Biotechnological advances in plant growth-promoting rhizobacteria for sustainable agriculture.

IF 4 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Leandris Argentel-Martínez, Ofelda Peñuelas-Rubio, Angélica Herrera-Sepúlveda, Jorge González-Aguilera, Surya Sudheer, Linu M Salim, Sunaina Lal, Chittethu Kunjan Pradeep, Aurelio Ortiz, Estibaliz Sansinenea, Sandamali Harshani Kumari Hathurusinghe, Jae-Ho Shin, Olubukola Oluranti Babalola, Ugur Azizoglu
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Abstract

The rhizosphere, the soil zone surrounding plant roots, serves as a reservoir for numerous beneficial microorganisms that enhance plant productivity and crop yield, with substantial potential for application as biofertilizers. These microbes play critical roles in ecological processes such as nutrient recycling, organic matter decomposition, and mineralization. Plant growth-promoting rhizobacteria (PGPR) represent a promising tool for sustainable agriculture, enabling green management of crop health and growth, being eco-friendly alternatives to replace chemical fertilizers and pesticides. In this sense, biotechnological advancements respecting genomics and gene editing have been crucial to develop microbiome engineering which is pivotal in developing microbial consortia to improve crop production. Genome mining, which involves comprehensive analysis of the entire genome sequence data of PGPR, is crucial for identifying genes encoding valuable bacterial enzymes and metabolites. The CRISPR-Cas system, a cutting-edge genome-editing technology, has shown significant promise in beneficial microbial species. Advances in genetic engineering, particularly CRISPR-Cas, have markedly enhanced grain output, plant biomass, resistance to pests, and the sensory and nutritional quality of crops. There has been a great advance about the use of PGPR in important crops; however, there is a need to go further studying synthetic microbial communities, microbiome engineering, and gene editing approaches in field trials. This review focuses on future research directions involving several factors and topics around the use of PGPR putting special emphasis on biotechnological advances.

促进植物生长的根瘤菌在可持续农业中的生物技术进展。
根际是植物根系周围的土壤区,是许多有益微生物的储存库,可提高植物生产力和作物产量,具有作为生物肥料应用的巨大潜力。这些微生物在养分循环、有机物分解和矿化等生态过程中起着至关重要的作用。促进植物生长的根瘤菌(PGPR)是可持续农业的一种很有前途的工具,可以实现作物健康和生长的绿色管理,是替代化肥和农药的环保替代品。从这个意义上说,基因组学和基因编辑方面的生物技术进步对于微生物组工程的发展至关重要,微生物组工程对于发展微生物联合体以提高作物产量至关重要。基因组挖掘涉及对PGPR全基因组序列数据的综合分析,对于识别编码有价值的细菌酶和代谢物的基因至关重要。CRISPR-Cas系统是一种尖端的基因组编辑技术,在有益微生物物种中显示出巨大的前景。基因工程技术的进步,特别是CRISPR-Cas技术,显著提高了粮食产量、植物生物量、抗虫害能力以及作物的感官和营养品质。PGPR在重要作物上的应用已经取得了很大的进展;然而,需要在田间试验中进一步研究合成微生物群落、微生物组工程和基因编辑方法。本文综述了围绕PGPR应用的几个因素和主题的未来研究方向,特别强调了生物技术的进展。
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来源期刊
World journal of microbiology & biotechnology
World journal of microbiology & biotechnology 工程技术-生物工程与应用微生物
CiteScore
6.30
自引率
2.40%
发文量
257
审稿时长
2.5 months
期刊介绍: World Journal of Microbiology and Biotechnology publishes research papers and review articles on all aspects of Microbiology and Microbial Biotechnology. Since its foundation, the Journal has provided a forum for research work directed toward finding microbiological and biotechnological solutions to global problems. As many of these problems, including crop productivity, public health and waste management, have major impacts in the developing world, the Journal especially reports on advances for and from developing regions. Some topics are not within the scope of the Journal. Please do not submit your manuscript if it falls into one of the following categories: · Virology · Simple isolation of microbes from local sources · Simple descriptions of an environment or reports on a procedure · Veterinary, agricultural and clinical topics in which the main focus is not on a microorganism · Data reporting on host response to microbes · Optimization of a procedure · Description of the biological effects of not fully identified compounds or undefined extracts of natural origin · Data on not fully purified enzymes or procedures in which they are applied All articles published in the Journal are independently refereed.
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