Xiang Liuxin, Cai Chaowei, Cheng Jieru, Wang Lu, Wu Chaofeng, Shi Yuzhen, Luo Jingzhi, He Lin, Deng Yushan, Zhang Xiao, Yuan Youlu, Cai Yingfan
State Key Laboratory of Cotton Biology, Henan Key Laboratory of Plant Stress Biology, School of Life Sciences, School of Computer and Information Engineering, Henan University, Kaifeng, Henan, China.
School of Bioinformatics, School of Software Engineering, Chongqing University of Posts and Telecommunications, Chongqing, China.
PeerJ. 2018 Mar 16;6:e4500. doi: 10.7717/peerj.4500. eCollection 2018.
Circular RNAs (circRNAs), a class of recently discovered non-coding RNAs, play a role in biological and developmental processes. A recent study showed that circRNAs exist in plants and play a role in their environmental stress responses. However, cotton circRNAs and their role in Verticillium wilt response have not been identified up to now. In this study, two CSSLs (chromosome segment substitution lines) of introgressed into , CSSL-1 and CSSL-4 (a resistant line and a susceptible line to Verticillium wilt, respectively), were inoculated with for RNA-seq library construction and circRNA analysis. A total of 686 novel circRNAs were identified. CSSL-1 and CSSL-4 had similar numbers of circRNAs and shared many circRNAs in common. However, CSSL-4 differentially expressed approximately twice as many circRNAs as CSSL-1, and the differential expression levels of the common circRNAs were generally higher in CSSL-1 than in CSSL-4. Moreover, two C-RRI comparisons, C-RRI-vs-C-RRM and C-RRI-vs-C-RSI, possessed a large proportion (approximately 50%) of the commonly and differentially expressed circRNAs. These results indicate that the differentially expressed circRNAs may play roles in the Verticillium wilt response in cotton. A total of 280 differentially expressed circRNAs were identified. A Gene Ontology analysis showed that most of the 'stimulus response' term source genes were NBS family genes, of which most were the source genes from the differentially expressed circRNAs, indicating that NBS genes may play a role in Verticillium wilt resistance and might be regulated by circRNAs in the disease-resistance process in cotton.
环状RNA(circRNAs)是一类最近发现的非编码RNA,在生物和发育过程中发挥作用。最近的一项研究表明,circRNAs存在于植物中,并在其环境应激反应中发挥作用。然而,棉花circRNAs及其在黄萎病反应中的作用至今尚未明确。在本研究中,将两个渗入到陆地棉中的染色体片段代换系(CSSLs),即CSSL-1和CSSL-4(分别是对黄萎病的抗性系和感病系)接种黄萎病菌以构建RNA测序文库并进行circRNA分析。共鉴定出686个新的circRNAs。CSSL-1和CSSL-4的circRNAs数量相似,且有许多共同的circRNAs。然而,CSSL-4中差异表达的circRNAs数量约为CSSL-1的两倍,且共同circRNAs的差异表达水平在CSSL-1中通常高于CSSL-4。此外,两个C-RRI比较,即C-RRI-vs-C-RRM和C-RRI-vs-C-RSI,拥有大部分(约50%)共同和差异表达的circRNAs。这些结果表明,差异表达的circRNAs可能在棉花黄萎病反应中发挥作用。共鉴定出280个差异表达的circRNAs。基因本体分析表明,大多数“刺激反应”术语源基因是NBS家族基因,其中大多数是差异表达circRNAs的源基因,这表明NBS基因可能在棉花抗黄萎病中发挥作用,并且可能在棉花抗病过程中受circRNAs调控。