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Ochratoxin degradation and adsorption caused by astaxanthin-producing yeasts

机译:产生虾青素的酵母引起ch曲毒素的降解和吸附

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Ochratoxin degrading and adsorbing activities of Phaffia rhodozyma and Xanthophyllomyces dendrorhous isolates were tested. P. rhodozyma CBS 5905 degraded more than 90% of ochratoxin A (OTA) in 15 days at 20℃. The data presented indicate that P. rhodozyma is able to convert OTA to ochratoxin α, and this conversion is possibly mediated by an enzyme related to carboxypeptidases. Chelating agents like EDTA and 1,10-phenanthroline inhibited OTA degradation caused by P. rhodozyma indicating that the carboxypeptidase is a metalloprotease, similarly to carboxypeptidase A. The temperature optimum of this enzyme was found to be above 30℃, which is much higher than the temperature optimum for growth of P. rhodozyma cells, which is around 20℃. The enzyme responsible for ochratoxin degradation was found to be cell-bound. Besides, both viable and heat-treated (dead) P. rhodozyma cells were also able to adsorb significant amounts (up to 250 ng ml~(-1)) of OTA. Heat treatment enhanced OTA adsorbing activities of the cells. Further studies are in progress to identify the enzyme responsible for OTA degradation in P. rhodozyma.
机译:测试了ch草夫酵母和叶黄腐菌的isolate曲霉毒素的降解和吸附活性。 Rhodozyma CBS 5905在20℃的15天内降解了90%以上的曲霉毒素A(OTA)。呈现的数据表明,假单胞菌能够将OTA转化为曲霉毒素α,这种转化可能是由与羧肽酶相关的酶介导的。螯合剂如EDTA和1,10-菲咯啉可抑制由假单胞菌引起的OTA降解,这表明羧肽酶是一种金属蛋白酶,与羧肽酶A相似。发现该酶的最适温度在30℃以上,远高于红假单胞菌细胞生长的最佳温度约为20℃。发现负责曲毒素降解的酶是细胞结合的。此外,活的和经过热处理的(死的)红假单胞菌细胞也都能够吸附大量(高达250 ng ml〜(-1))的OTA。热处理增强了细胞的OTA吸附活性。进一步的研究正在进行中,以鉴定引起红假单胞菌中OTA降解的酶。

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