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黄曲霉毒素在黄曲霉和寄生曲霉分生孢子及菌核中的真菌内部分布。

Intrafungal distribution of aflatoxins among conidia and sclerotia of Aspergillus flavus and Aspergillus parasiticus.

作者信息

Wicklow D T, Shotwell O L

出版信息

Can J Microbiol. 1983 Jan;29(1):1-5. doi: 10.1139/m83-001.

Abstract

This research examines the distribution of aflatoxins among conidia and sclerotia of toxigenic strains of Aspergillus flavus Link and Aspergillus parasiticus Speare cultured on Czapek agar (21 days, 28 degrees C). Total aflatoxin levels in conidia and sclerotia varied considerably both within (intrafungal) and among strains. Aspergillus flavus NRRL 6554 accumulated the highest levels of aflatoxin (conidia: B1, 84000 ppb; G1, 566000 ppb; sclerotia: B1, 135000 ppb; G1, 968000 ppb). Substantial aflatoxin levels in conidia could place at risk those agricultural workers exposed to dust containing large numbers of A. flavus conidia. Cellular ratios of aflatoxin B1 to aflatoxin G1 were nearly identical in conidia and sclerotia even though levels of total aflatoxins in these propagule types may have differed greatly. Aflatoxin G1 was detected in sclerotia of all A. flavus strains but in the conidia of only one strain. Each of the A. parasiticus strains examined accumulated aflatoxin G1 in both sclerotia and conidia. These results are examined in the context of current evolutionary theory predicting an increase in the chemical defense systems of fungal sclerotia, propagules critical to the survival of these organisms.

摘要

本研究检测了在查氏琼脂培养基上培养21天(28摄氏度)的黄曲霉Link和寄生曲霉Speare产毒菌株的分生孢子和菌核中黄曲霉毒素的分布情况。分生孢子和菌核中的总黄曲霉毒素水平在菌株内部(真菌内)和不同菌株之间差异很大。黄曲霉NRRL 6554积累的黄曲霉毒素水平最高(分生孢子:B1,84000 ppb;G1,566000 ppb;菌核:B1,135000 ppb;G1,968000 ppb)。分生孢子中大量的黄曲霉毒素可能会使接触含有大量黄曲霉分生孢子粉尘的农业工人面临风险。尽管这些繁殖体类型中的总黄曲霉毒素水平可能有很大差异,但分生孢子和菌核中黄曲霉毒素B1与黄曲霉毒素G1的细胞比例几乎相同。在所有黄曲霉菌株的菌核中都检测到了黄曲霉毒素G1,但仅在一个菌株的分生孢子中检测到。所检测的每一株寄生曲霉菌株在菌核和分生孢子中都积累了黄曲霉毒素G1。本文在当前进化理论的背景下对这些结果进行了探讨,该理论预测真菌菌核的化学防御系统将会增强,而菌核是这些生物体生存的关键繁殖体。

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