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Mapping and validation of a dominant salt tolerance gene in the cultivated soybean(Glycine max) variety Tiefeng 8

查看全文 作  者:Rongxia [1]Guan;Jiangang [1]Chen;Jinghan [1]Jiang;Guangyu [1]Liu;Ying [1]Liu;Lei [1]Tian;Lili [1]Yu;Ruzhen [1]Chang;Li-juan [1]Qiu 高影响力作者 机构地区:[1]The National Key Facility for Crop Gene Resources and Genetic Improvement (NFCRI), Key Laboratory of Germplasm & Biotechnology (MOA),Institute of Crop Sciences, Chinese Academy of Agricultural Sciences高影响力机构 出  处:《The Crop Journal》索引2014年第2卷第6期,共8页高影响力期刊 基  金:financially supported by the National Natural Science Foundation of China (30971801, 31271752, 30490250-1);the National Key Technologies R&D Program in the 12th Five-Year Plan (2012AA101106);the National Foundation for Transgenic Species (2009ZX08009-088B);the Agricultural Science and Technology Innovation Program 摘  要:Salt is an abiotic stress factor that strongly affects soybean growth and production. A single dominant gene has been shown to confer salt tolerance in the soybean cultivar Tiefeng 8.The objective of the present study was to genetically map the salt-tolerance gene in an F2:3population and a recombinant inbred line(RIL) population derived from a cross between two cultivated soybeans, Tiefeng 8(tolerant) and 85-140(sensitive). The F2:3families and RILs were treated with 200 mmol L-1Na Cl to evaluate salt tolerance. The F2:3population showed 1(42 tolerant): 2(132 segregating): 1(65 sensitive) segregation, indicating a single dominant gene for salt tolerance in Tiefeng 8. A sequence-characterized amplified region(SCAR) marker from a previously identified random amplified polymorphic DNA(RAPD)marker and four insertion/deletion polymorphism(In Del) markers were developed within the mapping region. Using these markers along with SSR markers, the salt-tolerance gene was mapped within 209 kb flanked by SCAR marker QS08064 and SSR marker Barcsoyssr_3_1301 on chromosome 3. Three markers that cosegregated with the salt tolerance gene and SCAR marker QS08064 were used to genotype 35 tolerant and 23 sensitive soybean accessions. These markers showed selection efficiencies of 76.2% to94.2%. The results indicate that these markers will be useful for marker-assisted breeding and facilitating map-based cloning of the salt tolerance gene in soybean. 关 键 词:Salt tolerance GENE MAPPING Soybean GLYCINE max
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