Dong Jingfang, Zhang Shaohong, Hu Haifei, Wang Jian, Li Risheng, Wu Jing, Chen Jiansong, Zhou Lian, Ma Yamei, Li Wenhui, Nie Shuai, Wang Shaokui, Zhang Guiquan, Liu Bin, Zhao Junliang, Yang Tifeng
Rice Research Institute, Key Laboratory of Genetics and Breeding of High Quality Rice in Southern China (Co-construction by Ministry and Province), Ministry of Agriculture and Rural Affairs, Guangdong Key Laboratory of New Technology in Rice Breeding, Guangdong Rice Engineering Laboratory, Guangdong Academy of Agricultural Sciences, Guangzhou, China.
South China Agricultural University, Guangzhou, China.
Plant Biotechnol J. 2025 May;23(5):1491-1506. doi: 10.1111/pbi.14600. Epub 2025 Jan 29.
Improving cold tolerance at the flowering stage (CTF) in rice is crucial for minimising yield loss, making the identification and application of cold-tolerant genes and QTLs imperative for effective molecular breeding. The long lead time, dependence on cold treatment conditions, and the inherent complexity of the trait make studying the genetic basis of CTF in rice challenging. To date, the fine-mapping or cloning of QTLs specific to CTF has not yet been achieved. In this study, single segment substitution lines (SSSLs) were constructed using HJX74 as the recipient and IR58025B, known for good CTF, as the donor. This approach led to the identification of two cold tolerance QTLs, qCTF3 and qCTF6, in rice. qCTF6 has promising breeding potential. Further, we identified the causal gene CTF1 underlying qCTF6 through map-based cloning. CTF1 which encodes a conserved putative protein, has two SNPs within its coding sequence that influence CTF in rice. Additionally, genetic variations in the promoter of CTF1 also contributes to CTF. Thirteen variant sites of CTF1 in the four cold tolerance SSSLs are consistent with the IR58025B. Moreover, we analysed 307 accessions to characterise haplotypes based on the 13 variation sites, identifying five distinct haplotypes. The selection and evolutionary analysis indicate that the cold-tolerant haplotype of CTF1 is a newly generated mutation that has undergone selection in japonica during domestication. This study not only provides a novel favourable gene for molecular breeding of CTF but also highlights the potential of CTF1 in advancing rice breeding.
提高水稻开花期的耐冷性(CTF)对于最大限度地减少产量损失至关重要,因此鉴定和应用耐冷基因及QTL对于有效的分子育种来说势在必行。较长的准备时间、对冷处理条件的依赖以及该性状固有的复杂性使得研究水稻CTF的遗传基础具有挑战性。迄今为止,尚未实现对CTF特异性QTL的精细定位或克隆。在本研究中,以HJX74为受体、以CTF良好的IR58025B为供体构建了单片段代换系(SSSL)。这种方法导致在水稻中鉴定出两个耐冷QTL,即qCTF3和qCTF6。qCTF6具有良好的育种潜力。此外,我们通过图位克隆鉴定了qCTF6的因果基因CTF1。CTF1编码一种保守的假定蛋白,其编码序列内有两个SNP影响水稻的CTF。此外,CTF1启动子中的遗传变异也对CTF有贡献。四个耐冷SSSL中CTF1的13个变异位点与IR58025B一致。此外,我们基于这13个变异位点分析了307份材料以表征单倍型,鉴定出五种不同的单倍型。选择和进化分析表明,CTF1的耐冷单倍型是一个新产生的突变,在驯化过程中在粳稻中经历了选择。本研究不仅为CTF的分子育种提供了一个新的有利基因,还突出了CTF1在推进水稻育种方面的潜力。