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全基因组范围内对[具体物种]中响应[具体因素]的长链非编码RNA的鉴定与表征 。 (你提供的原文信息不完整,我根据格式推测补充了部分内容以便翻译,你可根据实际情况修改完善)

Genome-wide identification and characterization of -responsive lncRNAs in .

作者信息

Das Parinita, Grover Monendra, Mishra Dwijesh Chandra, Guha Majumdar Sayanti, Shree Bharti, Kumar Sundeep, Mir Zahoor Ahmad, Chaturvedi Krishna Kumar, Bhardwaj Subhash Chander, Singh Amit Kumar, Rai Anil

机构信息

ICAR-Indian Agricultural Statistics Research Institute, New Delhi, India.

ICAR-National Bureau of Plant Genetic Resources, New Delhi, India.

出版信息

Front Plant Sci. 2023 Aug 15;14:1120898. doi: 10.3389/fpls.2023.1120898. eCollection 2023.

Abstract

Wheat stripe rust (yellow rust) caused by f. sp. tritici () is a serious biotic stress factor limiting wheat production worldwide. Emerging evidence demonstrates that long non-coding RNAs (lncRNAs) participate in various developmental processes in plants via post-transcription regulation. In this study, RNA sequencing (RNA-seq) was performed on a pair of near-isogenic lines-rust resistance line FLW29 and rust susceptible line PBW343-which differed only in the rust susceptibility trait. A total of 6,807 lncRNA transcripts were identified using bioinformatics analyses, among which 10 lncRNAs were found to be differentially expressed between resistance and susceptible lines. In order to find the target genes of the identified lncRNAs, their interactions with wheat microRNA (miRNAs) were predicted. A total of 199 lncRNAs showed interactions with 65 miRNAs, which further target 757 distinct mRNA transcripts. Moreover, detailed functional annotations of the target genes were used to identify the candidate genes, pathways, domains, families, and transcription factors that may be related to stripe rust resistance response in wheat plants. The NAC domain protein, disease resistance proteins RPP13 and RPM1, At1g58400, monodehydroascorbate reductase, NBS-LRR-like protein, rust resistance kinase Lr10-like, LRR receptor, serine/threonine-protein kinase, and cysteine proteinase are among the identified targets that are crucial for wheat stripe rust resistance. Semiquantitative PCR analysis of some of the differentially expressed lncRNAs revealed variations in expression profiles of two lncRNAs between the -resistant and -susceptible genotypes at least under one condition. Additionally, simple sequence repeats (SSRs) were also identified from wheat lncRNA sequences, which may be very useful for conducting targeted gene mapping studies of stripe rust resistance in wheat. These findings improved our understanding of the molecular mechanism responsible for the stripe rust disease that can be further utilized to develop wheat varieties with durable resistance to this disease.

摘要

由小麦条锈菌(Puccinia striiformis f. sp. tritici)引起的小麦条锈病(黄锈病)是限制全球小麦产量的严重生物胁迫因素。新出现的证据表明,长链非编码RNA(lncRNA)通过转录后调控参与植物的各种发育过程。在本研究中,对一对仅在条锈病易感性性状上存在差异的近等基因系——抗锈病品系FLW29和感锈病品系PBW343进行了RNA测序(RNA-seq)。通过生物信息学分析共鉴定出6807个lncRNA转录本,其中发现10个lncRNA在抗病和感病品系之间差异表达。为了找到已鉴定lncRNA的靶基因,预测了它们与小麦微小RNA(miRNA)的相互作用。共有199个lncRNA与65个miRNA显示出相互作用,这些miRNA进一步靶向757个不同的mRNA转录本。此外,利用靶基因的详细功能注释来鉴定可能与小麦植株条锈病抗性反应相关的候选基因、途径、结构域、家族和转录因子。已鉴定出的靶标中,NAC结构域蛋白、抗病蛋白RPP13和RPM1、At1g58400、单脱氢抗坏血酸还原酶、NBS-LRR样蛋白、类抗锈病激酶Lr10、LRR受体、丝氨酸/苏氨酸蛋白激酶和半胱氨酸蛋白酶对小麦条锈病抗性至关重要。对一些差异表达lncRNA的半定量PCR分析表明,至少在一种条件下,两个lncRNA在抗病和感病基因型之间的表达谱存在差异。此外,还从小麦lncRNA序列中鉴定出简单序列重复(SSR),这对于开展小麦条锈病抗性的靶向基因定位研究可能非常有用。这些发现增进了我们对条锈病致病分子机制的理解,可进一步用于培育对该病具有持久抗性的小麦品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0264/10465180/48c1ebc41196/fpls-14-1120898-g001.jpg

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