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本文引用的文献

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Microorganisms. 2022 Apr 13;10(4):809. doi: 10.3390/microorganisms10040809.
2
Brief history of biofertilizers in Brazil: from conventional approaches to new biotechnological solutions.巴西生物肥料的简史:从传统方法到新的生物技术解决方案。
Braz J Microbiol. 2021 Dec;52(4):2215-2232. doi: 10.1007/s42770-021-00618-9. Epub 2021 Sep 30.
3
Chemical Proprieties of Biopolymers (Chitin/Chitosan) and Their Synergic Effects with Endophytic Species: Unlimited Applications in Agriculture.生物聚合物(几丁质/壳聚糖)的化学特性及其与内生种的协同效应:在农业中的无限应用。
Molecules. 2021 Feb 20;26(4):1117. doi: 10.3390/molecules26041117.
4
Roles of Phosphate Solubilizing Microorganisms from Managing Soil Phosphorus Deficiency to Mediating Biogeochemical P Cycle.解磷微生物在解决土壤磷缺乏及介导生物地球化学磷循环中的作用
Biology (Basel). 2021 Feb 17;10(2):158. doi: 10.3390/biology10020158.
5
Revealing soil legacy phosphorus to promote sustainable agriculture in Brazil.揭示土壤磷素遗产,促进巴西农业可持续发展。
Sci Rep. 2020 Sep 28;10(1):15615. doi: 10.1038/s41598-020-72302-1.
6
Formulation of Microbial Inoculants by Encapsulation in Natural Polysaccharides: Focus on Beneficial Properties of Carrier Additives and Derivatives.通过天然多糖包封制备微生物菌剂:聚焦载体添加剂及其衍生物的有益特性
Front Plant Sci. 2020 Mar 10;11:270. doi: 10.3389/fpls.2020.00270. eCollection 2020.
7
Bacillus species in soil as a natural resource for plant health and nutrition.土壤中的芽孢杆菌种类作为植物健康和营养的自然资源。
J Appl Microbiol. 2020 Jun;128(6):1583-1594. doi: 10.1111/jam.14506. Epub 2019 Nov 21.
8
Microbiome Applications from Lab to Field: Facing Complexity.从实验室到实地的微生物组应用:应对复杂性。
Trends Plant Sci. 2019 Mar;24(3):194-198. doi: 10.1016/j.tplants.2018.12.004. Epub 2019 Jan 19.
9
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Microbiol Res. 2019 Feb;219:26-39. doi: 10.1016/j.micres.2018.10.011. Epub 2018 Nov 2.
10
Development of low-cost formulations of plant growth-promoting bacteria to be used as inoculants in beneficial agricultural technologies.开发低成本的植物生长促进细菌配方,用作有益农业技术中的接种剂。
Microbiol Res. 2019 Feb;219:12-25. doi: 10.1016/j.micres.2018.10.012. Epub 2018 Nov 2.

开发解磷芽孢杆菌菌剂的参数评价。

Parameter evaluation for developing phosphate-solubilizing Bacillus inoculants.

机构信息

Embrapa Milho E Sorgo, Sete Lagoas, MG, 35701-970, Brazil.

Embrapa Solos, Rio de Janeiro, RJ, Brazil.

出版信息

Braz J Microbiol. 2024 Mar;55(1):737-748. doi: 10.1007/s42770-023-01182-0. Epub 2023 Nov 27.

DOI:10.1007/s42770-023-01182-0
PMID:38008804
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10920567/
Abstract

Bacterial inoculants have been used in agriculture to improve plant performance. However, laboratory and field requirements must be completed before a candidate can be employed as an inoculant. Therefore, this study aimed to evaluate the parameters for inoculant formulation and the potential of Bacillus subtilis (B70) and B. pumilus (B32) to improve phosphorus availability in maize (Zea mays L.) crops. In vitro experiments assessed the bacterial ability to solubilize and mineralize phosphate, their adherence to roots, and shelf life in cassava starch (CS), carboxymethyl cellulose (CMC), peat, and activated charcoal (AC) stored at 4 °C and room temperature for 6 months. A field experiment evaluated the effectiveness of strains to increase the P availability to plants growing with rock phosphate (RP) and a mixture of RP and triple superphosphate (TS) and their contribution to improving maize yield and P accumulation in grains. The B70 was outstanding in solubilizing RP and phytate mineralization and more stable in carriers and storage conditions than B32. However, root adherence was more noticeable in B32. Among carriers, AC was the most effective for preserving viable cell counts, closely similar to those of the initial inoculum of both strains. Maize productivity using the mixture RPTS was similar for B70 and B32. The best combination was B70 with RP, which improved the maize yield (6532 kg ha) and P accumulation in grains (15.95 kg ha). Our results indicated that the inoculant formulation with AC carrier and B70 is a feasible strategy for improving phosphorus mobilization in the soil and maize productivity.

摘要

细菌接种剂已被用于农业以提高植物性能。然而,在候选物被用作接种剂之前,必须完成实验室和田间要求。因此,本研究旨在评估接种剂配方的参数以及枯草芽孢杆菌(B70)和短小芽孢杆菌(B32)提高玉米(Zea mays L.)作物磷有效性的潜力。体外实验评估了细菌溶解和矿化磷酸盐的能力、对根的附着能力以及在木薯淀粉(CS)、羧甲基纤维素(CMC)、泥炭和活性炭(AC)中的保质期,这些载体在 4°C 和室温下储存 6 个月。田间试验评估了菌株在提高与磷矿(RP)和 RP 与过磷酸钙(TS)混合物一起生长的植物的磷有效性方面的有效性,以及它们对提高玉米产量和磷在籽粒中积累的贡献。B70 在溶解 RP 和植酸矿化方面表现出色,在载体和储存条件下比 B32 更稳定。然而,B32 在根附着方面更为明显。在载体中,AC 对保持活菌数最有效,与两种菌株的初始接种物非常相似。使用混合物 RPTS 的玉米生产力对 B70 和 B32 来说相似。最佳组合是 B70 与 RP,它提高了玉米产量(6532 千克/公顷)和籽粒磷积累(15.95 千克/公顷)。我们的结果表明,含有 AC 载体和 B70 的接种剂配方是提高土壤和玉米生产力中磷动员的可行策略。