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Alginate-perlite encapsulated Pseudomonas putida A (ATCC 12633) cells: Preparation, characterization and potential use as plant inoculants

机译:藻酸盐肽封装的假目炎普赖达A(ATCC 12633)细胞:作为植物接种剂的制备,表征和潜在用途

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摘要

Microbial immobilization can be used to prepare encapsulated inoculants. Here, we characterize and describe the preparation of Ca-alginate-perlite microbeads loaded with cells of plant growth-promoting Pseudomonas putida A (ATCC 12633), for their future application as agricultural inoculants. The microbeads were prepared by dropwise addition of a CaCl2-paraffin emulsion mixture to an emulsion containing alginate 2% (w/v), perlite 0.1-0.4% (w/v) and bacterial suspension in 0.9% NaCl (10(10) CFU/mL). For all perlite concentrations used, microbead size was 90-120 mu m, the trapped population was 10(8) CFU/g microbeads and the increase in mechanical stability was proportional to perlite concentration. Microbeads containing 0.4% (w/v) perlite were able to release bacteria into the medium after 30 days of incubation. When we evaluated how P. putida A (ATCC 12633) entrapped in Ca-alginate-perlite (0.4% (w/v)) microbeads colonized the Arabidopsis thaliana rhizosphere, an increase in colonization over time was detected (from an initial 2.1x10(4) to 9.2x10(5) CFU/g soil after 21 days). With this treatment, growth promotion of A. thaliana occurred with an increase in the amount of proteins, and in root and leaf biomass. It was concluded that the microbeads could be applied as possible inoculants, since they provide protection and a controlled release of microorganisms into the rhizosphere.
机译:微生物固定化可用于制备包封的抗置剂。在此,我们表征和描述了加载有植物生长的细胞的Ca-藻酸盐 - 珍珠岩微珠的制备,用于促进Pseudomonas普赖达A(ATCC 12633),用于其未来的应用作为农业接种剂。通过将CaCl 2-石蜡乳液混合物滴加至含有藻酸盐2%(w / v)的乳液,珍珠岩0.1-0.4%(w / v)和0.9%NaCl(10(10)CFU的细菌悬浮液(10) / ml)。对于所用的所有珍珠岩浓度,微珠尺寸为90-120μm,捕获的群体为10(8)CFU / g微珠,并且机械稳定性的增加与珍珠岩浓度成比例。含有0.4%(w / v)珍珠岩的微珠能够在孵育30天后将细菌释放到培养基中。当我们评估如何在CA-藻酸盐 - 珍珠岩中(0.4%(w / v))微珠化拟查拟南芥根际时,检测到随时间的殖民化增加(来自初始2.1x10( 4)21天后9.2x10(5)CFU / g土壤)。通过这种治疗,生长促进A. Thilana发生蛋白质和根和叶生物质的增加。得出结论是,微珠可以应用于可能的孕育剂,因为它们提供保护和将微生物的控制释放到根际。

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