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通过携带稻瘟病抗性基因的近等基因系的表达谱分析理解宿主-病原体相互作用

Understanding Host-Pathogen Interactions with Expression Profiling of NILs Carrying Rice-Blast Resistance Gene.

作者信息

Jain Priyanka, Singh Pankaj K, Kapoor Ritu, Khanna Apurva, Solanke Amolkumar U, Krishnan S Gopala, Singh Ashok K, Sharma Vinay, Sharma Tilak R

机构信息

ICAR-National Research Centre on Plant BiotechnologyNew Delhi, India; Department of Bioscience & Biotechnology, Banasthali UniversityTonk, India.

ICAR-National Research Centre on Plant Biotechnology New Delhi, India.

出版信息

Front Plant Sci. 2017 Feb 23;8:93. doi: 10.3389/fpls.2017.00093. eCollection 2017.

Abstract

infection causes rice blast, a destructive disease that is responsible for considerable decrease in rice yield. Development of resistant varieties via introgressing resistance genes with marker-assisted breeding can eliminate pesticide use and minimize crop losses. Here, resistant near-isogenic line (NIL) of Pusa Basmati-1(PB1) carrying broad spectrum rice blast resistance gene was used to investigate -mediated resistance response. Infected and uninfected resistant NIL and susceptible control line were subjected to RNA-Seq. With the exception of one gene (), transcriptional signatures between the two lines were alike, reflecting basal similarities in their profiles. Resistant and susceptible lines possessed 1043 (727 up-regulated and 316 down-regulated) and 568 (341 up-regulated and 227 down-regulated) unique and significant differentially expressed loci (SDEL), respectively. Pathway analysis revealed higher transcriptional activation of kinases, WRKY, MYB, and ERF transcription factors, JA-ET hormones, chitinases, glycosyl hydrolases, lipid biosynthesis, pathogenesis and secondary metabolism related genes in resistant NIL than susceptible line. Singular enrichment analysis demonstrated that blast resistant NIL is significantly enriched with genes for primary and secondary metabolism, response to biotic stimulus and transcriptional regulation. The co-expression network showed proteins of genes in response to biotic stimulus interacted in a manner unique to resistant NIL upon infection. These data suggest that modulates genome-wide transcriptional regulation in resistant NIL but not in susceptible PB1. We successfully used transcriptome profiling to understand the molecular basis of -mediated resistance mechanisms, identified potential candidate genes involved in early pathogen response and revealed the sophisticated transcriptional reprogramming during rice- interactions.

摘要

感染会引发稻瘟病,这是一种破坏性疾病,会导致水稻产量大幅下降。通过标记辅助育种导入抗性基因来培育抗性品种可以消除农药使用并将作物损失降至最低。在此,携带广谱稻瘟病抗性基因的Pusa Basmati-1(PB1)抗性近等基因系(NIL)被用于研究介导的抗性反应。对抗性NIL和感病对照系进行了感染和未感染处理,并进行RNA测序。除了一个基因外,两个品系之间的转录特征相似,反映了它们在基因图谱上的基本相似性。抗性和感病品系分别拥有1043个(727个上调和316个下调)和568个(341个上调和227个下调)独特且显著差异表达的位点(SDEL)。通路分析显示,与感病品系相比,抗性NIL中激酶、WRKY、MYB和ERF转录因子、茉莉酸-乙烯激素、几丁质酶、糖基水解酶、脂质生物合成、病程和次生代谢相关基因的转录激活水平更高。单样本富集分析表明,抗稻瘟病NIL在初级和次级代谢、对生物刺激的反应和转录调控相关基因方面显著富集。共表达网络显示,在感染后,响应生物刺激的基因蛋白以抗性NIL特有的方式相互作用。这些数据表明,在抗性NIL中调节全基因组转录调控,但在感病的PB1中则不然。我们成功地利用转录组分析来理解介导的抗性机制的分子基础,鉴定了参与早期病原体反应的潜在候选基因,并揭示了水稻相互作用过程中复杂的转录重编程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58e4/5322464/b6627f9e0bf8/fpls-08-00093-g0001.jpg

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