利用基于聚合酶链反应的基序导向RNA指纹图谱揭示农藓属植物组成性表达的抗性基因。

Hikmet Budak, Senem Su, Neslihan Ergen
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引用次数: 21

摘要

禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科禾本科。它们的完整性是由杀菌剂保持的,这使得抗病品种的发展成为当务之急。然而,人们对抗性基因及其在农藓属植物遗传改良中的应用缺乏了解。本研究的目的是利用基于pcr的基序定向RNA指纹图谱技术,对相对保守的核苷酸结合位点(NBS)结构域,从3种草属植物(殖弯草(a.capillaris L.)、匍匐弯草(a.stolonifera L.)和绒弯草(a.canina L.)中编码R基因样(RGL)序列的组成性表达cdna进行鉴定和克隆。共鉴定了61个组成型表达的cDNA序列。ESTs序列分析和可能的翻译产物分析表明,RGLs在这三个种间具有高度的保守性。其中15个基因与其他植物抗病基因(如MLA13、Xa1、YR6、YR23和RPP5)中发现的保守基序相同。利用Ka/Ks比值分析的分子进化力反映了在这些物种中发现的RGL序列的NBS和富含亮氨酸重复(LRR)中间区域的纯化选择。本研究首次从Agrostis植物中分离并鉴定了组成性表达的RGL序列,揭示了单子叶植物中存在TNL (TIR-NBS-LRR)型R基因。这些特征化的RGLs将进一步增强对禾草R基因家族分子进化的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Revealing constitutively expressed resistance genes in Agrostis species using PCR-based motif-directed RNA fingerprinting.

Agrostis species are mainly used in athletic fields and golf courses. Their integrity is maintained by fungicides, which makes the development of disease-resistance varieties a high priority. However, there is a lack of knowledge about resistance (R) genes and their use for genetic improvement in Agrostis species. The objective of this study was to identify and clone constitutively expressed cDNAs encoding R gene-like (RGL) sequences from three Agrostis species (colonial bentgrass (A. capillaris L.), creeping bentgrass (A. stolonifera L.) and velvet bentgrass (A. canina L.)) by PCR-based motif-directed RNA fingerprinting towards relatively conserved nucleotide binding site (NBS) domains. Sixty-one constitutively expressed cDNA sequences were identified and characterized. Sequence analysis of ESTs and probable translation products revealed that RGLs are highly conserved among these three Agrostis species. Fifteen of them were shown to share conserved motifs found in other plant disease resistance genes such as MLA13, Xa1, YR6, YR23 and RPP5. The molecular evolutionary forces, analysed using the Ka/Ks ratio, reflected purifying selection both on NBS and leucine-rich repeat (LRR) intervening regions of discovered RGL sequences in these species. This study presents, for the first time, isolation and characterization of constitutively expressed RGL sequences from Agrostis species revealing the presence of TNL (TIR-NBS-LRR) type R genes in monocot plants. The characterized RGLs will further enhance knowledge on the molecular evolution of the R gene family in grasses.

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