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内生木霉P3.9菌株的多功能性及其枇杷根腐病的盆栽防效 被引量:20
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作者 鲁海菊 沈云玫 +2 位作者 陶宏征 江涛 王传铭 《西北农业学报》 CAS CSCD 北大核心 2017年第11期1681-1688,共8页
为明确内生木霉P3.9菌株多功能性及其生防潜力,采用菌丝生长速率法、透明圈法、农艺性状观测法、组织分离法、土壤梯度稀释法和盆栽法,分别测定其对不同植物病原菌的抑制率、不同化学农药的耐药性、纤维素及磷的降解能力、促生作用、在... 为明确内生木霉P3.9菌株多功能性及其生防潜力,采用菌丝生长速率法、透明圈法、农艺性状观测法、组织分离法、土壤梯度稀释法和盆栽法,分别测定其对不同植物病原菌的抑制率、不同化学农药的耐药性、纤维素及磷的降解能力、促生作用、在枇杷植株及其根际土壤中的定殖能力和枇杷根腐病的防治效果。结果表明,内生木霉P3.9菌株对7种植物病原菌有不同程度的抑菌作用,其中,对枇杷根腐病菌的抑制作用最强,抑菌率达93%;对5种化学农药有不同程度的耐药性,其中,对硫磺三唑酮的耐药性最高;对纤维素及磷有极强的降解能力;对枇杷植株有促生作用,能定殖于枇杷植株及其根际土壤中,盆栽防治枇杷根腐病效果可达80%。 展开更多
关键词 内生木霉 拮抗作用 耐药性 降解纤维素能力 解磷能力 促生作用 定殖能力
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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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