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代料栽培黑木耳田间管理阶段绿色木霉侵染原因及防治的研究 被引量:1
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作者 陈晓东 《中国林副特产》 2004年第2期43-45,共3页
关键词 代料栽培 田间管理 绿色木霉污染 原因分析 防治
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基质pH值对木霉发生的影响
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作者 姜华芳 《食用菌》 1997年第1期36-36,共1页
由木霉(Trichoderma)引起香菇及其它食用菌的污染,从事食用菌工作者人人皆知,然而造成木霉严重发生的条件——诸如温度、pH值、环境湿度及基质含水量、环境通透性及空气成份、紫外光照等等因素,国内报道不多。笔者就引起木霉发生的一系... 由木霉(Trichoderma)引起香菇及其它食用菌的污染,从事食用菌工作者人人皆知,然而造成木霉严重发生的条件——诸如温度、pH值、环境湿度及基质含水量、环境通透性及空气成份、紫外光照等等因素,国内报道不多。笔者就引起木霉发生的一系列问题作了一些初步研究,本文就培养基的pH值对本霉菌丝的生长及孢子产生的影响作一报道。 展开更多
关键词 食用菌类 木霉污染 基质pH值
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Screening,Identification,Metal-tolerance Cadmium Biosorption and Application of a Cadmium-Resistant Trichoderma asperellum
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作者 DENG Ya-nan PENG Di +3 位作者 WANG Li-feng ZHOU Xiao-mao MAN Yi-long BAI Lian-yang 《Agricultural Science & Technology》 CAS 2018年第4期19-28,共10页
This study was designed to screen and identify cadmium-resistant fungi and characterize its cadmium adsorption.A cadmium-resistant strain(HD228)was isolated from cadmium-polluted paddy soil by using the Cd^2+concentra... This study was designed to screen and identify cadmium-resistant fungi and characterize its cadmium adsorption.A cadmium-resistant strain(HD228)was isolated from cadmium-polluted paddy soil by using the Cd^2+concentration gradient pressure domestication method.According to the morphological characteristics and the analysis of internal transcribed spacers(ITS)region gene sequence phylogenesis,the strain was identified as Trichoderma asperellum.This strain was resistant to Cd at 22 mmol/L with a Cd adsorption rate of up to 79.88%,and it was also resistant to other heavy metals such as Pb,Zn and Cu.The colony diameter decreased as the heavy metal concentration increased,and the colony was out-of-shape when the Cd^2+concentration was 20 mmol/L.The strain HD228 was found to grow well at pH 4 to 8 and a temperature between 20 and 35℃.The optimal growth conditions were established to be pH 5 and temperature of 30℃.Fermented liquid of the strain is neither disease-causing nor inhibitory to rice seedling emergence,and indeed it improves rice seedling and root growth and enhances rice’s detoxification ability under Cd stress.Thus,the Cd-resistant fungus HD228 has the potential for the treatment of Cd-polluted rice paddies. 展开更多
关键词 Paddy soil Cd pollution Trichoderma asperellum Cd adsorption
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