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不同环境条件下土壤中的解磷细菌:发生与功能。

Phosphate solubilizing bacteria from soils with varying environmental conditions: Occurrence and function.

机构信息

Department of Biology, Functional Ecology and Environment Engineering Laboratory, Faculty of Science and Technology, Sidi Mohamed Ben Abdellah University, Fez, Morocco.

Department of Agronomy, National School of Agriculture, Meknes, Morocco.

出版信息

PLoS One. 2023 Dec 8;18(12):e0289127. doi: 10.1371/journal.pone.0289127. eCollection 2023.

Abstract

Phosphate solubilizing bacteria (PSB) is an advantageous way to supply phosphate (P) to plants. The Mediterranean climate of Morocco, especially the low-lying areas, is semi-arid with nutrient-depleted soils in which small-scale, low-income farmers dominate without access to expensive inorganic fertilizers. However, there is not a wide range of PSBs suitable for various agroecological situations. Furthermore, our understanding of the soil and climatic variables that influence their development is limited. This study aims to examine the impacts of specific environmental factors, such as climate and soil, on the abundance, potential, and diversity of PSBs in four agricultural regions of Morocco. To assess the possible impact of these factors on the P solubilization capacity of PSBs and plant growth-promoting (PGP) traits, we analyzed the soil and climate of each sample studied. Similarly, we tested the P solubilization efficiency of the isolates. The bacteria were isolated in a National Botanical Research Institute's phosphate (NBRIP) agar medium. A total of 51 PSBs were studied in this work. The P-solubilization average of Rock P (RP) and Tricalcium P (TCP) of all strains that were isolated from each of the four regions ranged from 18.69 mg.L-1 to 40.43 mg.L-1 and from 71.71 mg.L-1 to 94.54 mg.L-1, respectively. The PGP traits of the isolated strains are positively correlated with the PSBs abundance and the sample characteristics (soil and climate). The morphological and biochemical characteristics of the strain allowed us to identify around nine different bacterial genera, including Bacillus, Pseudomonas, and Rhizobium. The findings showed that bacterial communities, density, and potency are closely correlated to various edapho-climatic conditions such as temperature, precipitation, soil nutrient status, and soil texture. These findings could be used to improve an effective plant-PSBs system and increase agricultural output by taking into account their specific ecological traits and plant growth mechanisms.

摘要

解磷细菌(PSB)是向植物提供磷(P)的一种有利方式。摩洛哥的地中海气候,特别是低洼地区,是半干旱的,土壤养分枯竭,小规模、低收入的农民占主导地位,无法获得昂贵的无机肥料。然而,适合各种农业生态环境的 PSB 并不广泛。此外,我们对影响其发展的土壤和气候变量的了解有限。本研究旨在研究特定环境因素(如气候和土壤)对摩洛哥四个农业地区 PSB 的丰度、潜力和多样性的影响。为了评估这些因素对 PSB 溶磷能力和植物促生(PGP)特性的可能影响,我们分析了每个研究样本的土壤和气候。同样,我们测试了分离物的溶磷效率。细菌是在国家植物研究所的磷酸盐(NBRIP)琼脂培养基中分离出来的。在这项工作中,共研究了 51 株 PSB。从四个地区的每一个地区分离出来的所有菌株的 RP 和 TCP 的平均溶磷量为 18.69 毫克/升至 40.43 毫克/升和 71.71 毫克/升至 94.54 毫克/升。分离菌株的 PGP 特性与 PSB 的丰度和样本特征(土壤和气候)呈正相关。菌株的形态和生化特性使我们能够识别出大约九个不同的细菌属,包括芽孢杆菌、假单胞菌和根瘤菌。研究结果表明,细菌群落、密度和活力与温度、降水、土壤养分状况和土壤质地等各种土壤气候条件密切相关。这些发现可以通过考虑其特定的生态特征和植物生长机制,用于改善有效的植物-PSB 系统并提高农业产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d89c/10707511/4ad2b2daccaa/pone.0289127.g001.jpg

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