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Microbial Degradation of Lobster Shells to Extract Chitin Derivatives for Plant Disease Management

机译:龙虾壳的微生物降解以提取几丁质衍生物用于植物病害管理

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Biodegradation of lobster shells by chitinolytic microorganisms are an environment safe approach to utilize lobster processing wastes for chitin derivation. In this study, we report degradation activities of two microbes, “S223” and “S224” isolated from soil samples that had the highest rate of deproteinization, demineralization and chitinolysis among ten microorganisms screened. Isolates S223 and S224 had 27.3 and 103.8 protease units mg~(-1)protein and 12.3 and 11.2 μg ml~(-1)of calcium in their samples, respectively, after 1 week of incubation with raw lobster shells. Further, S223 contained 23.8 μg ml~(-1)of N -Acetylglucosamine on day 3, while S224 had 27.3 μg ml~(-1)on day 7 of incubation with chitin. Morphological observations and 16S rDNA sequencing suggested both the isolates were Streptomyces . The culture conditions were optimized for efficient degradation of lobster shells and chitinase (~30 kDa) was purified from crude extract by affinity chromatography. The digested lobster shell extracts induced disease resistance in Arabidopsis by induction of defense related genes ( PR1 > 500-fold, PDF1.2 > 40-fold) upon Pseudomonas syringae and Botrytis cinerea infection. The study suggests that soil microbes aid in sustainable bioconversion of lobster shells and extraction of chitin derivatives that could be applied in plant protection.
机译:用几丁质分解微生物对龙虾壳进行生物降解是一种利用龙虾加工废料进行甲壳素衍生的环境安全方法。在这项研究中,我们报道了从土壤样品中分离出的两种微生物的降解活性,即“ S223”和“ S224”,这些土壤样品在十种微生物中具有最高的去蛋白,脱矿质和壳多糖分解率。与生龙虾壳孵育1周后,分离物S223和S224的样品中分别具有27.3和103.8蛋白酶单位mg〜(-1)蛋白以及12.3和11.2μgml〜(-1)钙。此外,在第3天,S223含有23.8μg/ mL(-1)的N-乙酰基葡糖胺,而在与壳多糖孵育的第7天,S224具有27.3μg/ mL(-1)。形态学观察和16S rDNA测序表明两种菌株均为链霉菌。优化培养条件以有效降解龙虾壳,并通过亲和层析从粗提物中纯化几丁质酶(〜30 kDa)。消化的龙虾壳提取物在丁香假单胞菌和灰葡萄孢感染后通过诱导防御相关基因(PR1> 500倍,PDF1.2> 40倍)诱导拟南芥的抗病性。研究表明,土壤微生物有助于龙虾壳的可持续生物转化和几丁质衍生物的提取,可用于植物保护。

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