膜蛋白在调节园艺作物果实成熟和应激反应中的功能。

IF 10.6 Q1 HORTICULTURE
Daoguo Chen, Yuhan Liu, Yong Chen, Boqiang Li, Tong Chen, Shiping Tian
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引用次数: 0

摘要

果实成熟伴随着果实品质特征的发展,但这一过程也增加了果实对各种环境胁迫的易感性,包括病原体侵袭和其他胁迫因素。因此,调节果实成熟过程和防御反应对于保持果实品质和延长货架期至关重要。膜蛋白在介导信号转导、离子转运和许多其他重要的生物过程中发挥着复杂的作用,因此引起了广泛的研究兴趣。本综述主要关注膜蛋白在调控果实成熟以及对生物和非生物因素的防御反应中的功能,探讨膜蛋白作为改善果实品质和抵抗环境挑战的靶标的潜力,并进一步强调一些有待解决的开放性问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functions of membrane proteins in regulating fruit ripening and stress responses of horticultural crops.

Fruit ripening is accompanied by the development of fruit quality traits; however, this process also increases the fruit's susceptibility to various environmental stresses, including pathogen attacks and other stress factors. Therefore, modulating the fruit ripening process and defense responses is crucial for maintaining fruit quality and extending shelf life. Membrane proteins play intricate roles in mediating signal transduction, ion transport, and many other important biological processes, thus attracting extensive research interest. This review mainly focuses on the functions of membrane proteins in regulating fruit ripening and defense responses against biotic and abiotic factors, addresses their potential as targets for improving fruit quality and resistance to environmental challenges, and further highlights some open questions to be addressed.

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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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