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An immunological axis of biocontrol: infections in field-trapped insects

机译:生物防治的免疫学轴:田间诱捕昆虫的感染

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Insect immunology is an active research arena, however, the vast majority of research in the area is conducted on model species taken from laboratory cultures. We tested the hypothesis that insects are regularly exposed to infections or invasions in nature and here report results of a field study designed to assess the extent of natural infections in insects collected from agrarian fields surrounding Kahramanmaras, Turkey. Specimens were dissected to assess numbers of nodules. Formation of darkened, melanotic nodules is the predominant cellular immune reaction to microbial and parasitic infection, and once formed, the nodules are permanently attached to internal surfaces. The collected insects were healthy. Of the >400 examined specimens, at least some nodules were found in 98%. Numbers of nodules ranged from ~2/individual to >100 nodules/ individual. We conclude that insects are regularly challenged by microbial and parasitic infections from which they recover. The novel implication of our data is that insect immune systems may limit the host range and effectiveness of agents deployed in biological control programs. Knowledge of insect immune systems may contribute to increased use of biopesticides globally.
机译:昆虫免疫学是一个活跃的研究领域,但是,该领域的绝大多数研究都是针对实验室培养的模型物种进行的。我们测试了昆虫经常在自然界中受到感染或入侵的假说,此处报告了一项野外研究的结果,该研究旨在评估从土耳其Kahramanmaras周围的农田收集的昆虫的自然感染程度。解剖标本以评估结节的数量。深色变黑的结节的形成是对微生物和寄生虫感染的主要细胞免疫反应,一旦形成,结节就永久附着在内表面上。收集的昆虫是健康的。在检查的400多个标本中,至少有98%发现了结节。结节数范围从〜2 /个人到> 100个结节/个人。我们得出的结论是,昆虫经常会受到微生物和寄生虫感染的挑战,并从中恢复。我们数据的新颖含义是,昆虫免疫系统可能会限制宿主在生物控制程序中使用的宿主的范围和有效性。昆虫免疫系统的知识可能有助于全球增加生物农药的使用。

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