Xiangyuan, Gao He, Guo Tao, Su Ning, Lei Cailin, Zhang Xin, Cheng Zhijun, Guo Xiuping, Wang Jiulin, Jiang Ling, Zhai Huqu, Wan Jianmin
National Key Laboratory for Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, China.
Cell Res. 2008 Dec;18(12):1199-209. doi: 10.1038/cr.2008.307.
Grain weight is a major determinant of crop grain yield and is controlled by naturally occurring quantitative trait loci (QTLs). We earlier identified a major QTL that controls rice grain width and weight, GW5, which was mapped to a recombination hotspot on rice chromosome 5. To gain a better understanding of how GW5 controls rice grain width, we conducted fine mapping of this locus and uncovered a 1 212-bp deletion associated with the increased grain width in the rice cultivar Asominori, in comparison with the slender grain rice IR24. In addition, genotyping analyses of 46 rice cultivars revealed that this deletion is highly correlated with the grain-width phenotype, suggesting that the GW5 deletion might have been selected during rice domestication. GW5 encodes a novel nuclear protein of 144 amino acids that is localized to the nucleus. Furthermore, we show that GW5 physically interacts with polyubiquitin in a yeast two-hybrid assay. Together, our results suggest that GW5 represents a major QTL underlying rice width and weight, and that it likely acts in the ubiquitin-proteasome pathway to regulate cell division during seed development. This study provides novel insights into the molecular mechanisms controlling rice grain development and suggests that GW5 could serve as a potential tool for high-yield breeding of crops.Cell Research (2008) 18:1199-1209. doi: 10.1038/cr.2008.307; published online 18 November 2008.
粒重是作物产量的主要决定因素,受自然存在的数量性状基因座(QTL)控制。我们之前鉴定出一个控制水稻粒宽和粒重的主效QTL,即GW5,它被定位到水稻第5号染色体上的一个重组热点区域。为了更好地理解GW5如何控制水稻粒宽,我们对该基因座进行了精细定位,并发现与细长粒水稻IR24相比,水稻品种“秋光”中与粒宽增加相关的一个1212bp的缺失。此外,对46个水稻品种的基因分型分析表明,该缺失与粒宽表型高度相关,这表明GW5缺失可能在水稻驯化过程中被选择。GW5编码一个由144个氨基酸组成的新型核蛋白,定位于细胞核。此外,我们在酵母双杂交实验中表明GW5与多聚泛素存在物理相互作用。总之,我们的结果表明GW5是控制水稻粒宽和粒重的一个主效QTL,并且它可能在泛素-蛋白酶体途径中发挥作用,在种子发育过程中调节细胞分裂。本研究为控制水稻籽粒发育的分子机制提供了新的见解,并表明GW5可作为作物高产育种的潜在工具。《细胞研究》(2008年)18卷:1199 - 1209页。doi: 10.1-038/cr.2008.307;2008年11月18日在线发表。