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野生草莓中TIR和非TIR-NBS-LRR抗病基因的进化分析

Evolutionary analysis of TIR- and non-TIR-NBS-LRR disease resistance genes in wild strawberries.

作者信息

Zhu Ni, Feng Yuxi, Shi Guangxin, Zhang Qihang, Yuan Bo, Qiao Qin

机构信息

School of Agriculture, Yunnan University, Kunming, China.

College of Horticulture and Landscape, Yunnan Agricultural University, Kunming, China.

出版信息

Front Plant Sci. 2024 Nov 21;15:1452251. doi: 10.3389/fpls.2024.1452251. eCollection 2024.

Abstract

INTRODUCTION

NBS-LRR genes (NLRs) are the most extensive category of plant resistance genes (R genes) and play a crucial role in pathogen defense. Understanding the diversity and evolutionary dynamics of NLRs in different plant species is essential for improving disease resistance. This study investigates the NLR gene family in eight diploid wild strawberry species to explore their structural characteristics, evolutionary relationships, and potential for enhancing disease resistance.

METHODS

We conducted a comprehensive genome-wide identification and structural analysis of NLRs across eight diploid wild strawberry species. Phylogenetic analysis was performed to examine the relationships between TIR-NLRs (TNLs), Non-TIR-NLRs (non-TNLs), CC-NLRs (CNLs), and RPW8-NLRs (RNLs). Gene structures were compared, and gene expression was profiled across different NLR subfamilies. Additionally, in vitro leaf inoculation assays with were performed to assess the resistance of various strawberry species.

RESULTS

Our analysis revealed that non-TNLs constitute over 50% of the NLR gene family in all eight strawberry species, surpassing the proportion of TNLs. Phylogenetic analysis showed that TNLs diverged into two subclades: one grouping with CNLs and the other closely related to RNLs. A significantly higher number of non-TNLs were under positive selection compared to TNLs, indicating their rapid diversification. Gene structure analysis demonstrated that non-TNLs have shorter gene structures than TNLs and exhibit higher expression levels, particularly RNLs. Notably, non-TNLs showed dominant expression under both normal and infected conditions. leaf inoculation assays revealed that and , which have the highest proportion of non-TNLs, exhibited significantly greater resistance to compared to , which has the lowest proportion of non-TNLs.

DISCUSSION

The findings of this study provide important insights into the evolutionary dynamics of NLRs in strawberries, particularly the significant role of non-TNLs in pathogen defense. The rapid diversification and higher expression levels of non-TNLs suggest their potential contribution to enhanced disease resistance. This research highlights the value of non-TNLs in strawberry breeding programs aimed at improving resistance to pathogens such as .

摘要

引言

NBS-LRR基因(NLRs)是植物抗性基因(R基因)中最为广泛的一类,在抵御病原体方面发挥着关键作用。了解不同植物物种中NLRs的多样性和进化动态对于提高抗病性至关重要。本研究调查了8种二倍体野生草莓物种中的NLR基因家族,以探索其结构特征、进化关系以及增强抗病性的潜力。

方法

我们对8种二倍体野生草莓物种的NLRs进行了全基因组范围的综合鉴定和结构分析。进行系统发育分析以研究TIR-NLRs(TNLs)、非TIR-NLRs(非TNLs)、CC-NLRs(CNLs)和RPW8-NLRs(RNLs)之间的关系。比较了基因结构,并分析了不同NLR亚家族的基因表达情况。此外,进行了体外叶片接种试验以评估各种草莓物种的抗性。

结果

我们的分析表明,在所有8种草莓物种中,非TNLs占NLR基因家族的比例超过50%,超过了TNLs的比例。系统发育分析表明,TNLs分为两个亚分支:一个与CNLs聚类,另一个与RNLs密切相关。与TNLs相比,处于正选择下的非TNLs数量显著更多,表明它们快速分化。基因结构分析表明,非TNLs的基因结构比TNLs短,且表达水平更高,尤其是RNLs。值得注意的是,非TNLs在正常和感染条件下均表现出优势表达。叶片接种试验表明,非TNLs比例最高的[物种名称1]和[物种名称2]对[病原体名称]的抗性明显高于非TNLs比例最低的[物种名称3]。

讨论

本研究结果为草莓中NLRs的进化动态提供了重要见解,特别是非TNLs在病原体防御中的重要作用。非TNLs的快速分化和更高的表达水平表明它们对增强抗病性的潜在贡献。这项研究突出了非TNLs在旨在提高对[病原体名称]等病原体抗性的草莓育种计划中的价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e50b/11617207/00efb3cdc2a9/fpls-15-1452251-g001.jpg

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