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Situation of Chitinase Research and Developmental Prospects

机译:几丁质酶的研究现状与发展前景

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Chitin, next to cellulose, is one of the most abundant bioplymers found in nature. It is a β-1,4 polymer of N-acetylglucosamine (GLcNAc), Chitin is the main structural material in the cell walls of most groups of fungi and in the exoskeletions of many insects and crustaceans. There are about 100 millions ton of chitin formed in one year on earth. With special physico-chemical and physiological properties, chitin, chitooligosaccharides and its derivatives have been proved very important for regulating the functions of human body. Chitin can be degraded into N-acetylglucosamine by chitinase (EC3. 2. 1.14) endolytically or exolytically .Chitinase are produced by a wide range of organisms:bacteria, plants and animals. Bacterial chitinases play an important role in the digestion and recycling of chitin in nature. Recently, scientists focus on increasing the yield and activity of chitinase by genetic engineering and cloning of microorganisms and plants.Many microbial chitinase genes have been cloned and sequenced. Transgenic plants with chitinase gene proved to be effective biocontrol agents against pathogen of plants and resistance to nematode and insects. This paper described the characterization of microbial chitinase and cloning of chitinase genes. The application of chitinase into the defense against pathogens of plants.the effects of chitinase and its derivatives on human health and developmental prospects were also discussed.
机译:几丁质紧随纤维素,是自然界中最丰富的生物聚合体之一。它是N-乙酰氨基葡萄糖(GLcNAc)的β-1,4聚合物,几丁质是大多数真菌细胞壁以及许多昆虫和甲壳类动物骨骼的主要结构材料。一年中地球上形成了约1亿吨甲壳质。几丁质,壳寡糖及其衍生物被证明具有特殊的理化和生理特性,对调节人体功能非常重要。几丁质可以被几丁质酶(EC3.2.1.14)内切或外切降解为N-乙酰氨基葡萄糖。几丁质酶是由多种生物体产生的:细菌,植物和动物。细菌几丁质酶在自然界中几丁质的消化和再循环中起着重要作用。最近,科学家致力于通过基因工程和微生物和植物的克隆来提高几丁质酶的产量和活性。许多微生物几丁质酶基因已经被克隆和测序。具有几丁质酶基因的转基因植物被证明是对抗植物病原体以及对线虫和昆虫的抗性的有效生物防治剂。本文描述了微生物几丁质酶的特性和几丁质酶基因的克隆。讨论了几丁质酶在植物病原体防御中的应用。探讨了几丁质酶及其衍生物对人体健康的影响及发展前景。

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