Ji Hyeonso, Kim Sung-Ryul, Kim Yul-Ho, Suh Jung-Pil, Park Hyang-Mi, Sreenivasulu Nese, Misra Gopal, Kim Suk-Man, Hechanova Sherry Lou, Kim Hakbum, Lee Gang-Seob, Yoon Ung-Han, Kim Tae-Ho, Lim Hyemin, Suh Suk-Chul, Yang Jungil, An Gynheung, Jena Kshirod K
Department of Agricultural Biotechnology, National Institute of Agricultural Sciences, Jeonju, Korea.
Plant Breeding Division, International Rice Research Institute (IRRI), Metro Manila, Philippines.
Sci Rep. 2016 Sep 29;6:34376. doi: 10.1038/srep34376.
Brown planthopper (BPH) is a phloem sap-sucking insect pest of rice which causes severe yield loss. We cloned the BPH18 gene from the BPH-resistant introgression line derived from the wild rice species Oryza australiensis. Map-based cloning and complementation test revealed that the BPH18 encodes CC-NBS-NBS-LRR protein. BPH18 has two NBS domains, unlike the typical NBS-LRR proteins. The BPH18 promoter::GUS transgenic plants exhibited strong GUS expression in the vascular bundles of the leaf sheath, especially in phloem cells where the BPH attacks. The BPH18 proteins were widely localized to the endo-membranes in a cell, including the endoplasmic reticulum, Golgi apparatus, trans-Golgi network, and prevacuolar compartments, suggesting that BPH18 may recognize the BPH invasion at endo-membranes in phloem cells. Whole genome sequencing of the near-isogenic lines (NILs), NIL-BPH18 and NIL-BPH26, revealed that BPH18 located at the same locus of BPH26. However, these two genes have remarkable sequence differences and the independent NILs showed differential BPH resistance with different expression patterns of plant defense-related genes, indicating that BPH18 and BPH26 are functionally different alleles. These findings would facilitate elucidation of the molecular mechanism of BPH resistance and the identified novel alleles to fast track breeding BPH resistant rice cultivars.
褐飞虱是一种吸食水稻韧皮部汁液的害虫,会导致严重的产量损失。我们从源自野生稻种澳洲野生稻的抗褐飞虱渐渗系中克隆了BPH18基因。基于图谱的克隆和互补试验表明,BPH18编码CC-NBS-NBS-LRR蛋白。与典型的NBS-LRR蛋白不同,BPH18有两个NBS结构域。BPH18启动子::GUS转基因植株在叶鞘的维管束中表现出强烈的GUS表达,尤其是在褐飞虱攻击的韧皮部细胞中。BPH18蛋白广泛定位于细胞内的内膜系统,包括内质网、高尔基体、反式高尔基体网络和液泡前体区室,这表明BPH18可能在内膜系统中识别韧皮部细胞中褐飞虱的入侵。近等基因系NIL-BPH18和NIL-BPH26的全基因组测序表明,BPH18位于BPH26的同一基因座上。然而,这两个基因有显著的序列差异,独立的近等基因系表现出不同的褐飞虱抗性以及植物防御相关基因的不同表达模式,表明BPH18和BPH26是功能不同的等位基因。这些发现将有助于阐明抗褐飞虱的分子机制,以及所鉴定的新等位基因,以加速培育抗褐飞虱水稻品种。