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昆虫病原细菌对美洲马铃薯甲虫免疫反应的影响。

The influence of inactivated entomopathogenic bacterium on the immune responses of the Colorado potato beetle.

机构信息

Institute of Systematics and Ecology of Animals, Siberian Branch of Russian Academy of Sciences, Novosibirsk, Russia.

Novosibirsk State University, Novosibirsk, Russia.

出版信息

PeerJ. 2024 Oct 31;12:e18259. doi: 10.7717/peerj.18259. eCollection 2024.

Abstract

BACKGROUND

Invasion of microorganisms into the gut of insects triggers a cascade of immune reactions accompanied by increased synthesis of effectors (such as antimicrobial peptides, cytokines, and amino acids), leading to changes in the physiological state of the host. We hypothesized that even an inactivated bacterium can induce an immune response in an insect. The aim of this study was to compare the roles of reactive oxygen species (ROS) formation and of the response of detoxification and antioxidant systems in a Colorado potato beetle (CPB) larval model in the first hours after invasion by either an inactivated or live bacterium.

METHODS

The influence of inoculation with inactivated entomopathogenic bacterium var. (Bt) on the survival and physiological and biochemical parameters of CPB larvae was assessed as changes in the total hemocyte count (THC), activity of phenoloxidases (POs), glutathione-S-transferases (GSTs), nonspecific esterases (ESTs), catalase, peroxidases, superoxide dismutases (SODs) and formation of reactive oxygen species (ROS).

RESULTS

A series of changes occurred within the hemolymph and the midgut of CPBs inoculated with inactivated Bt at 12 h after inoculation. These physiological and biochemical alterations serve to mediate generalized resistance to pathogens. The changes were associated with an increase in the THC and a 1.4-2.2-fold enhancement of detoxification enzymatic activities (such as GST and EST) as well as increased levels of antioxidants (especially peroxidases) in hemolymph in comparison to the control group. Suppressed EST activity and reduced ROS formation were simultaneously detectable in the larval midgut. Inoculation of beetle larvae with active Bt cells yielded similar results (elevated THC and suppressed PO activity). A fundamental difference in the immune activation processes between larvae that ingested the inactivated bacterium and larvae that had consumed the active bacterium was that the inactivated bacterium did not influence ROS formation in the hemolymph but did reduce their formation in the midgut. At 24 h postinfection with active Bt, ROS levels went up in both the hemolymph and the midgut. This was accompanied by a significant 5.7-fold enhancement of SOD activity and a 5.3-fold suppression of peroxidase activity. The observed alterations may be due to within-gut toxicity caused by early-stage bacteriosis. The imbalance in the antioxidant system and the accumulation of products toxic to the "putative" pathogen can activate detoxification mechanisms, including those of an enzymatic nature (EST and GST). The activation of detoxification processes and of innate immune responses is probably due to the recognition of the "putative" pathogen by gut epithelial cells and is similar in many respects to the immune response at early stages of bacteriosis.

摘要

背景

微生物入侵昆虫肠道会引发一系列免疫反应,伴随着效应物(如抗菌肽、细胞因子和氨基酸)合成的增加,导致宿主生理状态的变化。我们假设即使是灭活的细菌也能在昆虫体内引发免疫反应。本研究的目的是比较活性氧(ROS)形成和解毒及抗氧化系统反应在感染灭活或活细菌后几小时内对科罗拉多马铃薯甲虫(CPB)幼虫模型的作用。

方法

评估接种灭活昆虫病原细菌 var. (Bt)对 CPB 幼虫存活率及生理生化参数的影响,检测总血细胞计数(THC)、酚氧化酶(PO)、谷胱甘肽 S-转移酶(GSTs)、非特异性酯酶(ESTs)、过氧化氢酶、过氧化物酶、超氧化物歧化酶(SOD)和活性氧(ROS)的变化。

结果

在接种灭活 Bt 12 小时后,CPB 的血淋巴和中肠发生了一系列变化。这些生理和生化变化有助于介导对病原体的普遍抗性。与对照组相比,这些变化与血细胞计数(THC)增加以及解毒酶(如 GST 和 EST)活性提高 1.4-2.2 倍以及抗氧化剂(特别是过氧化物酶)水平升高有关。与幼虫中肠中 EST 活性抑制和 ROS 形成减少同时检测到。接种活性 Bt 细胞的幼虫也产生了类似的结果(THC 升高和 PO 活性抑制)。摄入灭活细菌的幼虫和摄入活性细菌的幼虫之间免疫激活过程的一个根本区别是,灭活细菌不会影响血淋巴中的 ROS 形成,但会减少中肠中的 ROS 形成。在感染活性 Bt 24 小时后,血淋巴和中肠中的 ROS 水平都升高。这伴随着 SOD 活性显著提高 5.7 倍和过氧化物酶活性降低 5.3 倍。观察到的变化可能是由于早期细菌性疾病引起的肠道内毒性。抗氧化系统的失衡和对“假定”病原体有毒的产物的积累可以激活解毒机制,包括酶性质的解毒机制(EST 和 GST)。解毒过程和先天免疫反应的激活可能是由于肠道上皮细胞对“假定”病原体的识别,在许多方面与细菌性疾病早期的免疫反应相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e656/11531747/e0b667951a65/peerj-12-18259-g001.jpg

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