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首页> 外文期刊>Current Microbiology: An International Journal >Immobilization of alginate-encapsulated Bacillus thuringiensis var. israelensis containing different multivalent counterions for mosquito control.
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Immobilization of alginate-encapsulated Bacillus thuringiensis var. israelensis containing different multivalent counterions for mosquito control.

机译:藻酸盐包裹的苏云金芽孢杆菌变种的固定化。以色列含有不同的多价抗衡离子,用于灭蚊。

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Immobilized techniques have been used widely for the controlled release formulation of mosquitoes. Among the microbial formulations, polymeric matrices play an important role in the controlled release of microbial pesticide at rates sufficiently effective to kill mosquitoes in the field. The advantage of these matrices is that they enhance the stability of both spores and toxin against pH, temperature variations, and UV irradiation. The disadvantage of using calcium alginate beads is that they are unstable upon contact with phosphate of potassium or sodium ions rich in the mosquito habitats. To overcome these problems, attempts were made to encapsulate Bacillus thuringiensis var. israelensis within alginate by using different multivalent counterions, namely, calcium chloride, zinc sulfate, copper sulfate, cobalt chloride, and ferric chloride, and the beads formed were tested for its mosquito larvicidal activity. Among all the beads tested, zinc alginate beads resulted in maximum larvicidal activity of 98% (+/-1.40 SE) against Culex quinquefasciatus IIIrd instar larvae and maximum spore count of 3.36 x 10(5) (+/-5291.50 SE) CFU/ml. Zinc alginate beads maintained their structure for up to 48 h when shaken vigorously on a rotary shaker at 180 rpm in the presence of 10 mM potassium phosphate buffer (pH 6.8 +/- 0.1). In conclusion, our results suggest that the use of zinc sulfate as counterions to encapsulate B. thuringiensis var. israelensis within alginate may be a potent mosquito control program in the habitats where more phosphate ions are present.
机译:固定技术已广泛用于蚊子的控释制剂。在微生物制剂中,聚合物基质以足以有效杀灭蚊子的速率在微生物农药的控制释放中发挥重要作用。这些基质的优势在于它们增强了孢子和毒素对pH,温度变化和紫外线照射的稳定性。使用藻酸钙珠的缺点是,它们与蚊子栖息地中富含的钾或钠离子的磷酸盐接触时不稳定。为了克服这些问题,尝试封装苏云金芽孢杆菌。通过使用不同的多价抗衡离子,即氯化钙,硫酸锌,硫酸铜,氯化钴和氯化铁,在海藻酸盐中检测以色列蜡,并测试了形成的珠的蚊幼虫活性。在所有测试的珠子中,海藻酸锌珠子对库蚊(Culex quinquefasciatus)第三龄幼虫的最大杀幼虫活性为98%(+/- 1.40 SE),最大孢子数为3.36 x 10(5)(+/- 5291.50 SE)CFU /毫升在10 mM磷酸钾缓冲液(pH 6.8 +/- 0.1)存在下,在180 rpm的旋转振荡器上剧烈振荡时,藻酸锌珠可保持其结构长达48小时。总之,我们的结果表明使用硫酸锌作为抗衡离子来封装苏云金芽孢杆菌变种。在存在更多磷酸根离子的栖息地中,藻酸盐中的以色列可能是一种有效的蚊子控制程序。

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