有益微生物改善玉米干旱胁迫的田间应用

IF 3.9 2区 农林科学 Q1 AGRONOMY
Uchechukwu Paschal Chukwudi, Olubukola Oluranti Babalola, Bernard R. Glick, Gustavo Santoyo, Everlon Cid Rigobelo
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引用次数: 0

摘要

背景和目的干旱胁迫是玉米(Zea mays L.)生产面临的一个挑战,尤其是在不可预测的气候变化和极端天气频发的时代。玉米是全世界数百万人的热量来源。它是一种粮食安全作物,任何产量损失都会对粮食安全产生影响。本研究考察了土壤微生物在干旱条件下对玉米生长和产量的影响,重点是基于田间试验的研究。方法本综述遵循 PRISMA 准则,系统评估了土壤微生物在干旱胁迫下对玉米生长和产量的田间影响研究。使用特定关键词和布尔运算符在多个科学数据库中进行了全面搜索,共发现 2010 年至 2024 年间发表的 78 篇手稿。结果与未接种的植物相比,施用微生物生物肥料可提高玉米的产量。在田间条件下,生物肥料与传统肥料的互补施用在改善玉米干旱胁迫方面优于单独施用生物肥料。本研究强调了土壤微生物促进抗旱的一些机制,以及环境因素和寄主植物特性对微生物接种剂有效性的影响。通过将微生物技术融入耕作实践,可以减少气候变化对粮食安全带来的挑战,从而促进可持续农业生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field application of beneficial microbes to ameliorate drought stress in maize

Background and aims

Drought stress is a challenge to maize (Zea mays L.) production, especially in an era of unpredictable climate change and weather extremes. Maize is a source of calories for millions of people all over the world. It is a food security crop, and any yield loss has food security implications. This study examines the effects of soil microbes on maize growth and yield under drought conditions, focusing on field-based experiments.

Methods

This review follows PRISMA guidelines to systematically evaluate studies on the field effects of soil microbes on maize growth and yield under drought stress. A comprehensive search across multiple scientific databases using specific keywords and Boolean operators identified 78 manuscripts published between 2010 and 2024. After applying inclusion and exclusion criteria, only 9 studies met the criteria for microbial application in maize fields under drought conditions.

Results

Microbial Biofertilizer applications enhance maize performance compared to uninoculated plants. Complementary application of biofertilizer together with conventional fertilizers outperforms sole application of biofertilizer in ameliorating drought stress in maize under field conditions. This study highlights some mechanisms through which soil microbes contribute to drought tolerance, the influence of environmental factors and host plant characteristics on microbial inoculants' effectiveness.

Conclusions

The diverse array of growth-promoting microbial species available and their application methods offer significant potential for improving agricultural resilience. By integrating microbial technologies into farming practices, the challenges posed by climate change to food security may be reduced, thus contributing to sustainable agricultural production.

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来源期刊
Plant and Soil
Plant and Soil 农林科学-农艺学
CiteScore
8.20
自引率
8.20%
发文量
543
审稿时长
2.5 months
期刊介绍: Plant and Soil publishes original papers and review articles exploring the interface of plant biology and soil sciences, and that enhance our mechanistic understanding of plant-soil interactions. We focus on the interface of plant biology and soil sciences, and seek those manuscripts with a strong mechanistic component which develop and test hypotheses aimed at understanding underlying mechanisms of plant-soil interactions. Manuscripts can include both fundamental and applied aspects of mineral nutrition, plant water relations, symbiotic and pathogenic plant-microbe interactions, root anatomy and morphology, soil biology, ecology, agrochemistry and agrophysics, as long as they are hypothesis-driven and enhance our mechanistic understanding. Articles including a major molecular or modelling component also fall within the scope of the journal. All contributions appear in the English language, with consistent spelling, using either American or British English.
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