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壳聚糖在胁迫条件下对植物生长的影响:与植物促生细菌的相似性

Effects of chitosan on plant growth under stress conditions: similarities with plant growth promoting bacteria.

作者信息

Rojas-Pirela Maura, Carillo Petronia, Lárez-Velásquez Cristóbal, Romanazzi Gianfranco

机构信息

Laboratorio de Enzimología de Parásitos, Departamento de Biología, Facultad de Ciencias, Universidad de Los Andes, Mérida, Venezuela.

Dipartimento di Scienze e Tecnologie Ambientali Biologiche e Farmaceutiche, Università degli Studi della Campania, Caserta, Italy.

出版信息

Front Plant Sci. 2024 Nov 8;15:1423949. doi: 10.3389/fpls.2024.1423949. eCollection 2024.

Abstract

The agricultural use of synthetic pesticides, fertilizers, and growth regulators may represent a serious public health and environmental problem worldwide. All this has prompted the exploration of alternative chemical compounds, leading to exploring the potential of chitosan and PGPB in agricultural systems as a potential biotechnological solution to establish novel agricultural production practices that not only result in fewer adverse impacts on health and the environment but also improve the resilience and growth of the plants. In this work, an analysis of the impact of plant growth-promoting bacteria (PGPB) and chitosan on plant growth and protection has been conducted, emphasizing the crucial bioactivities of the resistance of the plants to both biotic and abiotic stressors. These include inducing phytohormone production, mobilization of insoluble soil nutrients, biological nitrogen fixation, ethylene level regulation, controlling soil phytopathogens, etc. Moreover, some relevant aspects of chitin and chitosan are discussed, including their chemical structures, sources, and how their physical properties are related to beneficial effects on agricultural applications and mechanisms of action. The effects of PGPB and chitosan on photosynthesis, germination, root development, and protection against plant diseases have been compared, emphasizing the intriguing similarities and synergistic effects observed in some of these aspects. Although currently there are limited studies focused on the combined application of PGPB and chitosan, it would be important to consider the similarities highlighted in this work, and those that may emerge in future studies or through well-designed investigations, because these could permit advancing towards a greater knowledge of these systems and to obtain better formulations by combining these bioproducts, especially for use in the new contexts of sustainable agriculture. Thus, it seems feasible to augur a promising near future for these combinations, considering the wide range of possibilities offered by chitinous biomaterials for the development of innovative formulations, as well as allowing different application methods. Likewise, the studies related to the PGPB effects on plant growth appear to be expanding due to ongoing research to test on plants the impacts of microorganisms derived from different environments, whether known or recently discovered, making it a very exciting field of research.

摘要

合成农药、化肥和生长调节剂在农业上的使用可能是全球范围内一个严重的公共卫生和环境问题。所有这些都促使人们探索替代化合物,从而探索壳聚糖和植物生长促进细菌(PGPB)在农业系统中的潜力,作为一种潜在的生物技术解决方案,以建立新的农业生产实践,不仅减少对健康和环境的不利影响,还能提高植物的恢复力和生长。在这项工作中,分析了植物生长促进细菌(PGPB)和壳聚糖对植物生长和保护的影响,强调了植物对生物和非生物胁迫抗性的关键生物活性。这些活性包括诱导植物激素产生、动员土壤中不溶性养分、生物固氮、调节乙烯水平、控制土壤植物病原体等。此外,还讨论了几丁质和壳聚糖的一些相关方面,包括它们的化学结构、来源,以及它们的物理性质如何与农业应用中的有益效果和作用机制相关。比较了PGPB和壳聚糖对光合作用、发芽、根系发育和植物病害防治的影响,强调了在其中一些方面观察到的有趣的相似性和协同效应。尽管目前专注于PGPB和壳聚糖联合应用的研究有限,但考虑到这项工作中突出的相似性,以及未来研究或精心设计的调查中可能出现的相似性,这一点很重要,因为这些相似性可以使我们更深入地了解这些系统,并通过组合这些生物产品获得更好的配方,特别是用于可持续农业的新环境。因此,考虑到几丁质生物材料为开发创新配方提供的广泛可能性以及允许不同的应用方法,预示这些组合在不久的将来前景广阔似乎是可行的。同样,由于正在进行研究以测试来自不同环境(无论是已知的还是最近发现的)的微生物对植物的影响,与PGPB对植物生长影响相关的研究似乎正在扩大,这使其成为一个非常令人兴奋的研究领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81f7/11581901/938881c56822/fpls-15-1423949-g001.jpg

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