Barros-Rodríguez Adoración, Pacheco Pamela, Peñas-Corte María, Fernández-González Antonio J, Cobo-Díaz José F, Enrique-Cruz Yasmira, Manzanera Maximino
Institute for Water Research and Department of Microbiology, University of Granada, 18071 Granada, Spain.
VitaNtech Biotechnology S.L, Av. de la Innovación, 1, 18016 Granada, Spain.
Biology (Basel). 2024 Aug 28;13(9):668. doi: 10.3390/biology13090668.
The market for bacteria as agricultural biofertilizers is growing rapidly, offering plant-growth stimulants; biofungicides; and, more recently, protectors against extreme environmental factors, such as drought. This abundance makes it challenging for the end user to decide on the product to use. In this work, we describe the isolation of a strain of (belonging to the operational group ) for use as a plant-growth-promoting rhizobacterium, a biofungicide, and a protector against drought. To compare its effectiveness with other commercial strains of the same operational group, , we analyzed its ability to promote the growth of pepper plants and protect them against drought, as well as its fungicidal activity through antibiosis and antagonism tests, its ability to solubilize potassium and phosphates, and its ability to produce siderophores. Finally, we used a probit function, a type of regression analysis used to model the outcomes of analyses, to quantify the biostimulatory effectiveness of the different plant-growth-promoting rhizobacteria, developing what we have called the Agricultural Protection Against Stress Index, which allowed us to numerically compare the four commercial strains of the operational group , based on a Delphi method-a type of regression analysis that can be used to model a cumulative normal distribution-and integrate the results from our panel of tests into a single value.
作为农业生物肥料的细菌市场正在迅速增长,提供植物生长刺激剂、生物杀菌剂,以及最近出现的针对极端环境因素(如干旱)的保护剂。如此众多的产品使得终端用户在决定使用哪种产品时面临挑战。在这项工作中,我们描述了一种(属于操作组 )菌株的分离,该菌株用作促进植物生长的根际细菌、生物杀菌剂和抗旱保护剂。为了将其有效性与同一操作组的其他商业菌株 进行比较,我们分析了它促进辣椒植物生长和保护它们免受干旱的能力,以及通过抗菌和拮抗试验分析其杀真菌活性、溶解钾和磷酸盐的能力以及产生铁载体的能力。最后,我们使用了概率函数(一种用于对分析结果进行建模的回归分析类型)来量化不同促进植物生长的根际细菌的生物刺激有效性,开发了我们所称的农业抗逆保护指数,这使我们能够基于德尔菲法(一种可用于对累积正态分布进行建模的回归分析类型)对操作组 的四种商业菌株进行数值比较,并将我们的一组测试结果整合为一个单一值。