[Objective] The paper was to study the possible mechanism of chitinase gene. [Method] The chitinase gene with inhibitory effect against a variety of pathogenic fungi was cloned and analyzed in this study. [Result] The...[Objective] The paper was to study the possible mechanism of chitinase gene. [Method] The chitinase gene with inhibitory effect against a variety of pathogenic fungi was cloned and analyzed in this study. [Result] The genome of HAS strain contained an ORF of 834 bp. The homology of coding protein corresponding to ORF with chitosanase [Bacillus subtilis subsp. subtilis str. 168](ref|NP_390566.1) was the highest of 98%(272/277).[Conclusion]Through the analysis of amino acid sequence and secondary structure of the protease, tertiary structure prediction and analysis, HAS strain may play a pivotal role in controlling Sporisorium scitaminea Syd.展开更多
基金Supported by Natural Science Foundation of China(31471555)National Key Research and Development Program "Integrated Research and Demonstration of Fertilizer and Pesticide Reduction Technology for Featured Cash Crops"(2018YFD0201100)
文摘[Objective] The paper was to study the possible mechanism of chitinase gene. [Method] The chitinase gene with inhibitory effect against a variety of pathogenic fungi was cloned and analyzed in this study. [Result] The genome of HAS strain contained an ORF of 834 bp. The homology of coding protein corresponding to ORF with chitosanase [Bacillus subtilis subsp. subtilis str. 168](ref|NP_390566.1) was the highest of 98%(272/277).[Conclusion]Through the analysis of amino acid sequence and secondary structure of the protease, tertiary structure prediction and analysis, HAS strain may play a pivotal role in controlling Sporisorium scitaminea Syd.