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Genetic analysis and mapping of genes for resistance to multiple strains of Soybean mosaic virus in a single resistant soybean accession PI 96983.

Theor. Appl. Genet.. 2013-07; 
YangYongqing, ZhengGuijie, HanLu, DagangWang, YangXiaofeng, YuanYuan, HuangSaihua, ZhiHai
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Gene Synthesis … Each PCR reaction mixture of a volume of 25 μL consisted of 2.5 of 15 μL of sterile water, 10x Taq buffer (GenScript, Piscataway, NJ), 4 μL of 2.5 mM dNTPs, 1.0 μL of 20 µM primers, 0.1 μL 5U/μL Green Taq DNA polymerase (GenScript), and 2.5 μL of cDNA template … Get A Quote

摘要

Soybean mosaic virus (SMV) is one of the most broadly distributed soybean (Glycine max (L.) Merr.) diseases and causes severe yield loss and seed quality deficiency. Multiple studies have proved that a single dominant gene can confer resistance to several SMV strains. Plant introduction (PI) 96983 has been reported to contain SMV resistance genes (e.g., Rsv1 and Rsc14) on chromosome 13. The objective of this study was to delineate the genetics of resistance to SMV in PI 96983 and determine whether one gene can control resistance to more than one Chinese SMV strain. In this study, PI 96983 was identified as resistant and Nannong 1138-2 was identified as susceptible to four SMV strains SC3, SC6, SC7, an... More

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