Advances in the molecular mechanism of grapevine resistance to fungal diseases.

IF 10.6 Q1 HORTICULTURE
Zhi Li, Ronghui Wu, Fangying Guo, Yuejin Wang, Peter Nick, Xiping Wang
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引用次数: 0

Abstract

Grapevine is an important economic fruit tree worldwide, but grape production has been plagued by a vast number of fungal diseases, which affect tree vigor and the quality and yield of berries. To seek remedies for such issues, researchers have always been committed to conventional and biotechnological breeding. In recent years, increasing progress has been made in elucidating the molecular mechanisms of grape-pathogenic fungi interactions and resistance regulation. Here, we summarize the current knowledge on the molecular basis of grapevine resistance to fungal diseases, including fungal effector-mediated susceptibility and resistance, resistant regulatory networks in grapevine, innovative approaches of genetic transformation, and strategies to improve grape resistance. Understanding the molecular basis is important for exploring and accurately regulating grape resistance to fungal diseases.

葡萄抗真菌病害分子机制研究进展。
葡萄是世界上重要的经济果树,但葡萄生产一直受到大量真菌病害的困扰,这些病害影响着树的活力和果实的质量和产量。为了寻求解决这些问题的方法,研究人员一直致力于传统育种和生物技术育种。近年来,在葡萄与病原菌相互作用及抗性调控的分子机制研究方面取得了越来越多的进展。本文综述了葡萄对真菌病害抗性的分子基础,包括真菌效应介导的敏感性和抗性,葡萄的抗性调控网络,遗传转化的创新方法,以及提高葡萄抗性的策略。了解其分子基础对探索和准确调控葡萄对真菌病害的抗性具有重要意义。
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来源期刊
Molecular Horticulture
Molecular Horticulture horticultural research-
CiteScore
8.00
自引率
0.00%
发文量
24
审稿时长
12 weeks
期刊介绍: Aims Molecular Horticulture aims to publish research and review articles that significantly advance our knowledge in understanding how the horticultural crops or their parts operate mechanistically. Articles should have profound impacts not only in terms of high citation number or the like, but more importantly on the direction of the horticultural research field. Scope Molecular Horticulture publishes original Research Articles, Letters, and Reviews on novel discoveries on the following, but not limited to, aspects of horticultural plants (including medicinal plants): ▪ Developmental and evolutionary biology ▪ Physiology, biochemistry and cell biology ▪ Plant-microbe and plant-environment interactions ▪ Genetics and epigenetics ▪ Molecular breeding and biotechnology ▪ Secondary metabolism and synthetic biology ▪ Multi-omics dealing with data sets of genome, transcriptome, proteome, metabolome, epigenome and/or microbiome. The journal also welcomes research articles using model plants that reveal mechanisms and/or principles readily applicable to horticultural plants, translational research articles involving application of basic knowledge (including those of model plants) to the horticultural crops, novel Methods and Resources of broad interest. In addition, the journal publishes Editorial, News and View, and Commentary and Perspective on current, significant events and topics in global horticultural fields with international interests.
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