Divya Dhanasekar, Singh Y Tunginba, Nair Suresh, Bentur J S
Indian Institute of Rice Research, Rajendranagar, Hyderabad, 500030, India.
Agri Biotech Foundation, Rajendranagar, Hyderabad, 500030, India.
Funct Integr Genomics. 2016 Mar;16(2):153-69. doi: 10.1007/s10142-016-0474-3. Epub 2016 Jan 22.
The Asian rice gall midge, Orseolia oryzae, is a serious insect pest causing extensive yield loss. Interaction between the gall midge and rice genotypes is known to be on a gene-for-gene basis. Here, we report molecular basis of HR- (hypersensitive reaction-negative) type of resistance in Aganni (an indica rice variety possessing gall midge resistance gene Gm8) through the construction and analysis of a suppressive subtraction hybridization (SSH) cDNA library. In all, 2,800 positive clones were sequenced and analyzed. The high-quality ESTs were assembled into 448 non-redundant gene sequences. Homology search with the NCBI databases, using BlastX and BlastN, revealed that 73% of the clones showed homology to genes with known function and majority of ESTs belonged to the gene ontology category 'biological process'. Validation of 27 putative candidate gall midge resistance genes through real-time PCR, following gall midge infestation, in contrasting parents and their derived pre-NILs (near isogenic lines) revealed induction of specific genes related to defense and metabolism. Interestingly, four genes, belonging to families of leucine-rich repeat (LRR), heat shock protein (HSP), pathogenesis related protein (PR), and NAC domain-containing protein, implicated in conferring HR+ type of resistance, were found to be up-regulated in Aganni. Two of the reactive oxygen intermediates (ROI)-scavenging-enzyme-coding genes Cytosolic Ascorbate Peroxidase1, 2 (OsAPx1 and OsAPx2) were found up-regulated in Aganni in incompatible interaction possibly suppressing HR. We suggest that Aganni has a deviant form of inducible, salicylic acid (SA)-mediated resistance but without HR.
亚洲稻瘿蚊(Orseolia oryzae)是一种严重的害虫,会导致大幅度的产量损失。已知稻瘿蚊与水稻基因型之间的相互作用是基于基因对基因的关系。在此,我们通过构建和分析抑制性消减杂交(SSH)cDNA文库,报告了阿加尼(Aganni,一个拥有稻瘿蚊抗性基因Gm8的籼稻品种)中HR-(过敏反应阴性)型抗性的分子基础。总共对2800个阳性克隆进行了测序和分析。高质量的EST被组装成448个非冗余基因序列。使用BlastX和BlastN在NCBI数据库中进行同源性搜索,结果显示73%的克隆与已知功能的基因具有同源性,并且大多数EST属于基因本体类别“生物过程”。在受稻瘿蚊侵染后,通过实时PCR对27个假定的候选稻瘿蚊抗性基因在对比亲本及其衍生的近等基因系(NILs)中进行验证,结果显示与防御和代谢相关的特定基因被诱导。有趣的是,发现属于富含亮氨酸重复序列(LRR)、热休克蛋白(HSP)、病程相关蛋白(PR)和含NAC结构域蛋白家族的四个基因在阿加尼中上调,这些基因与赋予HR+型抗性有关。发现两个活性氧中间体(ROI)清除酶编码基因胞质抗坏血酸过氧化物酶1、2(OsAPx1和OsAPx2)在阿加尼的不亲和相互作用中上调,可能抑制了过敏反应。我们认为阿加尼具有一种异常形式的诱导型水杨酸(SA)介导的抗性,但没有过敏反应。