Manure trial evaluation of Bacillus velezensis PHP1601 as a viable biocontrol candidate against nuisance fly species at an operational piggery

IF 2.2 2区 农林科学 Q1 ENTOMOLOGY
Danvir Rajesh Ramesar, Charles Haig Hunter
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Abstract

Abstract Fly infestations threaten farming and livestock operations, contributing to animal irritation and the spread of serious diseases. In this study, the application of Bacillus velezensis PHP1601 (Bacillales: Bacillaceae) treatments (10 5 and 10 10 endospore g −1 ) to pig manure slurries was evaluated as a means of controlling fly reproductive cycles. Two cycles of fly emergence were evaluated over a 33 days period for each replicated trial. For both treatments, the first emergence event resulted in a significant reduction in the percentage of flies emerging compared to an un-treated control. Extended monitoring of the biocontrol containers revealed that fly emergence was completely eliminated by the time that a second round of fly emergence was observed for the control. A B. velezensis -specific real-time PCR method was developed and used to assess the population dynamics of the applied biocontrol agent over the course of the experiment. Strain PHP1601 remained viable in the manure and cell numbers increased by several orders of magnitude. REP-PCR fingerprinting was used to confirm the clonality of endospores recovered from the manure. Fly species recovered from the trials were identified by cytochrome oxidase gene barcode sequencing. Several species of veterinary and medically significant flies were identified. They were all deemed to be susceptible to treatments with PHP1601 and constituted part of the strain's host range. The study demonstrated the effectiveness of B. velezensis PHP1601 as a promising biocontrol agent for controlling fly infestations under conditions similar to its intended use.
在运营猪场中,velezenbacillus PHP1601作为一种可行的生物防治候选物的粪便试验评价
蝇害威胁着农牧业生产,对动物造成刺激和严重疾病的传播。在猪粪浆液中应用velezensis PHP1601 (Bacillales: Bacillaceae)处理(105和10 10内孢子g−1)作为控制蝇类繁殖周期的手段。每个重复试验在33天的时间内评估两个苍蝇出现周期。对于这两种处理,与未处理的对照相比,第一次出现事件导致苍蝇出现百分比显着降低。对生物防治容器的长期监测显示,在观察到第二轮控制蝇类出现时,蝇类出现已完全消除。建立了一种针对白僵菌的实时荧光定量PCR方法,并用于评估所施用生物防治剂在实验过程中的种群动态。菌株PHP1601在粪便中保持活力,细胞数量增加了几个数量级。利用REP-PCR指纹图谱对粪中内生孢子的克隆性进行了验证。通过细胞色素氧化酶基因条形码测序对试验中回收的蝇种进行鉴定。鉴定了几种具有兽医和医学意义的蝇类。它们都被认为对PHP1601敏感,并且构成了该菌株宿主范围的一部分。本研究表明,velezensis PHP1601是一种很有前途的生物防治剂,在类似于其预期用途的条件下,可以有效地防治蝇害。
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来源期刊
BioControl
BioControl 生物-昆虫学
CiteScore
5.00
自引率
4.00%
发文量
42
审稿时长
12 months
期刊介绍: BioControl, the official journal of the International Organization for Biological Control, presents original papers on basic and applied research in all aspects of biological control of invertebrate, vertebrate and weed pests, and plant diseases. Coverage includes biology and ecology of organisms for biological control, and aspects of use including biological controls for integrated pest management, such as plant resistance, pheromones and intercropping. Papers presenting only laboratory trials on non-target effects of pesticides on natural enemies are not considered but papers dealing with the corresponding effects on community dynamics of natural enemies are welcomed. Organisms covered include parasitoids, invertebrate and vertebrate predators of pest animals and plants, mites, plant and insect pathogens, nematodes, and weeds. The journal publishes interdisciplinary papers with a global perspective on the use of biological control in integrated pest management systems, and related developments in molecular biology and biotechnology that have direct relevance.
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