Characterization and fine mapping of a female fertility associated gene Ff1(t) in rice

文献类型: 外文期刊

第一作者: Zhao, Lei

作者: Zhao, Lei;Yan, Song;Huang, Renliang;Zhu, Shan;Xiong, Hongliang;Shen, Xianhua;Peng, Zhiqin;Huang, Yingjin

作者机构:

关键词: rice;female fertility weakening;ovary development;molecular mapping

期刊名称:JOURNAL OF GENETICS ( 影响因子:1.166; 五年影响因子:1.212 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Female-sterile line can be used as a pollinator which has a great potential for hybrid seeds production. However, reports on female fertility are fewer than male fertility. Here, we characterized a recessive female fertility weakening mutant ff1(t) from rice. The spikelet fertility was seriously affected in the mutant. Reciprocal crosses and pollen vitality assay suggest that the decreased fertility was caused by the defective female gametophytes. Further investigation indicated that the mutant ovary development was inhibited before fertilization and failed swelling after flowering. Genetic analysis and fine mapping showed that the mutant was controlled by a single recessive gene, residing on a 16.8 kb region on the long arm of chromosome 1. The gene annotation indicated that there was only one putative gene encoding lysine decarboxylase-like protein in this region, which was allelic to LOG. Further, the sequence analysis was carried out and a substitution at the splice site of intron 2 / exon 3 was revealed in ff1(t) mutant, resulting in the change of reading frame. The finding of novel allele of LOG locus will facilitate the understanding of the mechanisms of female gametophyte development.

分类号: Q3

  • 相关文献

[1]Genetic analysis and molecular mapping of a nuclear recessive male sterility gene, ms91(t), in rice. Liu, Xia,Wang, Songwen,Wang, Yong,Wei, Shu.

[2]Cloning and characterization of a putative farnesoic acid O-methyltransferase gene from the brown planthopper, Nilaparvata lugens. Liu, Shuhua,Gu, Jianhua,Liu, Zewen,Zhang, Chengwei,Yang, Baojun. 2010

[3]Ovarian development status and population characteristics of Sogatella furcifera (Horvath) and Nilaparvata lugens (Stal):implications for pest forecasting. Zheng, D. B.,Hu, G.,Yang, F.,Du, X. D.,Yang, H. B.,Zhang, G.,Zhang, X. X.,Cheng, X. N.,Zhai, B. P.,Qi, G. J.,Liang, Z. L.. 2014

[4]MicroRNA-275 and its target Vitellogenin-2 are crucial in ovary development and blood digestion of Haemaphysalis longicornis. Hao, Jiawei,Luo, Jin,Chen, Ze,Ren, Qiaoyun,Guo, Jinxia,Liu, Xiaocui,Chen, Qiuyu,Wu, Feng,Wang, Zhen,Luo, Jianxun,Yin, Hong,Wang, Hui,Liu, Guangyuan,Yin, Hong,Wang, Hui,Wang, Hui. 2017

[5]Migration Analysis of Sogatella furcifera (Hemiptera: Delphacidae) in the Northeastern Hunan Province in June. Wu, Yan,Zhai, Baoping,Ma, Mingyong,Peng, Zhaopu,Zhang, Yi,Wu, Yan,Zhao, Xin,Liao, Guoan.

[6]Allelism and molecular mapping of soybean necrotic root mutants. Palmer, Reid G.,Zhang, Lei,Huang, Zhiping. 2008

[7]Genetic Analysis and Molecular Mapping of an All-Stage Stripe Rust Resistance Gene in Triticum aestivum-Haynaldia villosa Translocation Line V3. Hou Lu,Ma Dong-fang,Hu Mao-lin,Lu Yan,Jing Jin-xue,Hou Lu,He Miao-miao,Hu Mao-lin. 2013

[8]SSR markers associated with fertility restoration genes against Triticum timopheevii cytoplasm in Diticum aestivum. Zhou, WC,Kolb, FL,Domier, LL,Wang, SW. 2005

[9]Identification and mapping of a new powdery mildew resistance allele in the Chinese wheat landrace Hongyoumai. Fu, Bisheng,Zhang, Zhiliang,Zhang, Qiaofeng,Wu, Xiaoyou,Wu, Jizhong,Cai, Shibin,Zhang, Zhiliang. 2017

[10]Two genes conferring resistance to Pythium stalk rot in maize inbred line Qi319. Song, Feng-Jing,Duan, Can-Xing,Li, Hong-Jie,Zhu, Zhen-Dong,Sun, Su-Li,Wu, Xiao-Fei,Wang, Xiao-Ming,Xiao, Ming-Gang,Liu, Bao-Tao.

[11]Mapping of Powdery Mildew Resistance Gene pmCH89 in a Putative Wheat-Thinopyrum intermedium Introgression Line. Hou, Liyuan,Zhang, Xiaojun,Li, Xin,Yang, Huizhen,Zhan, Haixian,Qiao, Linyi,Guo, Huijuan,Chang, Zhijian,Zhang, Xiaojun,Li, Xin,Zhan, Haixian,Qiao, Linyi,Guo, Huijuan,Chang, Zhijian,Jia, Juqing. 2015

[12]Inheritance and QTL mapping of resistance to gummy stem blight in cucumber stem. Zhang, Shengping,Liu, Shulin,Miao, Han,Shi, Yanxia,Wang, Min,Wang, Ye,Li, Baoju,Gu, Xingfang.

[13]Identification and mapping stripe rust resistance gene YrLM168a using extreme individuals and recessive phenotype class in a complicate genetic background. Chen, Guoyue,Wei, Yuming,Liu, Yaxi,Jiang, Qiantao,Lan, Xiujin,Dai, Shoufen,Zheng, Youliang,Feng, Junyan,Zhang, Min,Li, Wei,Pu, Zhien.

[14]Locating QTLs controlling several adult root traits in an elite Chinese hybrid rice. Cao, Li Yong.

[15]Identification and Molecular Mapping of the RsDmR Locus Conferring Resistance to Downy Mildew at Seedling Stage in Radish (Raphanus sativus L.). Xu Liang,Jiang Qiu-wei,Wang Yan,Gong Yi-qin,Wang Xian-li,Limera Cecilia,Liu Li-wang,Wu Jian. 2014

[16]Molecular mapping of a new temperature-sensitive gene LrZH22 for leaf rust resistance in Chinese wheat cultivar Zhoumai 22. Wang, Cuifen,Zhang, Peipei,Yao, Zhanjun,Qin, Jinyan,Li, Zaifeng,Liu, Daqun,Yin, Guihong,Xia, Xianchun,He, Zhonghu.

[17]Molecular detection of a gene effective against powdery mildew in the wheat cultivar Liangxing 66. Huang, Jiang,Xu, Hongxing,An, Diaoguo,Huang, Jiang,Zhao, Zihui,Song, Fengjing,Wang, Xiaoming,Huang, Yan,Li, Hongjie,Huang, Jiang,Huang, Yan.

[18]Molecular mapping and markers for leaf rust resistance gene Lr24 in CIMMYT wheat line 19HRWSN-122. Qi, Ai-yong,Zhang, Pei-pei,Li, Zai-feng,Liu, Da-qun,Xia, Xian-chun,He, Zhong-hu,He, Zhong-hu,Huerta-Espino, Julio.

[19]An abiotic stress response gene TaSnRK2.7-B in wheat accessions: Genetic diversity analysis and gene mapping based on SNPs. Zhang, Hongying,Mao, Xinguo,Wu, Xianshan,Jing, Ruilian,Zhang, Hongying,Wang, Chengshe. 2011

[20]Inheritance and genetic mapping of a gene for seedling resistance to powdery mildew in wheat line X3986-2. Ma, Pengtao,Xu, Hongxing,Luo, Qiaoling,Qie, Yanmin,Xu, Yunfeng,An, Diaoguo,Ma, Pengtao,Zhou, Yilin,Han, Haiming,Li, Lihui.

作者其他论文 更多>>