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园艺作物面临压力:解析气候变化对营养和果实开裂的影响。

Horticulture crop under pressure: Unraveling the impact of climate change on nutrition and fruit cracking.

机构信息

Department of Plant Science, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, PR China.

Department of Plant Science, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, PR China.

出版信息

J Environ Manage. 2024 Apr;357:120759. doi: 10.1016/j.jenvman.2024.120759. Epub 2024 Mar 29.

Abstract

Climate change is increasingly affecting the nutritional content and structural integrity of horticultural crops, leading to challenges such as diminished fruit quality and the exacerbation of fruit cracking. This manuscript systematically explores the multifaceted impacts of these changes, with a particular focus on the nutritional quality and increased incidence of fruit cracking. An exhaustive review of current research identifies the critical role of transcription factors in mediating plant responses to climatic stressors, such as drought, temperature extremes, and saline conditions. The significance of transcription factors, including bHLH, bZIP, DOF, MDP, HD-ZIP, MYB, and ERF4, is highlighted in the development of fruit cracking, underscoring the genetic underpinnings behind stress-related phenotypic outcomes. The effectiveness of greenhouse structures in mitigating adverse climatic effects is evaluated, offering a strategic approach to sustain crop productivity amidst CO fluctuations and water scarcity, which are shown to influence plant physiology and lead to changes in fruit development, nutrient dynamics, and a heightened risk of cracking. Moreover, the manuscript delves into advanced breeding strategies and genetic engineering techniques, such as genome editing, to enhance crop resilience against climatic challenges. It also discusses adaptation strategies vital for sustainable horticulture, emphasizing the need to integrate novel genetic insights with controlled environment horticulture to counteract climate change's detrimental effects. The synthesis presented here underscores the urgent need for innovative breeding strategies aimed at developing resilient crop varieties that can withstand climatic uncertainty while preserving nutritional integrity.

摘要

气候变化正日益影响园艺作物的营养含量和结构完整性,导致水果品质下降和果实裂果加剧等问题。本文系统探讨了这些变化的多方面影响,特别关注营养质量和果实裂果发生率的增加。对现有研究的全面回顾确定了转录因子在介导植物对干旱、极端温度和盐渍等气候胁迫的反应中的关键作用。转录因子(如 bHLH、bZIP、DOF、MDP、HD-ZIP、MYB 和 ERF4)在果实裂果发育中的重要性被强调,突出了与应激相关表型结果相关的遗传基础。评估了温室结构在减轻不利气候影响方面的有效性,为在 CO 波动和水资源短缺的情况下维持作物生产力提供了一种战略方法,这些因素会影响植物生理学并导致果实发育、养分动态的变化以及裂果风险的增加。此外,本文还探讨了先进的育种策略和遗传工程技术,如基因组编辑,以增强作物对气候挑战的抗性。它还讨论了可持续园艺所必需的适应策略,强调需要将新的遗传见解与受控环境园艺相结合,以抵消气候变化的不利影响。本文的综合分析强调了迫切需要创新的育种策略,旨在开发能够抵御气候不确定性同时保持营养完整性的抗逆作物品种。

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