Impact of soil temperature on fruit species within climate change scenarios

G. Fischer, H. E. Balaguera-López, J. Cleves-Leguízamo
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引用次数: 9

Abstract

Climate change, with its consequent increase in temperatures and precipitation, has significant impacts on soil surface horizons, affecting the establishment, development, and production of crops and food security and safety. Solar radiation influences the thermals of Earth's surface. Apart from radiation, the effects of soil temperature (STe) are specific to fruit species and are mainly modified by humidity, soil cover and air temperature. Increasing the STe within an optimal range promotes the growth of roots and plants and increases the absorption of water and nutrients, photosynthesis, transpiration, efficient use of water and microbial processes. These effects have been demonstrated in several studies on fruit trees and on grape vines, citrus, cape gooseberries, Annonaceae, avocados, olives and prickly pears. However, apart from these positive results, an increased STe as the result of global warming can generate water stress and in turn affect the yield and quality of fruit trees. In terms of effects from cultural practices, mulching with black or blue plastic can increase the soil temperature, and white or silver plastic decreases it. When compared to air temperature, increases in STe in the plants physiology and climate impact studies have been little studied. Therefore, this review aimed to make significant contributions to facilitate decision-making with the goal of reducing the effects of global warming, especially on fruit trees.
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气候变化情景下土壤温度对果树的影响
气候变化导致气温和降水增加,对土壤表层产生重大影响,影响作物的建立、发展和生产,影响粮食安全和安全。太阳辐射影响地球表面的热量。除辐射外,土壤温度对果实品种的影响是特有的,主要受湿度、土壤覆盖和气温的影响。在最佳范围内增加STe可以促进根系和植物的生长,增加对水分和养分的吸收、光合作用、蒸腾作用、水分的有效利用和微生物过程。这些影响已经在果树、葡萄藤、柑橘、醋栗、番荔枝科、牛油果、橄榄和多刺梨的几项研究中得到证实。然而,除了这些积极的结果之外,全球变暖导致的STe增加会产生水分胁迫,进而影响果树的产量和质量。从文化实践的影响来看,覆盖黑色或蓝色塑料可以提高土壤温度,而白色或银色塑料可以降低土壤温度。与气温相比,STe的增加对植物生理和气候影响的研究很少。因此,本综述旨在为减少全球变暖的影响,特别是对果树的影响的决策提供重要贡献。
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