Welcome to Acta Agronomica Sinica,

Acta Agron Sin ›› 2007, Vol. 33 ›› Issue (10): 1601-1605.

• ORIGINAL PAPERS • Previous Articles     Next Articles

Mapping of Genes Resistant to Bruchid in Mungbean Using Recombinant Inbred Lines Population

MEI Li1;WANG Su-Hua1;WANG Li-Xia1;LIU Chang-You1;SUN Lei1;XU Ning1;LIU Chun-Ji2;CHENG Xu-Zhen1,*   

  1. 1 Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China; 2 CSIRO Division of Plant Industry, Indooroopilly, Queensland 4068, Australia
  • Received:2007-01-24 Revised:1900-01-01 Online:2007-10-12 Published:2007-10-12
  • Contact: CHENG Xu-Zhen

Abstract:

Mungbean [Vigna radiate (L.) Wiclzek] is one of the main edible beans in China while bruchid are serious devastating stored pests of grain legumes causing considerable loss to mungbean. The most important of the bruchid beetle in Asian is Callosobruchus chinensis (L). Breeding for bruchid-resistant cultivars is a major goal in mungbean improvement. In this study, we analyzed the QTLs, using a Recombinant-inbred-lines (RIL) population from the cross between a highly susceptible economical parent Berken and a highly resistant wild parent ACC41. The RIL population together with their parents were planted in three sites (Australia, Beijing and Nanjing) and evaluated for their resistance by infesting with C. chinensis in 2005 and 2006 in our laboratory. We set the combination of a plant site and a year as an environment, so there are four environments (Australia 2005, Australia 2006, Beijing 2006, and Nanjing 2006). Chi-square analysis (χ2) of the RIL population showed that except for the accessions planted in Beijing field and tested for resistance in 2006, the accessions in other three environments supported the 1:1 segregation ratio. This clearly indicated there was a major resistant gene in ACC41 suitable for mapping. A genetic linkage map with 79 RFLP markers was constructed. Software WinQTLCart was applied to detect QTLs. As a result, a QTL named brI on group 9 steadily existed in the four environments and LOD was 12.99 to 115.12, explaining 74.05 to 79.27% of the phenotypic variations. It is a major QTL for bruchid resistance. The additive effect of the QTL was negative indicating that the allele of the loci from ACC41 promotes the resistance. It will be beneficial to bruchid-resistant breeding and plays an important role in mapping and cloning of the bruchid-resistant genes.

Key words: Mungbean, Bruchid, Recombinant-inbred-lines (RIL) Population, Quantitative trait loci (QTL)

[1] HU Liang-Liang, WANG Su-Hua, WANG Li-Xia, CHENG Xu-Zhen, CHEN Hong-Lin. Identification of salt tolerance and screening of salt tolerant germplasm of mungbean (Vigna radiate L.) at seedling stage [J]. Acta Agronomica Sinica, 2022, 48(2): 367-379.
[2] ZHANG Yan-Bo, WANG Yuan, FENG Gan-Yu, DUAN Hui-Rong, LIU Hai-Ying. QTLs analysis of oil and three main fatty acid contents in cottonseeds [J]. Acta Agronomica Sinica, 2022, 48(2): 380-395.
[3] WU Ran-Ran, LIN Yun, CHEN Jing-Bin, XUE Chen-Chen, YUAN Xing-Xing, YAN Qiang, GAO Ying, LI Ling-Hui, ZHANG Qin-Xue, CHEN Xin. Genetic and cytological analysis of male sterile mutant msm2015-1 in mungbean [J]. Acta Agronomica Sinica, 2021, 47(5): 860-868.
[4] SUN Zhi-Guang, WANG Bao-Xiang, ZHOU Zhen-Ling, FANG Lei, CHI Ming, LI Jing-Fang, LIU Jin-Bo, Bello Babatunde Kazeem, XU Da-Yong. Screening of germplasm resources and QTL mapping for germinability under submerged condition in rice (Oryza sativa L.) [J]. Acta Agronomica Sinica, 2021, 47(1): 61-70.
[5] Hong-Min WANG,Xiao-Fang CHENG,Yan-Ping FAN,Hai-Xia ZHENG,Yao-Wen ZHANG,Xian-Hong ZHANG. Preliminary Study on Resistance of Different Mungbean Varieties to Callosobruchus chinensis (L.) [J]. Acta Agronomica Sinica, 2018, 44(8): 1136-1141.
[6] Yan-Ping FAN,Xiao-Fang CHENG,Hong-Min WANG,Yao-Wen ZHANG,Xian-Hong ZHANG. Stability of Trypsin Inhibitor in Foun Bruchid-Resistant Mung Bean Varieties [J]. Acta Agronomica Sinica, 2018, 44(6): 867-875.
[7] Chang-You LIU,Qiu-Zhu SU,Bao-Jie FAN,Zhi-Min CAO,Zhi-Xiao ZHANG,Jing WU,Xu-Zhen CHENG,Jing TIAN. Genetic Mapping of Bruchid Resistance Gene in Mungbean V1128 [J]. Acta Agronomica Sinica, 2018, 44(12): 1875-1881.
[8] Hai-Ping GUO, Gao-Yang SUN, Xiao-Xiang ZHANG, Peng-Shuai YAN, Kun LIU, Hui-Ling XIE, Ji-Hua TANG, Dong DING, Wei-Hua LI. QTL Analysis of Under-ear Internode Length Based on SSSL Population [J]. Acta Agronomica Sinica, 2018, 44(04): 522-532.
[9] FAN Yan-Ping,ZHANG Yao-Wen,ZHAO Xue-Ying,ZHANG Xian-Hong. Activity and Physico Chemical Properties of Trypsin Inhibitor in Bruchid-Resistant Mung Bean [J]. Acta Agron Sin, 2017, 43(11): 1696-1704.
[10] XU Ning,CHEN Bing-Xu,WANG Ming-Hai,BAO Shu-Ying,WANG Gui-Fang,GUO Zhong-Xiao. Identification of Alkali Tolerance of Mungbean Germplasm Resources during Germination [J]. Acta Agron Sin, 2017, 43(01): 112-121.
[11] WANG Lan-Fen, WU Jing, JING Rui-Lian, CHENG Xu-Zhen, WANG Shu-Min. Identification of Mungbean Germplasm Resources Resistant to Drought at Adult Stage [J]. Acta Agron Sin, 2015, 41(08): 1287-1294.
[12] WANG Lan-Fen,WU Jing,JING Rui-Lian,CHENG Xu-Zhen,WANG Shu-Min?. Drought Resistance Identification of Mungbean Germplasm Resources at Seedlings Stage [J]. Acta Agron Sin, 2015, 41(01): 145-153.
[13] WANG Li-Xia,CHENG Xu-Zhen,WANG Su-Hua,LIU Yan. Inheritance of Several Traits in Mungbean (Vigna radiata) [J]. Acta Agron Sin, 2013, 39(07): 1172-1178.
[14] LIU Chang-You,FAN Bao-Jie,CAO Zhi-Min,WANG Yan,ZHANG Zhi-Xiao,SU Qiu-Zhu,WANG Su-Hua,TIAN Jing. Inheritance and Correlation Analysis of Main Agronomic Traits in Mungbean (Vigna radiata L.) by Using Mixed Linear Models [J]. Acta Agron Sin, 2012, 38(04): 624-631.
[15] DIAO Dan, CHENG Xu-Zhen, WANG Li-Xia, WANG Su-Hua, MA Yan-Ling. Integration of Mungbean(Vigna radiata) Genetic Linkage Map [J]. Acta Agron Sin, 2010, 36(06): 932-939.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!