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Selection and characterization of Bacillus thuringiensis strains from northwestern Himalayas toxic against Helicoverpa armigera

机译:喜马拉雅西北部对棉铃虫有毒力的苏云金芽孢杆菌菌株的筛选和鉴定

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摘要

In this study, we present the selection and the characterization of Bacillus thuringiensis (Bt) strains with respect to their cry/cyt gene content and toxicity evaluation toward one of the most important polyphagous lepidopteran pest, Helicoverpa armigera. Fifty‐six Bt isolates were obtained from 10 different regions of northwestern Himalayas, recording a total B. thuringiensis index of 0.62. Scanning electron microscopy revealed presence of bipyramidal, spherical, flat and irregular crystal shapes; SDS‐PAGE analysis of spore‐crystal mixtures showed the prominence of 130, 70, and 100 kDa protein bands in majority of the isolates; PCR analysis with primers for eight cry and cyt gene families and 13 cry gene subfamilies resulted in isolates showing different combinations of insecticidal genes. Strains containing cry1 were the most abundant (57.1%) followed by cyt2 (46.42%), cry11 (37.5%), cry2 (28.57%), cry4 (21.42%), cyt1 (19.64%), cry3 (8.9%), and cry7, 8 (7.14%). A total of 30.35% of the strains did not amplify with any of the primers used in this study. Median lethal concentration 50 (LC50) estimates of spore‐crystal mixtures of Bt‐JK12, 17, 22, 48, and 72 against second instar larvae of H. armigera was observed to be 184.62, 275.39, 256.29, 259.93 μg ml−1, respectively. B. thuringiensis presents great diversity with respect to the presence of crystal protein encoding genes and insecticidal activity. Four putative toxic isolates identified in this study have potential application in insect pest control. B. thuringiensis isolate JK12 exhibited higher toxicity against H. armigera than that of B. thuringiensis HD1, hence can be commercially exploited to control insect pest for sustainable crop production. The results of this study confirm the significance of continuous exploration of new Bt stains from different ecological regions of the world.
机译:在这项研究中,我们就苏云金芽孢杆菌(Bt)的cry / cyt基因含量和对最重要的多食性鳞翅目害虫之一棉铃虫(Helicoverpa armigera)的毒性评估,进行了选择和鉴定。从喜马拉雅西北部的10个不同地区获得了56种Bt分离株,总苏云金芽孢杆菌指数为0.62。扫描电子显微镜显示存在双锥体,球形,扁平和不规则晶体形状。孢子-结晶混合物的SDS-PAGE分析显示,大多数分离株中有130、70和100 kDa蛋白带突出。用八个cry和cyt基因家族以及13个cry基因亚家族的引物进行PCR分析,结果显示分离物显示出不同的杀虫基因组合。含有cry1的菌株含量最高(57.1%),其次是cyt2(46.42%),cry11(37.5%),cry2(28.57%),cry4(21.42%),cyt1(19.64%), cry 3(8.9%),哭泣 7、8(7.14%)。总共30.35%的菌株未使用本研究中使用的任何引物进行扩增。相对于 H第二龄幼虫的 Bt -JK12、17、22、48和72孢子-晶体混合物的中位致死浓度50(LC50)估计值。观察到的棉铃虫分别为184.62、275.39、256.29、259.93μgml -1 B。苏云金在晶体蛋白编码基因的存在和杀虫活性方面表现出极大的多样性。在这项研究中鉴定出的四种推定的有毒分离物在昆虫害虫防治中具有潜在的应用。 B。苏云金分离株JK12对 H具有较高的毒性。棉铃虫 B因此,苏云金 HD1可以商业化地用于控制害虫,以实现可持续的作物生产。这项研究的结果证实了不断探索来自世界不同生态区域的新型 Bt 染料的重要性。

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