数字农科院2.0

Identification and Validation of Quantitative Trait Loci for Grain Number in Rice (Oryza sativa L.)

文献类型: 外文期刊

作者: 牛小军; 朱玉君;;庄杰云;;樊叶杨

作者机构:

关键词: Rice; Grain Number; Qtl; Minor Effect; Residual Heterozygote

期刊名称: Agronomy

ISSN: 2073-4395

年卷期: 2020 年 10 卷 2 期

页码:

收录情况: JCR(2021版)

摘要: Grains number is one of the most important agronomic traits in the determination of rice productivity. To explore the underlying genetic basis of grain number in rice, quantitative trait locus (QTL) analysis was performed using three recombinant inbred line populations derived from indica rice crosses of Teqing/IRBB lines, Zhenshan 97/Milyang 46, and Xieqingzao/Milyang 46, respectively. A total of 58 QTLs distributed on all 12 rice chromosomes were identified, including 22 for number of grains per panicle (NGP), 17 for number of spikelets per panicle, and 19 for spikelet fertility. The individual QTL counted for 1.5 to 22.1% of phenotypic variation. Among them, 15 QTLs shared by two or three populations and eight QTLs showed large effects with R-2 larger than 10%. Furthermore, three QTLs with minor effects for NGP, qNGP5.5, qNGP9.1, and qNGP12.1, were detected and validated by eliminating the segregation of major-effect QTL using four residual heterozygote-derived populations. These results not only enrich our understanding of the mechanism of grain number, but also provide a foundation for cloning and selecting candidate for marker-assisted selection breeding in rice.

分类号:

  • 相关文献

[1]Novel Rice Mutants Overexpressing The B.rassinosteroid Catabolic Gene Cyp734A4. Qian, WJ, Wu, C, Fu, YP, Hu, GC, He, ZQ, Liu, WZ. 2017

[2]水稻淡褐斑叶突变体lbsll的遗传分析与基因定位. 奉保华,杨杨,施勇烽,林璐,陈洁,黄奇娜,魏彦林,HeiLEUNG,吴建利. 2012

[3]OsBTF3转基因水稻对病原茵侵染的反应和防卫基因的表达分析. 陈华民,吴茂森,何晨阳. 2012

[4]Exploration Of Genetic Selection In R.ice Leaf Length And W idth. Yang, Yaolong,Yuan, Xiaoping,Wei, Xinghua,Yu, Hanyong,Wang, Yiping,Feng, Yue,Zhang, Mengchen,Xu, Qun. 2018

[5]Fine Mapping Of A Panicle B.last Resistance Gene Pb-Bd1 I n Japonica Landrace Bodao And Its Application In Rice Breeding. Wei, Xiaorui,Fang, Nengyan,Yu, Yao,Fang, Nengyan,Chen, Hao,Yin, Congfei,Li, Mengya,Bao, Yongmei,Zhang, Hongsheng,He, Wanwan,Guan, Changhong,Shen, Lingtong. 2019

[6]Control Of Plant Height By 2.4 Alleles At 12 Q uantitative Trait Loci In Rice. Wen, Zhihua,Yang, Changdeng,Chen, Yuan,Zheng, Anfu,Ji, Zhijuan,Zeng, Yuxiang,Liang, Yan. 2019

[7]New Qtls Identified For Leaf C.orrelative Traits In Rice S eedlings Under Cadmium Stress. Wang, JH, Fang, YX, Tian, B, Zhang, XQ, Zeng, DL, Guo, LB, Hu, J, Xue, DW. 2018

[8]Identification Of Qtls For Rice F.lower Opening Time In T wo Environments. Zhang, M, Zhang, HL, Dai, DQ, Li, XM, Chen, JY, Bao, JS, Ma, LY. 2017

[9]Qtl Mapping And Candidate Gene A.nalysis Of Ferrous Iron A nd Zinc Toxicity Tolerance At Seedling Stage In Rice By Genome-Wide Association Study. Zhang, J, Chen, K, Pang, YL, Naveed, SA, Zhao, XQ, Wang, XQ, Wang, Y, Dingkuhn, M, Pasuquin, J, Li, ZK, Xu, JL. 2017

[10]Genome-Wide Association Mapping for Grain Shape in Rice Accessions. Xing, Danying,Xu, Junying,Wei, Wenhang,Wang, Chunchao,Xu, Jianlong,Li, Zhixin,Xu, Jianlong,Yang, Longwei,Zhu, Shuangbing,Qiu, Xianjin,Wei, Wenhang,Qiu, Xianjin,Hu, Hui,He, Liping,Zhu, Shuangbing,Lv, Wenkai,Xu, Junying,Hu, Hui. 2020

[11]A novel digenic epistatic interaction at two loci regulating spikelet fertility in rice. Yuxiang Zeng , Yuan Chen +, Zhijuan Ji , Yan Liang , Changdeng Yang *. 2020

[12]Mapping Qtl With Main Effect, D.igenic Epistatic And Qtl X Environment Interactions Of Panicle Related Traits In Rice (Oryza Sativa). Leng, YJ, Xue, DW, Huang, LC, Chen, L, Ren, DY, Yang, YL, Zhang, GH, Hu, J, Zhu, L, Guo, LBA, Lin, YJ, Qian, Q, Zeng, DL. 2017

[13]Genetic Analysis For Rice Seedling V.igor And Fine Mapping O f A Major Qtl Qssl1B For Seedling Shoot Length. Zhang, AP, Liu, CL, Chen, G, Hong, K, Gao, Y, Tian, P, Peng, YL, Zhang, B, Ruan, BP, Jiang, HZ, Guo, LB, Qian, Q, Gao, ZY. 2017

[14]Cloning of qHD8BAS, a Quantitative Trait Locus Regulating Heading Date in Rice. Zhengjiu Zhang,Ying Bian,Ruoju Yang,Xiaobo Zhang,Junyi Gong,Jiongjiong Fan. 2025

[15]Integrated transcriptome and BSA-seq analysis identifies a novel QTL for Meloidogyne graminicola resistance in rice HuaHang31. Zhuhong Yang,Qingyan Xiao,Yao Wang,Yingjun Zhang,Shan Ye,Pingyong Sun,Wuhan Zhang,Huafeng Deng,Shiming Liu,Zhong Ding. 2025

[16]水稻耐亚铁毒QTLs的定位(英文). 万建林,翟虎渠,万建民. 2005

[17]基于MAGIC群体的水稻镉含量全基因组关联分析. 董铮,王雅美,黎用朝,熊海波,薛灿辉,潘孝武,刘文强,魏秀彩,李小湘. 2022

[18]芝麻含油量及脂肪酸含量QTL分析. 周瑢,许方涛,盛晨,游均,黎冬华,宋胜楠,王林海. 2021

[19]水稻苗期耐热种质资源筛选及QTL定位. 刘进,崔迪,余丽琴,张立娜,周慧颖,马小定,胡佳晓,韩冰,韩龙植,黎毛毛. 2022

[20]Fine-Mapping Of Qtgw1.2A, A Quantitative T.rait Locus For 1000-Grain W eight In Rice. Wang, WH, Wang, LL, Zhu, YJ, Fan, YY, Zhuang, JY. 2019

作者其他论文 更多>>