中国生物防治
中國生物防治
중국생물방치
CHINESE JOURNAL OF BIOLOGICAL CONTROL
2009年
4期
339-347
,共9页
李志芳%顾英琦%莫明和%何月秋
李誌芳%顧英琦%莫明和%何月鞦
리지방%고영기%막명화%하월추
韦氏芽孢杆菌%松材线虫%挥发性物质%Plackett-Burman设计%响应曲面法
韋氏芽孢桿菌%鬆材線蟲%揮髮性物質%Plackett-Burman設計%響應麯麵法
위씨아포간균%송재선충%휘발성물질%Plackett-Burman설계%향응곡면법
Bacillus weihenstephanensis%Bursaphelenchus xylophilus%volatile substance%Plackett-Bur-man design%response surface methodology
采用液体培养,研究了18种碳源、18种氮源成分对韦氏芽孢杆菌Bacillus weihenstepha-nensis菌株MC67产挥发性物质杀线虫活性的影响.以单因素分析法,确定了MC67菌株杀线虫活性的最佳碳源和氮源分别为麦芽糖和酵母膏.采用Plackett-Burman设计法,对影响菌株MC67杀线虫活性的主要因素进行筛选,确定影响该菌株发酵液挥发物杀线虫活性的4个重要因子依次为麦芽糖、酵母膏、温度和pH值.采用响应曲面法研究4个显著因子的最佳水平,通过对二次多项回归方程求解得知,当麦芽糖10.6g/L、酵母膏0.66g/L、培养温度29.6℃、pH值6.6时,菌株发酵液挥发物杀线虫活性的预期值为99.1%.对模型培养基验证的结果表明,该菌株对松材线虫的杀线虫活性为98.2%,接近预期值.
採用液體培養,研究瞭18種碳源、18種氮源成分對韋氏芽孢桿菌Bacillus weihenstepha-nensis菌株MC67產揮髮性物質殺線蟲活性的影響.以單因素分析法,確定瞭MC67菌株殺線蟲活性的最佳碳源和氮源分彆為麥芽糖和酵母膏.採用Plackett-Burman設計法,對影響菌株MC67殺線蟲活性的主要因素進行篩選,確定影響該菌株髮酵液揮髮物殺線蟲活性的4箇重要因子依次為麥芽糖、酵母膏、溫度和pH值.採用響應麯麵法研究4箇顯著因子的最佳水平,通過對二次多項迴歸方程求解得知,噹麥芽糖10.6g/L、酵母膏0.66g/L、培養溫度29.6℃、pH值6.6時,菌株髮酵液揮髮物殺線蟲活性的預期值為99.1%.對模型培養基驗證的結果錶明,該菌株對鬆材線蟲的殺線蟲活性為98.2%,接近預期值.
채용액체배양,연구료18충탄원、18충담원성분대위씨아포간균Bacillus weihenstepha-nensis균주MC67산휘발성물질살선충활성적영향.이단인소분석법,학정료MC67균주살선충활성적최가탄원화담원분별위맥아당화효모고.채용Plackett-Burman설계법,대영향균주MC67살선충활성적주요인소진행사선,학정영향해균주발효액휘발물살선충활성적4개중요인자의차위맥아당、효모고、온도화pH치.채용향응곡면법연구4개현저인자적최가수평,통과대이차다항회귀방정구해득지,당맥아당10.6g/L、효모고0.66g/L、배양온도29.6℃、pH치6.6시,균주발효액휘발물살선충활성적예기치위99.1%.대모형배양기험증적결과표명,해균주대송재선충적살선충활성위98.2%,접근예기치.
In liquid culture,18 kinds of carbon and 18 kinds of nitrogen resources were selected for best nutritional agents. The effects of nutrition on the volatiles of Bacillus weihenstephanensis strain MC67 with highest nematicidal activity to Bursaphelenchus xylophilus were determined by single factor analysis. The best carbon and nitrogen resources were maltose and yeast extract, respectively. Plackett-Burman design and response surface analysis were used to optimize the medium constituents and fermentation conditions of B. tueihenstephanensis. The important factors were determined as follows: maltose, yeast extract, pH value and temperature. In the second phase of the optimization process, a response surface methodology (RSM) was used to optimize the above critical factors, and to find out the optimal concentration levels and fermentation conditions. By solving the quadratic regression model equation using appropriate statistic methods, the optimal level of the variables were determined as: maltose 10.6 g/L, yeast extract 0.66 g/ L, culture temperature 29.6℃ and pH value 6.6. In the most suitable condition, the nematicidal activity of MC67 could reach to 98.2% , which validated0 the theoretical value 99.1 % .