Liang Yongshu, Zheng Jian, Yan Chao, Li Xingxin, Liu Shifeng, Zhou Junjie, Qin Xiaojian, Nan Wenbin, Yang Yongqing, Zhang Hanma
Chongqing Key Laboratory of Molecular Biology of Plant Environmental Adaptations, College of Life Sciences, Chongqing Normal University, Chongqing, 401331, People's Republic of China.
Mol Genet Genomics. 2018 Feb;293(1):81-93. doi: 10.1007/s00438-017-1366-5. Epub 2017 Sep 6.
Overwintering (OW) is the process by which rice passes through the winter season and germinates in the following spring. OW is also a typical quantitative inheritance trait. Currently, the molecular genetic basis of OW trait in Chinese perennial Dongxiang wild rice (DXWR) still remains to be known. In this study, a linkage map consisting of 139 simple sequence repeat (SSR) markers was constructed using an F population derived from a cross between DXWR and 93-11. This map covered the rice genome by approximately 1778.72 cM with approximately 12.80 cM average interval. The phenotype data of OW trait were investigated for QTL analysis in the following spring of 2017. The gene ontology (GO) annotation of the M-QTL was performed through the rice genome annotation project system. A major QTL-qOW6 was flanked by RM20069 (16,542,428 bp) and RM3498 (20,982,059 bp) on chromosome 6 and detected repeatedly by both inclusive composite interval and single-marker analysis mapping with an LOD score of 9.45 and explained 22.22% of phenotypic variance. In addition, two small QTLs (qOW2 and qOW3) controlling OW trait were detected on the second and third chromosomes, respectively. No epistatic interaction was detected between these QTLs, suggesting their unique genetic model. A total of 183 candidate genes at qOW6 locus were involved in 887 GO terms. Among them, 52 candidate genes were involved in response to stress. The other 28 candidate genes were related to cell membrane, which might affect the OW trait in perennial DXWR. These results may establish the foundation for understanding the genetic mechanism about OW trait and provide a novel gene resource for OW rice variety improvement.
越冬是水稻度过冬季并在次年春季发芽的过程。越冬也是一种典型的数量遗传性状。目前,中国多年生东乡野生稻(DXWR)越冬性状的分子遗传基础仍不清楚。在本研究中,利用DXWR与93-11杂交衍生的F群体构建了一个由139个简单序列重复(SSR)标记组成的连锁图谱。该图谱覆盖水稻基因组约1778.72厘摩,平均间隔约12.80厘摩。在2017年次年春季对越冬性状的表型数据进行调查以进行QTL分析。通过水稻基因组注释项目系统对M-QTL进行基因本体(GO)注释。一个主要QTL-qOW6位于第6染色体上的RM20069(16,542,428 bp)和RM3498(20,982,059 bp)之间,通过包容性复合区间和单标记分析图谱均反复检测到,LOD值为9.45,解释了22.22%的表型变异。此外,分别在第二和第三条染色体上检测到两个控制越冬性状的小QTL(qOW2和qOW3)。这些QTL之间未检测到上位性相互作用,表明它们独特的遗传模式。qOW6位点共有183个候选基因参与887个GO术语。其中,52个候选基因参与应激反应。另外28个候选基因与细胞膜有关,这可能影响多年生DXWR的越冬性状。这些结果可能为理解越冬性状的遗传机制奠定基础,并为越冬水稻品种改良提供新的基因资源。