Wang Qi, Liu Yuqiang, Hu Jinlong, Zhang Yingxin, Xie Kun, Wang Baoxiang, Tuyen Le Quang, Song Zhaoqiang, Wu Han, Liu Yanling, Jiang Ling, Liu Shijia, Cheng Xianian, Wang Chunming, Zhai Huqu, Wan Jianmin
State Key Laboratory for Crop Genetics and Germplasm Enhancement, Jiangsu Provincial Center of Plant Gene Engineering, Nanjing Agricultural University, Weigang 1, Nanjing 210095, China.
Int J Mol Sci. 2013 Apr 16;14(4):8406-21. doi: 10.3390/ijms14048406.
Small brown planthopper (SBPH) and rice stripe virus (RSV) disease transmitted by SBPH cause serious damage to rice (Oryza sativa L.) in China. In the present study, we screened 312 rice accessions for resistance to SBPH. The indica variety, N22, is highly resistant to SBPH. One hundred and eighty two recombinant inbred lines (RILs) derived from a cross of N22 and the highly susceptible variety, USSR5, were used for quantitative trait locus (QTL) analysis of resistances to SBPH and RSV. In a modified seedbox screening test, three QTLs for SBPH resistance, qSBPH2, qSBPH3 and qSBPH7.1, were mapped on chromosomes 2, 3 and 7, a total explaining 35.1% of the phenotypic variance. qSBPH7.2 and qSBPH11.2, conferring antibiosis against SBPH, were detected on chromosomes 7 and 11 and accounted for 20.7% of the total phenotypic variance. In addition, qSBPH5 and qSBPH7.3, expressing antixenosis to SBPH, were detected on chromosomes 5 and 7, explaining 23.9% of the phenotypic variance. qSBPH7.1, qSBPH7.2 and qSBPH7.3, located in the same region between RM234 and RM429 on chromosome 7, using three different phenotyping methods indicate that the locus or region plays a major role in conferring resistance to SBPH in N22. Moreover, three QTLs, qSTV4, qSTV11.1 and qSTV11.2, for RSV resistance were detected on chromosomes 4 and 11. qSTV11.1 and qSTV11.2 are located in the same region between RM287 and RM209 on chromosome 11. Molecular markers spanning these QTLs should be useful in the development of varieties with resistance to SBPH and RSV.
褐飞虱(SBPH)以及由其传播的水稻条纹病毒(RSV)病害对中国的水稻(Oryza sativa L.)造成严重损害。在本研究中,我们筛选了312份水稻种质对褐飞虱的抗性。籼稻品种N22对褐飞虱具有高抗性。以N22与高感品种USSR5杂交衍生的182个重组自交系(RIL)用于对褐飞虱和水稻条纹病毒抗性的数量性状位点(QTL)分析。在改良的秧田筛选试验中,检测到3个抗褐飞虱QTL,qSBPH2、qSBPH3和qSBPH7.1,分别位于第2、3和7染色体上,共解释表型变异的35.1%。在第7和11染色体上检测到具有抗生性的qSBPH7.2和qSBPH11.2,占总表型变异的20.7%。此外,在第5和7染色体上检测到对褐飞虱表现为排趋性的qSBPH5和qSBPH7.3,解释表型变异的23.9%。利用三种不同的表型分析方法,位于第7染色体上RM234和RM429之间同一区域的qSBPH7.1、qSBPH7.2和qSBPH7.3表明该位点或区域在N22对褐飞虱的抗性中起主要作用。此外,在第4和11染色体上检测到3个抗水稻条纹病毒QTL,qSTV4、qSTV11.1和qSTV11.2。qSTV11.1和qSTV11.2位于第11染色体上RM287和RM209之间的同一区域。跨越这些QTL的分子标记对于培育抗褐飞虱和水稻条纹病毒的品种应是有用的。