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Cloning of Beauveria bassiana Chitinase Gene Bbchit1 and Its Application To Improve Fungal Strain Virulence

机译:球孢白僵菌几丁质酶基因Bbchit1的克隆及其在提高真菌毒力中的应用

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摘要

Entomopathogenic fungi can produce a series of chitinases, some of which act synergistically with proteases to degrade insect cuticle. However, chitinase involvement in insect fungus pathogenesis has not been fully characterized. In this paper, an endochitinase, Bbchit1, was purified to homogeneity from liquid cultures of Beauveria bassiana grown in a medium containing colloidal chitin. Bbchit1 had a molecular mass of about 33 kDa and pI of 5.4. Based on the N-terminal amino acid sequence, the chitinase gene, Bbchit1, and its upstream regulatory sequence were cloned. Bbchit1 was intronless, and there was a single copy in B. bassiana. Its regulatory sequence contained putative CreA/Crel carbon catabolic repressor binding domains, which was consistent with glucose suppression of Bbchit1. At the amino acid level, Bbchit1 showed significant similarity to a Streptomyces avermitilis putative endochitinase, a Streptomyces coelicolor putative chitinase, and Trichoderma harzianum endochitinase Chit36Y. However, Bbchit1 had very low levels of identity to other chitinase genes previously isolated from entomopathogenic fungi, indicating that Bbchit1 was a novel chitinase gene from an insect-pathogenic fungus. A gpd-Bbchit1 construct, in which Bbchit1 was driven by the Aspergiullus nidulans constitutive promoter, was transformed into the genome of B. bassiana, and three transformants that overproduced Bbchit1 were obtained. Insect bioassays revealed that overproduction of Bbchit1 enhanced the virulence of B. bassiana for aphids, as indicated by significantly lower 50% lethal concentrations and 50% lethal times of the transformants compared to the values for the wild-type strain.
机译:致病真菌可产生一系列几丁质酶,其中一些与蛋白酶协同作用以降解昆虫表皮。然而,几丁质酶参与昆虫真菌的发病机理尚未得到充分表征。在本文中,从在含有胶体几丁质的培养基中生长的球孢白僵菌的液体培养物中纯化了一种内切壳多糖酶Bbchit1,使其具有同质性。 Bbchit1的分子量约为33 kDa,pI为5.4。基于N端氨基酸序列,克隆了几丁质酶基因Bbchit1及其上游调控序列。 Bbchit1是无内含子的,在球孢白僵菌中只有一个拷贝。它的调控序列包含推定的CreA / Crel碳分解代谢阻遏物结合域,这与Bbchit1的葡萄糖抑制是一致的。在氨基酸水平上,Bbchit1与阿维链霉菌推定的内切几丁质酶,链霉菌天蓝色推定的几丁质内切酶和哈茨木霉内切几丁质内切酶Chit36Y相似。但是,Bbchit1与以前从昆虫病原真菌分离的其他几丁质酶基因的同源性很低,这表明Bbchit1是来自昆虫病原真菌的新型几丁质酶基因。 gpd-Bbchit1构建体,其中Bbchit1由构巢曲霉启动子驱动,被转化到球孢白僵菌的基因组中,并获得了三个过量产生Bbchit1的转化体。昆虫生物测定法显示,Bbchit1的过量生产增强了球孢杆菌对蚜虫的毒力,与野生型菌株相比,转化子的致死浓度和致死时间分别显着降低了50%和50%,这表明了Bbchit1对蚜虫的毒性。

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