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1株油茶病害拮抗真菌的鉴定、生物学特性及拮抗作用研究 被引量:9
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作者 魏蜜 路露 +3 位作者 李春琪 傅本重 李国元 王立华 《河南农业科学》 CSCD 北大核心 2016年第8期74-80,共7页
为了给油茶病害的生物防治提供科学依据,从油茶根部土壤分离获得1株能拮抗油茶主要病害的真菌F217-3。依据该菌株的形态特征,并结合全自动微生物鉴定系统及r DNA-ITS序列分析,将其鉴定为草酸青霉(Penicilium oxalicum)。对其生物学特... 为了给油茶病害的生物防治提供科学依据,从油茶根部土壤分离获得1株能拮抗油茶主要病害的真菌F217-3。依据该菌株的形态特征,并结合全自动微生物鉴定系统及r DNA-ITS序列分析,将其鉴定为草酸青霉(Penicilium oxalicum)。对其生物学特性研究结果表明:该菌株在查氏培养基上生长最佳,碳源和氮源分别以蔗糖和尿素最适宜,生长适温为28℃,致死温度为65℃,在p H值为3~10条件下均生长良好,其中最适p H值是4~7,通气与否对菌丝生长无明显影响,但光照24 h条件下菌丝生长较差。平板对峙试验结果表明,F217-3对油茶炭疽病菌(C.nicotianae)、油茶软腐病菌(A.camellia)、黑斑病菌(A.alternate)和溃疡病菌(B.dothidea)的抑菌率均达到90%以上,可抑制油茶胶孢炭疽病菌、黑斑病菌分生孢子产生,抑制或致畸油茶炭疽病菌、溃疡病菌和叶斑病菌菌丝,是一株具有广谱拮抗作用的生防菌株。 展开更多
关键词 草酸青霉 鉴定 生物学特性 油茶病害 拮抗作用
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一株软腐病拮抗真菌的鉴定及生物学特性研究 被引量:3
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作者 魏蜜 路露 +3 位作者 张伟 傅本重 王立华 李国元 《北方园艺》 CAS 北大核心 2016年第15期100-104,共5页
以从白菜软腐病根部土壤分离获得的1株能拮抗细菌性软腐病的拮抗真菌为试材,以平板对峙培养其抑菌圈达(37.7±2.2)mm,白菜离体叶片防效可达75%,依据形态特征结合rDNA-ITS序列分析,将获得的拮抗真菌鉴定为草茎点霉,并命名为Phoma h... 以从白菜软腐病根部土壤分离获得的1株能拮抗细菌性软腐病的拮抗真菌为试材,以平板对峙培养其抑菌圈达(37.7±2.2)mm,白菜离体叶片防效可达75%,依据形态特征结合rDNA-ITS序列分析,将获得的拮抗真菌鉴定为草茎点霉,并命名为Phoma herbarum F217-1,并研究了其生物学特性。结果表明:该菌株在马铃薯蔗糖培养基(PSA)上生长最佳,碳源和氮源以葡萄糖和硝酸钠较适宜,生长适温为28℃,致死温度为55℃,在pH 3~10条件下均生长良好,其最适pH 5~8,通气条件对草茎点霉菌丝生长均无明显影响,但光照24h条件下菌丝生长较差。 展开更多
关键词 草茎点霉 鉴定 生物学特性 软腐病 拮抗作用
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Screening and identification of cellulose-degradation strain M1 and its characteristics of cellulase 被引量:1
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作者 HUANG Jin-yong WANG Mei-rong WANG Bing 《Journal of Life Sciences》 2009年第9期21-26,33,共7页
In this paper, in order to get the target microbe which has high cellulose bio-degradation ability, we collected soil samples from environment rich in cellulose. Carboxymethyl cellulose sodium gel plate and filter pap... In this paper, in order to get the target microbe which has high cellulose bio-degradation ability, we collected soil samples from environment rich in cellulose. Carboxymethyl cellulose sodium gel plate and filter paper plate were used for microbe screening, and finally we got a strain named MI which has the highest cellulase producing ability, and it has been identified as Penicilium oxalicum by morphological and molecular biological identification. We have studied cellulose degradation ability of this strain under different conditions such as pH value, temperature and inoculating time. The results showed that CMCase which belongs to acid enzyme, could achieve its maximum enzyme activity 489.96 U/ml when the optimal pH value was 4. The FPAase could achieve its maximum enzyme activity 1,595.45 U/ml when the optimal pH value was 4, too. The optimal ferment temperature of CMCase is 50℃ when achieved the maximum of enzyme activity at the second day, whereas the FPAase could reach its tip top on the third day, So the optimal ferment temperature of FPAase is also 50℃. 展开更多
关键词 cellulose degradation penicilium oxalicum SCREENING
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