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黄曲霉毒素抗性基因型玉米籽粒中轮枝镰孢菌GUS菌株的生长抑制

Growth inhibition of a Fusarium verticillioides GUS strain in corn kernels of aflatoxin-resistant genotypes.

作者信息

Brown R L, Cleveland T E, Woloshuk C P, Payne G A, Bhatnagar D

机构信息

Southern Regional Research Center, US Department of Agriculture, Agricultural Research Service, New Orleans, LA 70179, USA.

出版信息

Appl Microbiol Biotechnol. 2001 Dec;57(5-6):708-11. doi: 10.1007/s00253-001-0838-y.

Abstract

Two corn genotypes, GT-MAS:gk and MI82, resistant to Aspergillus flavus infection/aflatoxin contamination, were tested for their ability to limit growth of Fusarium verticillioides. An F. verticillioides strain was transformed with a beta-glucuronidase (GUS) reporter gene (uidA) construct to facilitate fungal growth quantification and then inoculated onto endosperm-wounded and non-wounded kernels of the above-corn lines. To serve as a control, an A. flavus strain containing the same reporter gene construct was inoculated onto non-wounded kernels of GT-MAS:gk. Results showed that, as in a previous study, non-wounded GT-MAS:gk kernels supported less growth (six- to ten-fold) of A. flavus than did kernels of a susceptible control. Also, non-wounded kernels of GT-MAS:gk and M182 supported less growth (two- to four-fold) of F. verticillioides than did susceptible kernels. Wounding, however, increased F. verticillioides infection of MI82, but not that of GT-MAS:gk. This is in contrast to a previous study of A. flavus, where wounding increased infection of GT-MAS:gk rather than M182 kernels. Further study is needed to explain genotypic variation in the kernel response to A. flavus and F. verticillioides kernel infections. Also, the potential for aflatoxin-resistant corn lines to likewise inhibit growth of F. verticillioides needs to be confirmed in the field.

摘要

对两种抗黄曲霉感染/黄曲霉毒素污染的玉米基因型GT-MAS:gk和MI82,测试了它们限制轮枝镰孢生长的能力。用β-葡萄糖醛酸酶(GUS)报告基因(uidA)构建体转化一株轮枝镰孢菌株,以促进真菌生长定量,然后将其接种到上述玉米品系的胚乳受伤和未受伤的籽粒上。作为对照,将含有相同报告基因构建体的黄曲霉菌株接种到GT-MAS:gk的未受伤籽粒上。结果表明,如先前研究一样,未受伤的GT-MAS:gk籽粒支持黄曲霉生长(六至十倍)比易感对照的籽粒少。此外,GT-MAS:gk和M182的未受伤籽粒支持轮枝镰孢生长(两至四倍)比易感籽粒少。然而,伤口增加了MI82对轮枝镰孢的感染,但未增加GT-MAS:gk的感染。这与先前对黄曲霉的研究相反,在该研究中,伤口增加了GT-MAS:gk而非M182籽粒的感染。需要进一步研究来解释籽粒对黄曲霉和轮枝镰孢籽粒感染反应的基因型变异。此外,抗黄曲霉毒素玉米品系同样抑制轮枝镰孢生长的潜力需要在田间得到证实。

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