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苏云金芽孢杆菌δ-内毒素的生化和分子特征。

Biochemical and molecular characterization of delta-endotoxins in Bacillus thuringiensis.

机构信息

Laboratorio de Biotecnología Ambiental, Centro de Biotecnología Genómica-Instituto Politécnico Nacional, Reynosa, Tamp., México.

出版信息

Folia Microbiol (Praha). 2009 Nov;54(6):487-92. doi: 10.1007/s12223-009-0069-7. Epub 2010 Feb 7.

Abstract

The delta-endotoxins (delta-ETX) of four native strains (RT7, RT19, RT25, and RT25), and one reference strain (4L1) of Bacillus thuringiensis were biochemically and molecularly characterized to determine their potential toxic activity against lepidopteran larvae. Crystals of delta-ETX were purified through a two-phase system to determine their morphology, molar mass, solubility, and resistance to proteinases. Toxic activity and cry gene content were also determined. Crystals from native strains exhibited polyhedral, irregular and cuboidal shapes, while those from 4L1 were bipyramidal. Seven proteins with estimated molar mass approximately 30-134 kDa were detected as the main components of the native delta-ETX. Only crystals from 4L1, RT24, and RT25 underwent complete solubilization at pH >12.0. Crystals from all strains produced trypsin-resistant peptides. None of the cry genes associated with toxicity in lepidopterans (cry1, cry2, cry9) was found in the native strains; however, 4L1 strain harbors cry1 and cry2 genes. Strains RT19 and RT25 caused significant mortality against Trichoplusia ni larvae with partial solubilization at pH 10, strain 4L1 caused 100 % mortality. Toxicity of native strains may come from a novel cry gene.

摘要

四种本土菌株(RT7、RT19、RT25 和 RT25)和一株苏云金芽孢杆菌参考菌株(4L1)的δ-内毒素(delta-ETX)在生化和分子水平上进行了特征分析,以确定它们对鳞翅目幼虫的潜在毒性活性。通过两相系统纯化 delta-ETX 晶体,以确定其形态、摩尔质量、溶解度和对蛋白酶的抗性。还测定了毒性活性和 cry 基因含量。来自本土菌株的晶体呈现多面体形、不规则形和立方体形,而来自 4L1 的晶体则呈双锥形。检测到七种估计摩尔质量约为 30-134 kDa 的蛋白质作为本土 delta-ETX 的主要成分。只有来自 4L1、RT24 和 RT25 的晶体在 pH>12.0 时完全溶解。所有菌株的晶体均产生胰蛋白酶抗性肽。在本土菌株中未发现与鳞翅目昆虫毒性相关的任何 cry 基因(cry1、cry2、cry9);然而,4L1 菌株含有 cry1 和 cry2 基因。菌株 RT19 和 RT25 在 pH 10 时部分溶解时对烟粉虱幼虫有显著致死率,4L1 菌株导致 100%的死亡率。本土菌株的毒性可能来自一种新型的 cry 基因。

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