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微生物堆肥施肥:一种提高植物抗逆性的技术。

Fertilization of Microbial Composts: A Technology for Improving Stress Resilience in Plants.

作者信息

Ahmed Temoor, Noman Muhammad, Qi Yetong, Shahid Muhammad, Hussain Sabir, Masood Hafiza Ayesha, Xu Lihui, Ali Hayssam M, Negm Sally, El-Kott Attalla F, Yao Yanlai, Qi Xingjiang, Li Bin

机构信息

Xianghu Laboratory, Hangzhou 311231, China.

Institute of Biotechnology, Zhejiang University, Hangzhou 310058, China.

出版信息

Plants (Basel). 2023 Oct 12;12(20):3550. doi: 10.3390/plants12203550.

Abstract

Microbial compost plays a crucial role in improving soil health, soil fertility, and plant biomass. These biofertilizers, based on microorganisms, offer numerous benefits such as enhanced nutrient acquisition (N, P, and K), production of hydrogen cyanide (HCN), and control of pathogens through induced systematic resistance. Additionally, they promote the production of phytohormones, siderophore, vitamins, protective enzymes, and antibiotics, further contributing to soil sustainability and optimal agricultural productivity. The escalating generation of organic waste from farm operations poses significant threats to the environment and soil fertility. Simultaneously, the excessive utilization of chemical fertilizers to achieve high crop yields results in detrimental impacts on soil structure and fertility. To address these challenges, a sustainable agriculture system that ensures enhanced soil fertility and minimal ecological impact is imperative. Microbial composts, developed by incorporating characterized plant-growth-promoting bacteria or fungal strains into compost derived from agricultural waste, offer a promising solution. These biofertilizers, with selected microbial strains capable of thriving in compost, offer an eco-friendly, cost-effective, and sustainable alternative for agricultural practices. In this review article, we explore the potential of microbial composts as a viable strategy for improving plant growth and environmental safety. By harnessing the benefits of microorganisms in compost, we can pave the way for sustainable agriculture and foster a healthier relationship between soil, plants, and the environment.

摘要

微生物堆肥在改善土壤健康、土壤肥力和植物生物量方面发挥着关键作用。这些基于微生物的生物肥料具有诸多益处,如增强养分获取(氮、磷和钾)、产生氰化氢(HCN)以及通过诱导系统抗性控制病原体。此外,它们还促进植物激素、铁载体、维生素、保护酶和抗生素的产生,进一步有助于土壤可持续性和最佳农业生产力。农场作业产生的有机废物不断增加,对环境和土壤肥力构成了重大威胁。同时,为实现高作物产量而过度使用化肥会对土壤结构和肥力产生不利影响。为应对这些挑战,建立一个确保提高土壤肥力并将生态影响降至最低的可持续农业系统势在必行。通过将具有特征的促进植物生长的细菌或真菌菌株纳入农业废弃物制成的堆肥中而开发的微生物堆肥提供了一个有前景的解决方案。这些生物肥料含有能够在堆肥中茁壮成长的选定微生物菌株,为农业实践提供了一种生态友好、经济高效且可持续的替代方案。在这篇综述文章中,我们探讨了微生物堆肥作为改善植物生长和环境安全的可行策略的潜力。通过利用堆肥中微生物的益处,我们可以为可持续农业铺平道路,并促进土壤、植物和环境之间更健康的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f00/10609736/457aa64fd519/plants-12-03550-g001.jpg

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