您好,欢迎访问湖北省农业科学院 机构知识库!

Bayesian dissection for genetic architecture of traits associated with nitrogen utilization efficiency in rice

文献类型: 外文期刊

作者: Piao, Zhongze 2 ; Li, Maobai 2 ; Li, Peide 3 ; Zhang, Jianming 2 ; Zhu, Chunmei 4 ; Wang, Hui 2 ; Luo, Zhixiang 5 ; Lee, 1 ;

作者机构: 1.Shanghai Jiao Tong Univ, Sch Agr & Biol, Shanghai 200240, Peoples R China

2.Shanghai Acad Agr Sci, Crop Breeding & Cultivat Res Inst, Shanghai 201106, Peoples R China

3.Hubei Acad Agr Sci, Wuhan 430064, Peoples R China

4.Haifeng Farm Shanghai, Dafeng 224100, Jiangsu, Peoples R China

5.Anhui Acad Agr Sci, Rice Res Inst, Hefei 230031, Peoples R China

6.Natl Inst Agr Biotechnol Rural Dev Adm, Suwon 441707, South Korea

关键词: Rice;nitrogen utilization efficiency;QTL;epistatic;interaction of QTL x nitrogen level

期刊名称:AFRICAN JOURNAL OF BIOTECHNOLOGY ( 影响因子:0.573; 五年影响因子:0.794 )

ISSN: 1684-5315

年卷期: 2009 年 8 卷 24 期

页码:

收录情况: SCI

摘要: Nitrogen is one of the key important nutrients in rice production. High rice grain yield is greatly dependent upon economic nitrogen input and genetic factors. In order to locate quantitative loci for traits associated with nitrogen utilization efficiency in rice, F9 recombinant inbred lines derived from a Korean tongil type Dasanbyeo and a Chinese japonica variety TR22183 was genetically designed. The six traits of interest were observed on 155 RILs, along with 105 SSR and 103 STS markers. Bayesian model selection technique was used to dissect genetic architecture for traits of interest. A total of 28 main-effect QTLs and 23 pairs of epistatic QTLs were detected for traits associated with nitrogen utilization efficiency. The proportions of phenotypic variation explained by the detected QTLs ranged from 0.09 to 16.90% and from 0.19 to 12.76% for main-effect and epistatic QTLs, respectively. Sixteen of main-effect QTLs interacted with nitrogen level. One pleiotropic QTL was found, governing simultaneously nitrogen dry matter production efficiency and Nitrogen grain production efficiency.

  • 相关文献

[1]Genetic Analysis and QTL Detection on Fiber Traits Using Two Recombinant Inbred Lines and Their Backcross Populations in Upland Cotton. Lianguang Shang,Yumei Wang,Xiaocui Wang,Fang Liu,Abdugheni Abduweli,Shihu Cai,Yuhua Li,Lingling Ma,Kunbo Wang,Jinping Hua. 2016

[2]Main Effect QTL with Dominance Determines Heterosis for Dynamic Plant Height in Upland Cotton. Lianguang Shang,Lingling Ma,Yumei Wang,Ying Su,Xiaocui Wang,Yuhua Li,Abdugheni Abduweli,Shihu Cai,Fang Liu,Kunbo Wang,Jinping Hua. 2016

[3]茄子分子遗传图谱的构建及果实性状的QTL定位. 谢立峰,李烨,李景富,李宁. 2016

[4]水稻柱头外露率研究进展. 杜雪树,戚华雄. 2015

[5]作物数量性状基因(QTL)克隆研究进展. 周雷,胡广隆,李自超,游艾青. 2011

[6]水稻稻瘟病抗性QTL的定位分析. 杨小林,戚华雄,殷得所,曾凡松,张舒,喻大昭. 2012

[7]水稻垩白性状的遗传研究进展及遗传改良策略. 杜雪树,戚华雄. 2016

[8]5′肌醇磷酸酶影响骨骼肌纤维发育的研究进展. 熊琪,李晓锋,索效军,张年,陶虎,刘洋,陈明新. 2015

[9]水稻颖花退化的遗传研究进展. 戚华雄,杜雪树,李进波. 2014

[10]基于萝卜高密度遗传图谱的抽薹和开花性状的QTL定位. 甘彩霞,崔磊,庞文星,汪爱华,於校青,邓晓辉,宋莉萍,朴钟云. 2021

[11]Influences of long-term different types of fertilization on weed community biodiversity in rice paddy fields. Wan, Kaiyuan,Tao, Yong,Pan, Junfeng,Tang, Leilei,Chen, Fang,Li, Ruhai,Tang, Leilei.

[12]A novel bioassay method: Determining bioactivity of compounds against rice blast (Magnaporthe grisea) with barley plants. Yang, X. J.,Ma, X. X.,Yang, L. J.,Yu, D. Z.,Ni, H..

[13]Effects of heavy metals on soil microbial community structure and diversity in the rice (Oryza sativa L. subsp Japonica, Food Crops Institute of Jiangsu Academy of Agricultural Sciences) rhizosphere. Ding, Zili,Cao, Cougui,Ding, Zili,You, Aiqing,Wu, Jinping,Huang, Bangquan.

[14]Transmission of important chromosomal regions under selection revealed in rice pedigree breeding programs. Zhou, Jiangbo,Zhu, Lili,He, Guangcun,Zhang, Yuan-Ming,Lu, Haiyan,You, Aiqing.

[15]Overexpression of OsRRK1 Changes Leaf Morphology and Defense to Insect in Rice. Ma, Yinhua,Zhao, Yan,Shangguan, Xinxin,Shi, Shaojie,Zeng, Ya,Wu, Yan,Chen, Rongzhi,Zhu, Lili,Du, Bo,He, Guangcun,You, Aiqing. 2017

[16]Activation of gibberellin 2-oxidase 6 decreases active gibberellin levels and creates a dominant semi-dwarf phenotype in rice (Oryza sativa L.). Huang, Jian,Tang, Ding,Shen, Yi,Qin, Baoxiang,Hong, Lilan,Li, Ming,Cheng, Zhukuan,Huang, Jian,Tang, Ding,Shen, Yi,Qin, Baoxiang,Hong, Lilan,Li, Ming,Cheng, Zhukuan,Wang, Xin,Yu, Hengxiu,Gu, Minghong,Huang, Jian,You, Aiqing. 2010

[17]Biomass digestibility is predominantly affected by three factors of wall polymer features distinctive in wheat accessions and rice mutants. Wu, Zhiliang,Zhang, Mingliang,Wang, Lingqiang,Tu, Yuanyuan,Zhang, Jing,Xie, Guosheng,Zou, Weihua,Li, Fengcheng,Guo, Kai,Li, Qing,Peng, Liangcai,Wu, Zhiliang,Zhang, Mingliang,Wang, Lingqiang,Tu, Yuanyuan,Zhang, Jing,Xie, Guosheng,Zou, Weihua,Li, Fengcheng,Guo, Kai,Li, Qing,Peng, Liangcai,Wu, Zhiliang,Zhang, Mingliang,Wang, Lingqiang,Tu, Yuanyuan,Zhang, Jing,Xie, Guosheng,Zou, Weihua,Li, Fengcheng,Peng, Liangcai,Guo, Kai,Li, Qing,Gao, Chunbao. 2013

[18]Expression of a novel OSPGYRP (rice proline-, glycine- and tyrosine-rich protein) gene, which is involved in vesicle trafficking, enhanced cold tolerance in E-coli. Li, Hui,Yang, Jing,Wang, Yayu,Tu, Sansi,Zhu, Yingguo,Li, Yangsheng,Chen, Zhijun,Feng, Lingling. 2009

[19]Risks of phosphorus runoff losses from five Chinese paddy soils under conventional management practices. Hua, Lingling,Zhai, Limei,Wang, Hongyuan,Liu, Hongbin,Liu, Jian,Xi, Bin,Zhang, Fulin,Chen, Anqiang,Fu, Bin.

作者其他论文 更多>>