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Zhou, T (Zhou, Tong)[ 1,3 ] ; Du, LL (Du, Linlin)[ 1,3 ] ; Wang, LJ (Wang, Lijiao)[ 1 ] ; Wang, Y (Wang, Ying)[ 1 ] ; Gao, CY (Gao, Cunyi)[ 1 ] ; Lan, Y (Lan, Ying)[ 1,3 ] ; Sun, F (Sun, Feng)[ 1,3 ] ; Fan, YJ (Fan, Yongjian)[ 1 ] ; Wang, GL (Wang, Guoliang)[ 2 ] ; Zhou, YJ (Zhou, Yijun)[ 1,3 ] ...

文章来源:管理员      作者:Admin   点击数: 次      发布时间:2015-08-17

SCIENTIFIC REPORTS: 5文献号: 10509 DOI: 10.1038/srep10509

出版年: JUL 22 2015

摘要

Rice black-streaked dwarf disease, caused by rice black-streaked dwarf virus (RBSDV), is transmitted by small brown planthoppers (Laodelphax striatellus Fallen, SBPH) and causes severe yield loss in epidemic years in China and other East Asian countries. Breeding for resistance to RBSDV is a promising strategy to control the disease. We identified Tetep that showed resistance to RBSDV using a field test and artificial inoculation test. An evaluation of the resistance mechanism revealed that Tetep was resistant to RBSDV but not to SBPH. Genetic analysis showed that the resistance of Tetep to RBSDV was controlled by quantitative trait loci (QTLs). Three new QTLs for RBSDV resistance were identified in this study, i.e., qRBSDV-3, qRBSDV-10 and qRBSDV-11. The LOD scores of qRBSDV-3, qRBSDV-10 and qRBSDV-11 were 4.07, 2.24 and 2.21, accounting for 17.5%, 0.3% and 12.4% of the total phenotypic variation, respectively. All the resistance loci identified in this study were associated with virus resistance genes. The alleles for enhancing resistance on chromosomes 3 and 11 originated from Tetep, whereas the other allele on chromosome 10 originated from a susceptible parent. The identified new resistance QTLs in this study are useful resources for efficiently breeding resistant rice cultivars to RBSDV.

关键词

KeyWords Plus:ORYZA-SATIVA L.STRIPE DISEASEVIRUSLOCALIZATIONCULTIVARS