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放线菌在农业生产可持续性中的多功能作用:综述。

Multifunctional role of Actinobacteria in agricultural production sustainability: A review.

机构信息

Mohammed VI Polytechnic University (UM6P), AgroBioSciences Program, Benguerir 43150, Morocco; Cadi Ayyad University, Faculty of Sciences Semlalia, Laboratory of Microbial Biotechnologies Agrosciences and Environment (BioMAgE, Labelled Unit CNRST N° 4), PO Box 2390, Marrakech, Morocco.

Mohammed VI Polytechnic University (UM6P), AgroBioSciences Program, Benguerir 43150, Morocco.

出版信息

Microbiol Res. 2022 Aug;261:127059. doi: 10.1016/j.micres.2022.127059. Epub 2022 May 5.

Abstract

The growing interest in low-input agriculture in recent years has focused the use of microbial biofertilizers to improve plant growth and yield through a better mobilization of indigenous source of key nutrients such as nitrogen, phosphorus, potassium etc. In this context, soil microorganisms especially Actinobacteria might play an important role. With their multifunctional activities, they are involved in nutrient cycling, soil quality and crop productivity as well as plant health which make them not only the eco-friendly alternative for agriculture but also for humankind. Bearing this in mind, it is primordial to further explore the special link between these microorganisms and soil -plant ecosystems. Therefore, this review discusses the importance of Actinobacteria as microbial biofertilizers and highlights the future needs and challenges for using them for sustaining crop. The patents and scientific literature analysis from 2000 to 2020 show that 16 patents claiming Actinobacteria as biocontrol or biofertilizer in agriculture and 949 indexed research articles related to Actinobacteria effect on plant growth and phosphate solubilization have been published. Furthermore, Actinobacteria ability to increase growth and yield of staple crops such as wheat maize, tomato, rice, and chickpea plant have been highlighted. Much more effort and progress are expected in the industrial development of actinobacterial bioinoculants as areas such as synthetic biology and nano-biotechnology advance.

摘要

近年来,人们对低投入农业的兴趣日益浓厚,专注于使用微生物生物肥料通过更好地利用本土来源的关键养分(如氮、磷、钾等)来促进植物生长和产量。在这种情况下,土壤微生物,特别是放线菌可能会发挥重要作用。它们具有多功能活性,参与养分循环、土壤质量和作物生产力以及植物健康,这使它们不仅成为农业的环保替代品,也成为人类的环保替代品。考虑到这一点,进一步探索这些微生物与土壤-植物生态系统之间的特殊联系至关重要。因此,本文讨论了放线菌作为微生物生物肥料的重要性,并强调了未来使用它们来维持作物生产的需求和挑战。2000 年至 2020 年的专利和科学文献分析表明,已经公布了 16 项声称放线菌在农业中具有生物防治或生物肥料作用的专利,以及 949 篇与放线菌对植物生长和磷酸盐溶解作用相关的索引研究文章。此外,还强调了放线菌能够增加小麦、玉米、番茄、水稻和鹰嘴豆等主要作物的生长和产量。随着合成生物学和纳米生物技术等领域的进步,预计在放线菌生物接种剂的工业发展方面将取得更多的努力和进展。

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