气候变化对蔬菜生产的影响及克服方法

A. F. Bukharov, A. Fedosov, M. Ivanova
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引用次数: 0

摘要

随着粮食系统从食物数量转向饮食质量和健康效益,蔬菜在粮食安全和营养方面发挥着关键作用。大多数蔬菜作物产量低和平均产量下降的主要原因之一是气候变化。维持和提高蔬菜作物产量的重要限制因素是气温上升、灌溉用水减少、洪水和盐碱化。在不断变化的气候条件下,作物歉收、质量下降和病虫害问题日益严重,使蔬菜生产无利可图。由于许多生理过程和酶活性都依赖于温度,它们将受到很大的影响。干旱和盐碱化是气温上升导致蔬菜作物减产的两个重要影响。气候变化的这些影响还影响病虫害的出现、宿主-病原体的相互作用、昆虫的分布和生态、出现的时间、向新地点的迁移以及它们越冬的能力,所有这些都成为蔬菜生产的主要障碍。为了减轻气候变化对蔬菜作物生产力和质量的不利影响,需要制定合理的适应战略。重点应放在发展提高用水效率和适应炎热和干燥条件的生产系统。技术措施,如用作物残茬和塑料材料覆盖,有助于保持土壤水分。由于暴雨导致的土壤水分过多成为一个严重的问题,可以通过在凸起的床上种植作物来解决。解决这些问题的有效途径是利用传统和非传统育种方法、基因组学、生物技术等,培育耐高温、耐湿、耐盐、耐气候条件的基因型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of climate change on vegetable production and ways to overcome them
Vegetables play a key role in food security and nutrition as the food system shifts from food quantity to dietary quality and health benefits. One of the main reasons for the low production and declining average yields of most vegetable crops is climate change. Important limiting factors in maintaining and increasing vegetable crop yields are rising temperatures, reduced water availability for irrigation, flooding and salinity. Under changing climatic conditions, crop failures, declining quality and increasing pest and disease problems are becoming commonplace and making vegetable production unprofitable. Since many physiological processes and enzyme activity are temperature dependent, they will be greatly affected. Drought and salinity are two important effects of rising temperatures that reduce vegetable crop yields. These impacts of climate change also affect the emergence of pests and diseases, host-pathogen interactions, distribution and ecology of insects, timing of emergence, migration to new locations, and their ability to overwinter, all of which become a major barrier to vegetable production. To mitigate the adverse effects of climate change on the productivity and quality of vegetable crops, sound adaptation strategies need to be developed. Emphasis should be placed on the development of production systems that improve water efficiency and are adapted to hot and dry conditions. Technological practices, such as mulching with crop residues and plastic materials, help maintain soil moisture. Excessive soil moisture due to heavy rains becomes a serious problem that can be solved by growing crops in raised beds. An effective way to solve these problems is to create genotypes that are resistant to high temperatures, moisture, salinity and resistance to climatic conditions, using traditional and non-traditional breeding methods, genomics, biotechnology, etc.
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