Efficacy of biofertilizers in different stress management of fruit crops- A Review

IF 0.7 Q4 PLANT SCIENCES Plant Science Today Pub Date : 2023-08-13 DOI:10.14719/pst.2538
Gundu Boina Gopichand Reddy, R. Rajan, Keerthana Chundurwar, Akshay Kumar, T. Singh, Thammali Vamshi
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Abstract

Biofertilizers are gaining widespread acceptance in agriculture due to their numerous advantages over chemical fertilizers. These environmentally friendly alternatives play a crucial role in enhancing soil health and fertility through various mechanisms. Biofertilizers consist of diverse microorganisms that can effectively promote plant growth and development, even under abiotic stress conditions. As a result, the utilization of biofertilizers is steadily increasing, especially with the escalating costs of chemical fertilizers and their adverse effects on soil health and crop yields. Certain microorganisms, such as Azotobacter, Azospirillum, Arbuscular Mycorrhizal Fungi (AMF) Gigaspora rosea, Pseudomonas, and Funneliformis geosporus, hold substantial potential for commercial use as biofertilizers to improve the growth and development of fruit crops. In-depth research has demonstrated that biofertilizers can significantly augment the biomass and productivity of various fruit crops. Their application in fruit crop production is particularly beneficial as they not only enhance growth but also confer improved resistance to abiotic stress factors like high temperatures, drought, salinity, and metal toxicity. This comprehensive review highlights the substantial promise of biofertilizers in mitigating abiotic stress and fostering sustainable practices in fruit crop cultivation.
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生物肥料在果树不同胁迫管理中的效果——综述
由于生物肥料比化学肥料有许多优点,因此在农业中得到了广泛的接受。这些对环境友好的替代品通过各种机制在增强土壤健康和肥力方面发挥着至关重要的作用。生物肥料由多种微生物组成,即使在非生物胁迫条件下也能有效促进植物生长发育。因此,生物肥料的利用率正在稳步增加,特别是随着化肥成本的不断上涨及其对土壤健康和作物产量的不利影响。某些微生物,如固氮菌、氮螺菌、丛枝菌根真菌(AMF)玫瑰大孢菌、假单胞菌和地孢漏斗菌,具有作为生物肥料改善果树生长发育的巨大商业潜力。深入研究表明,生物肥料可以显著提高各种水果作物的生物量和生产力。它们在果树生产中的应用尤其有益,因为它们不仅能促进生长,还能提高对高温、干旱、盐度和金属毒性等非生物胁迫因素的抵抗力。这篇综合综述强调了生物肥料在减轻非生物胁迫和促进果树种植可持续实践方面的巨大前景。
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来源期刊
Plant Science Today
Plant Science Today PLANT SCIENCES-
CiteScore
1.50
自引率
11.10%
发文量
177
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