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Encapsulation of plant growth-promoting bacteria in alginate beads enriched with humic acid

机译:富含腐殖酸的藻酸盐珠粒中植物促生细菌的包封

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摘要

The key to achieving successful, reproducible results following the introduction of beneficial microbes into soil relies on the survival rate of the inoculated bacteria in a heterogeneous soil environment and hence an improved encapsulation method was developed. Owing to the constraints associated with the inoculum formulation, in this study, encapsulation of a plant growth promoting bacteria (PGPB) isolate Bacillus subtilis CC-pg 104 was attempted with alginate by enriching the bead microenvironment with humic acid. High viability of the encapsulated bacteria was observed with minimum cell loss upon storage for 5 months. Steady and constant cell release from the bead was observed for 1 week at different pH. Encapsulated cells remained active as evidenced by their ability to solubilize calcium phosphate in vitro. Successful plant growth promotion of lettuce by the encapsulated bacteria under gnotobiotic and sterile environment was also achieved. Feasibility of this improved encapsulation technique is mainly due to the dual benefits of humic acid to microbe and plant and its chemical properties allowing an easy mixing with alginate without interfering in the formation of the alginate gel beads by cross-linking with Ca2+ ions. Thus, the encapsulation method described in this study can be effectively used to protect the PGPB inoculum from adverse conditions of the soil for their successful establishment in the rhizosphere. (c) 2006 Wiley Periodicals, Inc.
机译:将有益微生物引入土壤后,获得成功,可重现结果的关键取决于异种土壤环境中接种细菌的存活率,因此开发了一种改进的包囊方法。由于接种制剂的限制,在这项研究中,尝试通过藻酸盐富集腐殖酸使微藻包埋植物生长促进细菌(PGPB)枯草芽孢杆菌CC-pg 104。观察到包封细菌的高生存力,并且在保存5个月后细胞损失最小。在不同的pH下观察到稳定和恒定的细胞从珠粒释放1周。囊封细胞在体外溶解磷酸钙的能力证明仍保持活性。在致病菌和无菌环境下,通过包封的细菌成功地促进了莴苣的植物生长。这种改进的包封技术的可行性主要归因于腐殖酸对微生物和植物的双重好处,其化学性质使它易于与藻酸盐混合,而不会因与Ca2 +离子交联而干扰藻酸盐凝胶珠的形成。因此,本研究中描述的包封方法可以有效地用于保护PGPB接种物免受土壤不利条件的影响,从而成功地在根际中建立。 (c)2006年Wiley Periodicals,Inc.

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