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Identification of Major Locus Bph35 Resistance to Brown Planthopper in Rice
作者姓名:ZHANG Yuexiong  QIN Gang  MA Qianqian  WEI Minyi  YANG Xinghai  MA Zengfeng  LIANG Haifu  LIU Chi  LI Zhenjing  LIU Fang  HUANG Dahui  LI Rongbai
作者单位:College of Agriculture and State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources;Rice Research Institute
基金项目:supported by the National Natural Science Foundation of China(Grant Nos.31860416 and 31460387);the Natural Science Foundation of Guangxi Province of China(Grant Nos.2015GXNS FAA139083,2016GXNSFAA380032 and 2017GXNS FAA198314);the Key Project of Science and Technology of Guangxi Province of China(Grant Nos.Guike AA17204070,AB16380079 and AB16380093)。
摘    要:An introgression line RBPH660,derived from wild rice Oryza rufipogon,showed stable resistance to brown planthopper(BPH).Segregation analysis indicated BPH resistance of RBPH660 was controlled by multiple genes/QTLs.By using the bulked segregant analysis(BSA)-seq method,two genomic regions harboring QTLs resistance to BPH were identified from 1.20 to 16.70 Mb on chromosome 4 and from 10.20 to 12.60 Mb on chromosome 9 in RBPH660,respectively.A major resistance locus,designated as Bph35 accounting for 51.27%of the phenotypic variation with a LOD score of 42.51,was mapped to the candidate region of chromosome 4 between In Del(insertion-deletion)markers PSM16 and R4 M13.For fine mapping of Bph35,one simple sequence repeat and three newly developed In Del markers were used to screen the recombinants.Finally,the Bph35 locus was delimited in the region from 6.28 to 6.93 Mb and there were 18 predicted protein-encoding genes with a total of 114 non-synonymous single nucleotide polymorphism(SNP)variant sites between the resistant and susceptible parents.Out of these genes,Os04 g0193950,encoding a putative NB-ARC(nucleotidebinding adaptor shared by APAF-1,R proteins and CED-4)and LRR(leucine-rich repeat)domain protein with nine non-synonymous SNP substitutions in its coding sequence regions,might be the candidate gene for Bph35.These findings would facilitate the map-based cloning of the Bph35 gene and development of resistant varieties against BPH in rice.

关 键 词:RICE  BROWN  PLANTHOPPER  Bph35  bulked  segregant  analysis(BSA)-seq  method  gene  mapping
收稿时间:20 February 2019

Identification of Major Locus Bph35 Resistance to Brown Planthopper in Rice
ZHANG Yuexiong,QIN Gang,MA Qianqian,WEI Minyi,YANG Xinghai,MA Zengfeng,LIANG Haifu,LIU Chi,LI Zhenjing,LIU Fang,HUANG Dahui,LI Rongbai.Identification of Major Locus Bph35 Resistance to Brown Planthopper in Rice[J].Rice science,2020,27(3):237-245.
Authors:Yuexiong Zhang  Gang Qin  Qianqian Ma  Minyi Wei  Xinghai Yang  Zengfeng Ma  Haifu Liang  Chi Liu  Zhenjing Li  Fang Liu  Dahui Huang  Rongbai Li
Institution:1.College of Agriculture and State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Guangxi University, Nanning 530007, China;2.Rice Research Institute, Guangxi Academy of Agricultural Sciences, Nanning 530007, China
Abstract:An introgression line RBPH660, derived from wild rice Oryza rufipogon, showed stable resistance to brown planthopper(BPH). Segregation analysis indicated BPH resistance of RBPH660 was controlled by multiple genes/QTLs. By using the bulked segregant analysis(BSA)-seq method, two genomic regions harboring QTLs resistance to BPH were identified from 1.20 to 16.70 Mb on chromosome 4 and from 10.20 to 12.60 Mb on chromosome 9 in RBPH660, respectively. A major resistance locus, designated as Bph35 accounting for 51.27% of the phenotypic variation with a LOD score of 42.51, was mapped to the candidate region of chromosome 4 between In Del(insertion-deletion) markers PSM16 and R4 M13. For fine mapping of Bph35, one simple sequence repeat and three newly developed In Del markers were used to screen the recombinants. Finally, the Bph35 locus was delimited in the region from 6.28 to 6.93 Mb and there were 18 predicted protein-encoding genes with a total of 114 non-synonymous single nucleotide polymorphism(SNP) variant sites between the resistant and susceptible parents. Out of these genes, Os04 g0193950, encoding a putative NB-ARC(nucleotidebinding adaptor shared by APAF-1, R proteins and CED-4) and LRR(leucine-rich repeat) domain protein with nine non-synonymous SNP substitutions in its coding sequence regions, might be the candidate gene for Bph35. These findings would facilitate the map-based cloning of the Bph35 gene and development of resistant varieties against BPH in rice.
Keywords:rice  brown planthopper  bulked segregant analysis (BSA)-seq method  gene mapping
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