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植物中与疾病相关基因的综合分子和生物信息学方法

Integrated Molecular and Bioinformatics Approaches for Disease-Related Genes in Plants.

作者信息

Joshi Alpana, Song Hyung-Geun, Yang Seo-Yeon, Lee Ji-Hoon

机构信息

Department of Bioenvironmental Chemistry, College of Agriculture & Life Sciences, Jeonbuk National University, Jeonju 54896, Republic of Korea.

Department of Agriculture Technology & Agri-Informatics, Shobhit Institute of Engineering & Technology, Meerut 250110, India.

出版信息

Plants (Basel). 2023 Jun 26;12(13):2454. doi: 10.3390/plants12132454.

Abstract

Modern plant pathology relies on bioinformatics approaches to create novel plant disease diagnostic tools. In recent years, a significant amount of biological data has been generated due to rapid developments in genomics and molecular biology techniques. The progress in the sequencing of agriculturally important crops has made it possible to develop a better understanding of plant-pathogen interactions and plant resistance. The availability of host-pathogen genome data offers effective assistance in retrieving, annotating, analyzing, and identifying the functional aspects for characterization at the gene and genome levels. Physical mapping facilitates the identification and isolation of several candidate resistance (R) genes from diverse plant species. A large number of genetic variations, such as disease-causing mutations in the genome, have been identified and characterized using bioinformatics tools, and these desirable mutations were exploited to develop disease resistance. Moreover, crop genome editing tools, namely the CRISPR (clustered regulatory interspaced short palindromic repeats)/Cas9 (CRISPR-associated) system, offer novel and efficient strategies for developing durable resistance. This review paper describes some aspects concerning the databases, tools, and techniques used to characterize resistance (R) genes for plant disease management.

摘要

现代植物病理学依靠生物信息学方法来创建新型植物病害诊断工具。近年来,由于基因组学和分子生物学技术的迅速发展,已产生了大量的生物学数据。农业重要作物测序工作的进展使人们能够更好地理解植物与病原体的相互作用以及植物抗性。宿主 - 病原体基因组数据的可用性为在基因和基因组水平上检索、注释、分析和鉴定用于表征的功能方面提供了有效的帮助。物理图谱有助于从不同植物物种中鉴定和分离多个候选抗性(R)基因。利用生物信息学工具已鉴定并表征了大量的遗传变异,例如基因组中的致病突变,并且利用这些理想的突变来培育抗病性。此外,作物基因组编辑工具,即CRISPR(成簇规律间隔短回文重复序列)/Cas9(CRISPR相关蛋白9)系统,为培育持久抗性提供了新颖且高效的策略。这篇综述文章描述了用于植物病害管理中抗性(R)基因表征的数据库、工具和技术的一些方面。

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