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果实开裂的分子机制:综述

Molecular mechanisms involved in fruit cracking: A review.

作者信息

Santos Marlene, Egea-Cortines Marcos, Gonçalves Berta, Matos Manuela

机构信息

Department of Genetics and Biotechnology (DGB), University of Trás-os-Montes e Alto Douro (UTAD), Vila Real, Portugal.

Centre for the Research and Technology of Agro-Environmental and Biological Sciences (CITAB), University of Trás-os-Montes e Alto Douro, Vila Real, Portugal.

出版信息

Front Plant Sci. 2023 Mar 1;14:1130857. doi: 10.3389/fpls.2023.1130857. eCollection 2023.

Abstract

Several fleshy fruits are highly affected by cracking, a severe physiological disorder that compromises their quality and causes high economical losses to the producers. Cracking can occur due to physiological, genetic or environmental factors and may happen during fruit growth, development and ripening. Moreover, in fleshy fruits, exocarp plays an important role, acting as a mechanical protective barrier, defending against biotic or abiotic factors. Thus, when biochemical properties of the cuticle + epidermis + hypodermis are affected, cracks appear in the fruit skin. The identification of genes involved in development such as cell wall modifications, biosynthesis and transport of cuticular waxes, cuticular membrane deposition and associated transcription factors provides new insights to better understand how fruit cracking is affected by genetic factors. Amongst the major environmental stresses causing cracking are excessive water during fruit development, leading to imbalances in cations such as Ca. This review focus on expression of key genes in these pathways, in their influence in affected fruits and the potential for molecular breeding programs, aiming to develop cultivars more resistant to cracking under adverse environmental conditions.

摘要

几种肉质果实受裂果影响严重,裂果是一种严重的生理病害,会损害果实品质,给生产者造成巨大经济损失。裂果可能由生理、遗传或环境因素引起,在果实生长、发育和成熟过程中均可能发生。此外,在肉质果实中,外果皮起着重要作用,作为机械保护屏障,抵御生物或非生物因素。因此,当角质层+表皮+皮下组织的生化特性受到影响时,果实表皮就会出现裂缝。对参与发育的基因进行鉴定,如细胞壁修饰、角质蜡质的生物合成和运输、角质膜沉积以及相关转录因子,为更好地理解遗传因素如何影响果实裂果提供了新的见解。导致裂果的主要环境胁迫因素包括果实发育期间水分过多,导致钙等阳离子失衡。本综述聚焦于这些途径中关键基因的表达、它们对受影响果实的影响以及分子育种计划的潜力,旨在培育出在不利环境条件下更抗裂果的品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/365c/10016354/1fcfc4e8ba46/fpls-14-1130857-g001.jpg

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