Shomura Ayahiko, Izawa Takeshi, Ebana Kaworu, Ebitani Takeshi, Kanegae Hiromi, Konishi Saeko, Yano Masahiro
Institute of the Society for Techno-Innovation of Agriculture, Forestry, and Fisheries, 446-1 Ippaizuka, Kamiyokoba, Tsukuba, Ibaraki 305-0854, Japan.
Nat Genet. 2008 Aug;40(8):1023-8. doi: 10.1038/ng.169. Epub 2008 Jul 6.
The domestication of crops involves a complex process of selection in plant evolution and is associated with changes in the DNA regulating agronomically important traits. Here we report the cloning of a newly identified QTL, qSW5 (QTL for seed width on chromosome 5), involved in the determination of grain width in rice. Through fine mapping, complementation testing and association analysis, we found that a deletion in qSW5 resulted in a significant increase in sink size owing to an increase in cell number in the outer glume of the rice flower; this trait might have been selected by ancient humans to increase yield of rice grains. In addition, we mapped two other defective functional nucleotide polymorphisms of rice domestication-related genes with genome-wide RFLP polymorphisms of various rice landraces. These analyses show that the qSW5 deletion had an important historical role in artificial selection, propagation of cultivation and natural crossings in rice domestication, and shed light on how the rice genome was domesticated.
作物驯化涉及植物进化中复杂的选择过程,并与调控重要农艺性状的DNA变化相关。在此,我们报告克隆了一个新鉴定的QTL,qSW5(第5号染色体上种子宽度的QTL),它参与水稻粒宽的决定。通过精细定位、互补测试和关联分析,我们发现qSW5中的一个缺失导致库大小显著增加,这是由于水稻花外稃细胞数量增加所致;这一性状可能已被古代人类选择以提高稻谷产量。此外,我们利用各种水稻地方品种的全基因组RFLP多态性定位了另外两个与水稻驯化相关基因的功能性核苷酸多态性缺陷。这些分析表明,qSW5缺失在水稻驯化的人工选择、栽培繁殖和自然杂交中具有重要的历史作用,并揭示了水稻基因组是如何被驯化的。