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小麦籽粒密封储存期间不同酵母菌种的抑霉活性

Mold-inhibitory activity of different yeast species during airtight storage of wheat grain.

作者信息

Adel Druvefors Ulrika, Schnürer Johan

机构信息

Department of Microbiology, Swedish University of Agricultural Sciences (SLU), P.O. Box 7025, SE-750 07 Uppsala, Sweden.

出版信息

FEMS Yeast Res. 2005 Feb;5(4-5):373-8. doi: 10.1016/j.femsyr.2004.10.006.

Abstract

The yeast Pichia anomala J121 inhibits spoilage by Penicillium roqueforti in laboratory and pilot studies with high-moisture wheat in malfunctioning airtight storage. We tested the biocontrol ability of an additional 57 yeast species in a grain mini silo system. Most yeast species grew to CFU levels comparable to that of P. anomala J121 after 14 days of incubation (>10(6) CFU g(-1)). Of the 58 species, 38 (63 strains) had no mold-inhibitory effects (Pen. roqueforti levels >10(5) CFU g(-1)). Among these were 11 species (18 strains) that did not grow on the wheat grain. Several of the non-inhibiting yeast species have previously been reported as biocontrol agents in other postharvest environments. Weak inhibitory activity, reducing Pen. roqueforti levels to between 10(4) and 10(5) CFU g(-1), was observed with 11 species (12 strains). Candida silvicola and Pichia guillermondii reduced Pen. roqueforti to <10(4) CFU g(-1). Candida fennica, Candida pelliculosa, Candida silvicultrix, P. anomala (29 strains), Pichia burtonii, Pichia farinosa and Pichia membranifaciens strongly inhibited Pen. roqueforti (<10(3) CFU g(-1)) in the mini silos, but none had higher biocontrol activity than P. anomala strain J121. This report is the first of biocontrol activity of C. fennica and C. silvicultrix. The ability of 27 yeast species to grow to high CFU values without inhibiting mold growth suggests that nutrient competition may not be the main mode of action of P. anomala J121.

摘要

在实验室和中试研究中,异常毕赤酵母J121能够抑制罗克福青霉对高水分小麦的腐败作用,这些研究是在气密性不佳的密闭储存环境中进行的。我们在小型谷物筒仓系统中测试了另外57种酵母的生物防治能力。大多数酵母在培养14天后,其菌落形成单位(CFU)水平与异常毕赤酵母J121相当(>10⁶ CFU g⁻¹)。在这58个物种中,有38个(63株)没有霉菌抑制作用(罗克福青霉水平>10⁵ CFU g⁻¹)。其中有11个物种(18株)在小麦籽粒上无法生长。此前,有几种无抑制作用的酵母在其他采后环境中被报道为生物防治剂。观察到有11个物种(12株)具有微弱的抑制活性,能将罗克福青霉水平降低到10⁴至10⁵ CFU g⁻¹之间。森林假丝酵母和季也蒙毕赤酵母能将罗克福青霉水平降低到<10⁴ CFU g⁻¹。芬兰假丝酵母、膜醭假丝酵母、森林假丝酵母、异常毕赤酵母(29株)、布氏毕赤酵母、粉状毕赤酵母和膜状毕赤酵母在小型筒仓中对罗克福青霉有强烈抑制作用(<10³ CFU g⁻¹),但没有一种比异常毕赤酵母菌株J121具有更高的生物防治活性。本报告首次报道了芬兰假丝酵母和森林假丝酵母的生物防治活性。27种酵母能够生长到高CFU值但不抑制霉菌生长,这表明营养竞争可能不是异常毕赤酵母J121的主要作用方式。

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