Kurt A, Ozkan M, Ozcengiz G
Biology Department, Middle East Technical University, Ankara, Turkey.
Lett Appl Microbiol. 2005;41(4):303-8. doi: 10.1111/j.1472-765X.2005.01776.x.
The study aimed at increasing Cry3Aa delta-endotoxin production by a local isolate of Bacillus thuringiensis (B.t. strain Mm2). To this end, different nutritional conditions were tested for their effects on Cry3Aa yields.
Bacillus thuringiensis Mm2 was grown by shaking at 30 degrees C in different media. Samples were taken from the cultures at intervals and used for protein extraction. SDS-PAGE was performed for toxin analysis. Inclusion of inorganic phosphate (Pi) into the Difco's sporulation medium at an increased level of 200 mmol l-1 caused a fivefold increase (from 3 to 15.6 microg ml-1) in toxin production. Omission of FeSO4 from the medium decreased this yield by half. Resuspension experiments suggested catabolite repression of toxin biosynthesis by glucose. The inclusion of high Pi invariably increased toxin synthesis, even in the absence of sugars.
Inorganic phosphate had the most striking effect on toxin biosynthesis. Iron effect was found to be unique to our isolate whereas Pi effect seemed to be common to the biosynthesis of Cry3Aa-type toxins. Stimulation of toxin synthesis by Pi did not seem to represent a relief from glucose repression.
Bacillus thuringiensis is the most versatile biopesticide for use in pest management. Regarding cost-effectiveness of related fermentations, high Pi supplement drastically increases Coleoptera-specific toxin synthesis.
本研究旨在提高苏云金芽孢杆菌本地分离株(Bt菌株Mm2)的Cry3Aaδ-内毒素产量。为此,测试了不同营养条件对Cry3Aa产量的影响。
苏云金芽孢杆菌Mm2在30℃下于不同培养基中振荡培养。每隔一段时间从培养物中取样用于蛋白质提取。采用SDS-PAGE进行毒素分析。在Difco芽孢形成培养基中添加浓度增至200 mmol l-1的无机磷酸盐(Pi),可使毒素产量提高五倍(从3μg ml-1增至15.6μg ml-1)。培养基中省略FeSO4会使产量减半。重悬实验表明葡萄糖对毒素生物合成有分解代谢物阻遏作用。即使在无糖情况下,高Pi的添加也总是会增加毒素合成。
无机磷酸盐对毒素生物合成的影响最为显著。发现铁的影响是我们分离株所特有的,而Pi的影响似乎是Cry3Aa型毒素生物合成所共有的。Pi对毒素合成的刺激似乎并非是从葡萄糖阻遏中解脱出来。
苏云金芽孢杆菌是用于害虫管理的最通用的生物农药。就相关发酵的成本效益而言,高Pi补充剂可大幅提高鞘翅目特异性毒素的合成。