您好,欢迎访问河南省农业科学院 机构知识库!

A New Race (X12) of Soybean Cyst Nematode in China

文献类型: 外文期刊

作者: Lian, Yun 1 ; Guo, Jianqiu; Li, Haichao 1 ; Wu, Yongkang 1 ; Wei, He 1 ; Wang, Jinshe 1 ; Li, Jinying 2 ; Lu, Weiguo;

作者机构: 1.Henan Acad Agr Sci, Natl Soybean Improvement Ctr, Zhengzhou Subctr,Inst Ind Crops, Key Lab Oil Crops Huang Huai Valleys,Minist Agr, Zhengzhou 450002, Henan, Peoples R China

2.Henan Acad Agr Sci, Natl Soybean Improvement Ctr, Zhengzhou Subctr,Inst Ind Crops, Key Lab Oil Crops Huang Huai Valleys,Minist Agr, Zhengzhou 450002, Hena

关键词: Heterodera glycines;race;soybean;soybean cyst nematode

期刊名称:JOURNAL OF NEMATOLOGY ( 2020影响因子:1.402; 五年影响因子:2.012 )

ISSN: 0022-300X

年卷期: 2017 年 49 卷 3 期

页码:

收录情况: SCI

摘要: The soybean cyst nematode (SCN), Heterodera glycines, is a serious economic threat to soybean-producing regions worldwide. A new SCN population (called race X12) was detected in Shanxi province, China. Race X12 could reproduce on all the indicator lines of both race and Heterodera glycines (HG) type tests. The average number of females on Lee68 (susceptible control) was 171.40 with the lowest Female Index (FI) 61.31 on PI88788 and the highest FI 117.32 on Pickett in the race test. The average number of females on Lee68 was 323.17 with the lowest FI 44.18 on PI88788 and the highest FI 97.83 on PI548316 in the HG type test. ZDD2315 and ZDD24656 are elite resistant germplasms in China. ZDD2315 is highly resistant to race 4, the strongest infection race in the 16 races with FI 1.51 while being highly sensitive to race X12 with FI 64.32. ZDD24656, a variety derived from PI437654 and ZDD2315, is highly resistant to race 1 and race 2. ZDD24656 is highly sensitive to race X12 with FI 99.12. Morphological and molecular studies of J2 and cysts confirmed the population as the SCN H. glycines. This is a new SCN race with stronger virulence than that of race 4 and is a potential threat to soybean production in China.

  • 相关文献

[1]Genome-Wide Association Study of Resistance to Soybean Cyst Nematode (Heterodera glycines) HG Type 2.5.7 in Wild Soybean (Glycine soja). Zhang, Hengyou,Kofsky, Janice,Song, Bao-Hua,Li, Chunying,Davis, Eric L.,Wang, Jinshe,Griffin, Joshua D.. 2016

[2]Identification of QTLs with main, epistatic and QTL by environment interaction effects for seed shape and hundred-seed weight in soybean across multiple years. Liang, Huizhen,Xu, Lanjie,Yu, Yongliang,Yang, Hongqi,Dong, Wei,Zhang, Haiyang.

[3]QTL Mapping of Isoflavone, Oil and Protein Contents in Soybean (Glycine max L. Merr.). Liang Hui-zhen,Yu Yong-liang,Wang Shu-feng,Lian Yun,Wang Ting-feng,Wei Yan-li,Gong Peng-tao,Fang Xuan-jun,Liu Xue-yi,Zhang Meng-chen. 2010

[4]Verification and fine-mapping of QTLs conferring days to flowering in soybean using residual heterozygous lines. Su ChengFu,Lu WeiGuo,Zhao TuanJie,Gai JunYi,Su ChengFu,Lu WeiGuo,Zhao TuanJie,Gai JunYi,Su ChengFu,Lu WeiGuo,Zhao TuanJie,Gai JunYi,Lu WeiGuo. 2010

[5]High-Density Genetic Mapping Identifies New Major Loci for Tolerance to Low-Phosphorus Stress in Soybean. Zhang, Dan,Li, Hongyan,Chu, Shanshan,Lv, Haiyan,Wang, Jinshe,Zhang, Hengyou,Hu, Zhenbin,Yu, Deyue. 2016

[6]Stability of growth periods traits for soybean cultivars across multiple locations. Liu Zhang-xiong,Chang Ru-zhen,Qiu Li-juan,Wang Xiao-bo,Yang Chun-yan,Xu Ran,Zhang Li-feng,Lu Wei-guo,Wang Qian,Wei Su-hong,Yang Chun-ming,Wang Hui-cai,Wang Rui-zhen,Zhou Rong,Chen Huai-zhu. 2016

[7]Mixed inheritance model for resistance to agromyzid beanfly (Melanagromyza sojae Zehntner) in soybean. Wang, JK,Gai, JY. 2001

[8]Seed storage protein components are associated with curled cotyledon phenotype in soybean. Han, Suoyi,Fan, Rui,Zhao, Tuanjie,Yu, Jingjing,Yu, Deyue,Han, Suoyi. 2009

作者其他论文 更多>>