苏云金芽孢杆菌局部分离物d-内毒素的筛选及部分鉴定

Kimani Peter Githaiga
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引用次数: 2

摘要

摘要张建军,张建军,张建军,等。2018。苏云金芽孢杆菌局部分离物d-内毒素的筛选及部分鉴定。[J] .中国生物医学工程学报,17(2):391 - 391。长期使用合成化学农药对环境不利,导致害虫迅速产生抗药性。肯尼亚在控制鳞翅目害虫方面具有未开发的潜力,方法是利用来自当地天然存在的苏云金芽孢杆菌(Bacillus thuringiensis Berliner, Bt)分离株的蛋白质三角洲内毒素。本研究试图鉴定肯尼亚部分Bt分离株中Cry1和/或Cry2蛋白的杀虫蛋白。它还旨在测试它们在不同温度下的功效,以及它们对一种侵入性和普遍存在的鳞翅目茎螟虫的特异性。采用泡沫浮选和离心分离的方法从20株本地Bt分离株的培养物中分离和纯化了δ内毒素晶体。采用Bradford法对悬浮液中的总蛋白进行定量,蛋白质产量近似为3.14±0.084 mg/mL营养肉汤培养物,纯度为54.8%±15.3%。叶片浸渍法测定d-内毒素对褐藻的抑菌效果。结果表明,菌株Bt 44和Bt 48对1龄幼虫的d-内毒素结晶作用最强,72 h后死亡率分别为62.6%和64.8%。在24°C、27°C和31°C、0.01 mg/mL、0.1 mg/mL和1.0 mg/mL的温度下,对72 h后d-内毒素浓度和温度对幼虫死亡率的影响进行了研究。所得LC50分别为52.3µg/mL和42.0µg/mL,而Bt 44和Bt 48的LT50分别为76.7h和60.9h。24°C和31°C比27°C的效果更高,这表明这些d-内毒素在温度高于温带地区的当地条件下是可耐受的。Bt 48的d内毒素浓度与温度的关系显著,Bt 44的d内毒素浓度与温度的关系不显著。d-内毒素的主要蛋白质成分分子量为Mr ~ 130 kDa,产生Mr ~ 70 kDa的胰蛋白酶抗性核心。Cry蛋白分析显示,bt44内毒素中Cry1多于bt48 -内毒素,两者均未发现Cry2。然而,利用PCR技术对cry1基因和cry2基因进行分析,发现Bt 44的DNA中存在cry1和cry2基因,而Bt 51的DNA中没有cry1和cry2基因,而Bt 51是害虫毒性试验的阴性对照。色谱分析显示,bt44和bt48的d-内毒素洗脱谱存在一定差异,表明晶体中可能存在不同类型和数量的d-内毒素,甚至可能存在新的蛋白质。这些结果表明,这两株本地Bt分离株表达Cry1蛋白,Cry2蛋白很可能具有控制褐藻的作用,因此可能成为开发生物农药防治褐藻的?内毒素的有希望的来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Screening and partial characterization of d-endotoxins from some local Bacillus thuringiensis isolates for insecticidal activity against the spotted stem borer
Abstract. Kimani PG, Nyambaka H, Kasina M. 2018. Screening and partial characterization of d-endotoxins from some local Bacillus thuringiensis isolates for insecticidal activity against the spotted stem borer. Biofarmasi J Nat Prod Biochem 17: 21-38. Prolonged use of synthetic chemical pesticides is environmentally undesirable, causing the rapid development of resistance among insect pests. Kenya has unexplored potential in controlling lepidopteran pests by using proteinous delta-endotoxins sourced from local isolates of a naturally occurring bacterium, Bacillus thuringiensis Berliner (Bt). This study attempted to identify the insecticidal proteins in some Kenyan Bt isolates, characteristic of Cry1 and/or Cry2 proteins. It also aimed to test their efficacy as affected by different temperatures and their specificity on an invasive and prevalent lepidopteran stem borer, Chilo partellus (Swinhoe). Delta-endotoxin crystals were isolated and purified from cultures of twenty unidentified local Bt isolates using froth floatation and centrifugation. Total protein in the resulting suspensions was quantified using the Bradford assay method, and the approximate protein yield was 3.14 ±0.084 mg/mL of nutrient broth culture with a purity level of 54.8 % ±15.3 %. Leaf-dip bioassays used for testing the efficacy of the d-endotoxins against C. partellus. Among the isolates evaluated, Bt 44 and Bt 48 had the most potent d-endotoxin crystals towards the 1st instar larvae, leading to mortality of 62.6 % and 64.8 % respectively after 72 h. The effect of the d-endotoxins' concentration and temperature on larval mortality was examined for 72 hours at temperatures of 24°C, 27°C and 31°C and levels of 0.01 mg/mL, 0.1 mg/mL and 1.0 mg/mL. The resulting LC50 was 52.3 µg/mL and 42.0 µg/mL, while LT50 values were 76.7h and 60.9h for Bt 44 and Bt 48, respectively. Higher efficacy found at 24°C and 31°C than at 27°C, an indication that these d-endotoxins are tolerable for local conditions where temperatures are higher than in temperate regions. The relationship between concentration and temperature was significant for d-endotoxins of Bt 48 but not those of Bt 44. A major protein component of the d-endotoxins had a molecular weight Mr ~ 130 kDa, which generates a trypsin-resistant core of Mr ~ 70 kDa. Cry protein analysis detected more Cry1 in Bt 44 than Bt 48 ?-endotoxins and no Cry2 in either. However, cry gene analysis using PCR detected the presence of both cry1 and cry2 genes in the DNA of Bt 44 but none in Bt 51, a negative control from toxicity tests against the pest. The chromatographic analysis revealed some differences in the elution profiles of d-endotoxins of both Bt 44 and Bt 48, an indication that there may be different types and amounts of the Cry toxins in the crystals or even novel proteins. These findings indicate that the two local Bt isolates expressed Cry1, and probably Cry2 proteins can control C. partellus and may, therefore, become promising sources for ?-endotoxins for biopesticide development for controlling the pest.
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