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樟树NBS-LRR类抗病基因家族分析与CcRNL基因克隆

郑永杰 伍艳芳 李江 章挺 汪信东

生物技术通报2018,Vol.34Issue(2):142-149,8.
生物技术通报2018,Vol.34Issue(2):142-149,8.DOI:10.13560/j.cnki.biotech.bull.1985.2017-0570

樟树NBS-LRR类抗病基因家族分析与CcRNL基因克隆

Identification of NBS-LRR-like Disease-resistant Genes in Cinnamomum camphora and Clone of Two CcRNL Genes

郑永杰 1伍艳芳 1李江 1章挺 1汪信东1

作者信息

  • 1. 江西省林业科学院 国家林业局樟树工程技术研究中心,南昌 330032
  • 折叠

摘要

Abstract

Cinnamomum camphora is an germplasm resource with excellent resistance against pathogens in nature. Based on transcriptome data of C. camphora leaf tissue,the disease-resistant genes(R)of NBS(nucleotide-binding site)family were identified, and the physic-chemical properties,motifs and phylogenetic relationship of encoded putative proteins were analyzed through bioinformatics analysis. As results showed,28 NBS-like disease-resistant genes with complete encoding frame were identified from leaf transcriptome of C. camphora leaf tissue. The lengths of ORF ranged in 2118-3378 bp,and the estimated isoelectric point of putative proteins were in 5.35-9.03. The 8 motifs were identified in the NBS domain. The 28 R genes were divided into 5 subgroups based on the phylogenetic analysis. Additionally, 2 RNL genes were cloned by PCR and designated as CcRNL1 and CcRNL2. The two genes shared 71% similarity in amino acid sequence,and there was RPW8-like conservative motif in the N-terminal of the polypeptides,indicating that they might have broad-spectrum resistance to powdery mildew as gene RPW8 in Arabidopsis thaliana has. Analyzing the young leaves from powdery mildew-infected C. camphora and normal one,the results revealed that CcRNL1 expressed by the induction of powdery mildew in C. camphora,therefore it was inferred to be involved in the response to stress process of powdery mildew pathogens.

关键词

樟树/NBS类抗病基因/樟树白粉病/诱导表达

Key words

Cinnamomum camphora/NBS-like disease-resistant gene/powdery mildew/expression analysis

引用本文复制引用

郑永杰,伍艳芳,李江,章挺,汪信东..樟树NBS-LRR类抗病基因家族分析与CcRNL基因克隆[J].生物技术通报,2018,34(2):142-149,8.

基金项目

江西省科技计划项目(20143ACF60014),江西省林业科学院博士启动项目 (20143ACF60014)

生物技术通报

OA北大核心CSCDCSTPCD

1002-5464

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