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Requirement of Simultaneous Assessment of Crystal- and Supernatant-Related Entomotoxic Activities of Bacillus thuringiensis Strains for Biocontrol-Product Development

机译:苏云金芽孢杆菌菌株与晶体和上清液有关的昆虫毒性活性同时评估的生物防治产品开发的要求。

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摘要

Bioinsecticides with lower concentrations of endospores/crystals and without loss of efficiency are economically advantageous for pest biocontrol. In addition to Cry proteins, other Bacillus thuringiensis (Bt) toxins in culture supernatants (SN) have biocontrol potential (e.g., Vip3A, Cry1I, Sip1), whereas others are unwanted (β-exotoxins), as they display widespread toxicity across taxa. A strain simultaneously providing distinct toxin activities in crystals and SN would be desirable for bioinsecticides development; however, strains secreting β-exotoxins should be discarded, independently of other useful entomotoxins. Entomotoxicity of crystals and SN from a Brazilian Bt tolworthi strain (Btt01) was tested against Spodoptera frugiperda to assess the potential for biocontrol-product development based on more than one type of toxin/activity. Tests showed that 107 endospores mL−1 caused >80% of larvae mortality, suggesting Btt01 may be used in similar concentrations as those of other Bt-based biopesticides. When it was applied to cornfields, a significant 60% reduction of larvae infestation was observed. However, bioassays with Btt01 SN revealed a thermostable toxic activity. Physicochemical characterization strongly suggests the presence of unwanted β-exotoxins, with isolate-specific temporal variation in its secretion. Knowledge of the temporal pattern of secretion/activity in culture for all forms of toxins produced by a single strain is required to both detect useful activities and avoid the potential lack of identification of undesirable toxins. These findings are discussed in the contexts of commercial Bt product development, advantages of multiple-activity strains, and care and handling recommended for large-scale fermentation systems.
机译:具有较低浓度的内生孢子/晶体且无效率损失的生物杀虫剂在经济上有利于害虫的生物防治。除Cry蛋白外,培养上清液(SN)中的其他苏云金芽孢杆菌(Bt)毒素具有生物防治潜力(例如Vip3A,Cry1I,Sip1),而其他毒素则不需要(β-外毒素),因为它们在整个分类群中均显示出广泛的毒性。同时在晶体和SN中提供独特毒素活性的菌株对于生物杀虫剂的开发将是理想的。然而,分泌β-外毒素的菌株应独立于其他有用的肠毒素而丢弃。测试了巴西Bt tolworthi菌株(Btt01)的晶体和SN的昆虫毒性,对节食夜蛾(Spodoptera frugiperda)进行了测试,以评估基于多种毒素/活性类型的生物防治产品开发的潜力。测试表明,10 7 内生孢子mL −1 引起了80%以上的幼虫死亡率,这表明Btt01的使用浓度可与其他基于Bt的生物农药类似。当将其应用于玉米田时,观察到幼虫侵害显着减少了60%。但是,用Btt01 SN进行的生物测定显示出热稳定的毒性活性。理化特性强烈表明存在不想要的β-外毒素,其分泌物中存在分离物特异性的时间变化。需要了解单个菌株产生的所有形式毒素的培养物中分泌/活性的时间模式,以检测有用的活性并避免潜在地缺乏不良毒素的鉴定。这些发现将在商业化Bt产品开发,多功能菌株的优势以及大规模发酵系统推荐的保养和处理的背景下进行讨论。

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