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海洋细菌Agarivorans sp.HZ105的琼胶降解酶系

林伯坤 陆国永 宋燕 谢锐权 陈鸿霖 胡忠

生物技术通报Issue(1):160-166,7.
生物技术通报Issue(1):160-166,7.DOI:10.13560/j.cnki.biotech.bull.1985.2015.01.024

海洋细菌Agarivorans sp.HZ105的琼胶降解酶系

The Agar-degrading Enzymatic System of Marine Bacterium Agarivorans sp.HZ105

林伯坤 1陆国永 2宋燕 3谢锐权 3陈鸿霖 4胡忠1

作者信息

  • 1. 汕头大学医学院,汕头 515041
  • 2. 汕头大学理学院生物学系,汕头 515063
  • 3. 汕头大学理学院生物学系,汕头 515063
  • 4. 汕头市雅壳生物科技有限公司,汕头 515041
  • 折叠

摘要

Abstract

Three agarase genes(hz1,hz2,hz3)of 2 988 bp, 1 437 bp and 1 362 bp respectively, were cloned from strainAgarivorans sp.HZ105. These three agarase genes(hz1,hz2,hz3)encoded agarase HZ1, HZ3 and HZ4 and belonged to glycoside hydrolase family GH50, GH118 and GH16, respectively. The agarase genes of strain HZ105 were linked with vector pET-32a(+)and then were transfered toEscherichia coliBL21(DE3). These agarase genes were successfully expressed inE. coli cells and their recombinant agarases were prepared. Agarose degradations of the recombinant agarases were studied. Agarase HZ1 could degrade agarose and neoagarooligosaccharides with high degrees of polymerization(8, 10, 12 and 14)into neoagarobiose and neoagarotetraose. Agarase HZ3 digested agarose to produce neoagarooligosaccharides with high degrees of polymerization, while agarase HZ4 decomposed agarose and neoagarooligosaccharides with high degrees of polymerization to yield neoagarotetraose and neoagarohexaose. Therefore, strain HZ105 might produce firstly agarases HZ3 and HZ4 to degrade agarose into neoagarooligosaccharides with high degrees of polymerization, and the products of agarases HZ3 and HZ4 would be then digested into neoagarooligosaccharides with low degrees of polymerization by agarase HZ1 and another agarase(HZ2)from strain HZ105 reported previously by our research group. Strain HZ105 is the first reported strain that produces four agarases and this study is the first report of the agar-degrading enzymatic system in the genusAgarivorans. The results could enrich the knowledge about the bacterial agar-degrading enzymatic system and the roles of the agarases in the system. The application of agarases from strain HZ105 should also benift from this study.

关键词

琼胶酶/基因克隆/Agarivorans/酶系/降解产物

Key words

agarase/gene cloning/Agarivorans/enzymatic system/degradation products

引用本文复制引用

林伯坤,陆国永,宋燕,谢锐权,陈鸿霖,胡忠..海洋细菌Agarivorans sp.HZ105的琼胶降解酶系[J].生物技术通报,2015,(1):160-166,7.

基金项目

国家自然科学基金项目(31200077,41476150),中国博士后科学基金项目(2013M531871),广东省自然科学基金项目(S2012040006279),广东省科技计划项目 ()

生物技术通报

OA北大核心CSCDCSTPCD

1002-5464

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