有机添加剂:增强植物对盐度和金属压力的耐受性,提高农业生产力

Stresses Pub Date : 2024-02-26 DOI:10.3390/stresses4010011
Israt Jahan Irin, Mirza Hasanuzzaman
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引用次数: 0

摘要

盐分和金属胁迫是对植物生长和发育产生负面影响的重要非生物因素。这些因素导致全球农业减产。有机添加剂已成为减轻盐分和金属胁迫对植物不利影响的潜在解决方案。当植物受到这些胁迫时,它们会产生活性氧,从而影响蛋白质的合成并破坏细胞膜。有机添加剂,包括生物炭、蛭石堆肥、绿肥和农家肥,已被证明可促进土壤对氮的吸收(氮是蛋白质合成的重要成分),并增强植物的各种过程,如新陈代谢、蛋白质积累和抗氧化活动。研究人员发现,施用有机添加剂可提高植物的抗逆性、植物生长和产量。它们通过改变植物的离子平衡、增强光合作用机制、促进抗氧化系统和减少氧化损伤来实现这一目标。有机改良剂有效应对土壤中高浓度盐分和金属的潜力正日益受到关注,并成为农业领域越来越流行的做法。本综述旨在深入探讨通过使用各种土壤改良剂操纵土壤中重金属的生物利用率,从而处理受盐分和重金属污染的土壤的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Organic Amendments: Enhancing Plant Tolerance to Salinity and Metal Stress for Improved Agricultural Productivity
Salinity and metal stress are significant abiotic factors that negatively influence plant growth and development. These factors lead to diminished agricultural yields on a global scale. Organic amendments have emerged as a potential solution for mitigating the adverse effects of salinity and metal stress on plants. When plants experience these stresses, they produce reactive oxygen species, which can impair protein synthesis and damage cellular membranes. Organic amendments, including biochar, vermicompost, green manure, and farmyard manure, have been shown to facilitate soil nitrogen uptake, an essential component for protein synthesis, and enhance various plant processes such as metabolism, protein accumulation, and antioxidant activities. Researchers have observed that the application of organic amendments improves plant stress tolerance, plant growth, and yield. They achieve this by altering the plant’s ionic balance, enhancing the photosynthetic machinery, boosting antioxidant systems, and reducing oxidative damage. The potential of organic amendments to deal effectively with high salinity and metal concentrations in the soil is gaining increased attention and is becoming an increasingly popular practice in the field of agriculture. This review aims to provide insights into methods for treating soils contaminated with salinity and heavy metals by manipulating their bioavailability through the use of various soil amendments.
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