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转录组分析表明,麦皮蝇科蜜蜂的直肠腺组织受到噻虫嗪的损伤。

Transcriptomic analysis of Malpighian tubules from the stingless bee Melipona scutellaris reveals thiamethoxam-induced damages.

机构信息

Department of General and Applied Biology, Institute of Biosciences, São Paulo State University (UNESP), Rio Claro, SP, Brazil.

Department of General and Applied Biology, Institute of Biosciences, São Paulo State University (UNESP), Rio Claro, SP, Brazil.

出版信息

Sci Total Environ. 2022 Dec 1;850:158086. doi: 10.1016/j.scitotenv.2022.158086. Epub 2022 Aug 18.

Abstract

The concern about pesticide exposure to neotropical bees has been increasing in the last few years, and knowledge gaps have been identified. Although stingless bees, (e.g.: Melipona scutellaris), are more diverse than honeybees and they stand out in the pollination of several valuable economical crops, toxicity assessments with stingless bees are still scarce. Nowadays new approaches in ecotoxicological studies, such as omic analysis, were pointed out as a strategy to reveal mechanisms of how bees deal with these stressors. To date, no molecular techniques have been applied for the evaluation of target and/or non-target organs in stingless bees, such as the Malpighian tubules (Mt). Therefore, in the present study, we evaluated the differentially expressed genes (DEGs) in the Mt of M. scutellaris after one and eight days of exposure to LC (0.000543 ng a.i./μL) of thiamethoxam (TMX). Through functional annotation analysis of four transcriptome libraries, the time course line approach revealed 237 DEGs (nine clusters) associated with carbon/energy metabolism and cellular processes (lysosomes, autophagy, and glycan degradation). The expression profiles of Mt were altered by TMX in processes, such as detoxification, excretion, tissue regeneration, oxidative stress, apoptosis, and DNA repair. Transcriptome analysis showed that cell metabolism in Mt was mainly affected after 8 days of exposure. Nine genes were selected from different clusters and validated by RT-qPCR. According to our findings, TMX promotes several types of damage in Mt cells at the molecular level. Therefore, interference of different cellular processes directly affects the health of M. scutellaris by compromising the function of Mt.

摘要

近年来,人们越来越关注新热带地区蜜蜂接触农药的问题,并发现了一些知识空白。尽管无刺蜜蜂(例如:Melipona scutellaris)比蜜蜂更具多样性,并且在为几种有价值的经济作物授粉方面表现出色,但对无刺蜜蜂的毒性评估仍然很少。如今,生态毒理学研究中的新方法,如组学分析,被指出是揭示蜜蜂如何应对这些胁迫因素的机制的一种策略。迄今为止,尚无分子技术应用于无刺蜜蜂的靶标和/或非靶标器官(如马氏管)的评估。因此,在本研究中,我们评估了 M. scutellaris 的马氏管在接触噻虫嗪(LC 0.000543 ng a.i./μL) 1 天和 8 天后的差异表达基因(DEGs)。通过四个转录组文库的功能注释分析,时间过程线方法揭示了与碳/能量代谢和细胞过程(溶酶体、自噬和聚糖降解)相关的 237 个 DEGs(九个簇)。TMX 暴露后,马氏管的表达谱发生了改变,涉及解毒、排泄、组织再生、氧化应激、细胞凋亡和 DNA 修复等过程。转录组分析表明,暴露 8 天后,马氏管的细胞代谢主要受到影响。从不同簇中选择了 9 个基因,并通过 RT-qPCR 进行了验证。根据我们的发现,TMX 在分子水平上促进了马氏管细胞的多种损伤。因此,不同细胞过程的干扰直接通过损害马氏管的功能来影响 M. scutellaris 的健康。

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