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首页> 外文期刊>Toxins >Extracellular Xylanolytic and Pectinolytic Hydrolase Production by Aspergillus flavus Isolates Contributes to Crop Invasion
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Extracellular Xylanolytic and Pectinolytic Hydrolase Production by Aspergillus flavus Isolates Contributes to Crop Invasion

机译:黄曲霉分离物产生的细胞外木聚糖水解和果胶水解酶有助于作物入侵。

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Several atoxigenic Aspergillus flavus isolates, including some being used as biocontrol agents, and one toxigenic isolate were surveyed for the ability to produce extracellular xylanolytic and pectinolytic hydrolases. All of the tested isolates displayed good production of endoxylanases when grown on a medium utilizing larch xylan as a sole carbon substrate. Four of the tested isolates produced reasonably high levels of esterase activity, while the atoxigenic biocontrol agent NRRL 21882 isolate esterase level was significantly lower than the others. Atoxigenic A. flavus isolates 19, 22, K49, AF36 (the latter two are biocontrol agents) and toxigenic AF13 produced copious levels of pectinolytic activity when grown on a pectin medium. The pectinolytic activity levels of the atoxigenic A. flavus 17 and NRRL 21882 isolates were significantly lower than the other tested isolates. In addition, A. flavus isolates that displayed high levels of pectinolytic activity in the plate assay produced high levels of endopolygalacturonase (pectinase) P2c, as ascertained by isoelectric focusing electrophoresis. Isolate NRRL 21882 displayed low levels of both pectinase P2c and pectin methyl esterase. A. flavus appears capable of producing these hydrolytic enzymes irrespective of aflatoxin production. This ability of atoxigenic isolates to produce xylanolytic and pectinolytic hydrolases mimics that of toxigenic isolates and, therefore, contributes to the ability of atoxigenic isolates to occupy the same niche as A. flavus toxigenic isolates.
机译:调查了几种产毒素的黄曲霉分离株,包括一些被用作生物防治剂,以及一种产毒分离株产生胞外木聚糖水解酶和果胶水解酶的能力。当在以落叶松木聚糖为唯一碳底物的培养基上生长时,所有测试的分离株均显示出良好的内切木聚糖酶生产。测试的四个分离株产生的酯酶活性相当高,而产毒生物防治剂NRRL 21882分离酯酶的含量则明显低于其他分离株。当在果胶培养基上生长时,产毒的黄曲霉分离株19、22,K49,AF36(后两个是生物防治剂)和产毒的AF13产生了大量的果胶分解活性。产毒黄曲霉17和NRRL 21882分离物的果胶分解活性水平显着低于其他测试的分离物。此外,通过等电聚焦电泳确定,在平板测定中显示高水平的果胶分解活性的黄曲霉分离物产生高水平的内聚半乳糖醛酸酶(果胶酶)P2c。分离株NRRL 21882显示出低水平的果胶酶P2c和果胶甲基酯酶。黄曲霉菌似乎能够产生这些水解酶,而与黄曲霉毒素的产生无关。产毒分离株产生木聚糖水解和果胶水解酶的能力模仿产毒分离株的能力,因此有助于产毒分离株占据与黄曲霉产毒分离株相同的生态位。

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