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苦马豆素诱导的蜜蜂α-甘露糖苷酶抑制的发育和类似运动的影响

Developmental and loco-like effects of a swainsonine-induced inhibition of -mannosidase in the honey bee, .

作者信息

Wedd Laura, Ashby Regan, Foret Sylvain, Maleszka Ryszard

机构信息

Research School of Biology, Australian National University , Canberra , Australia.

Research School of Biology, Australian National University, Canberra, Australia; Centre for Research in Therapeutic Solutions, Health Research Institute, Faculty of Education, Science, Technology and Mathematics, University of Canberra, Canberra, Australia.

出版信息

PeerJ. 2017 Mar 16;5:e3109. doi: 10.7717/peerj.3109. eCollection 2017.

Abstract

BACKGROUND

Deficiencies in lysosomal a-mannosidase (LAM) activity in animals, caused either by mutations or by consuming toxic alkaloids, lead to severe phenotypic and behavioural consequences. Yet, epialleles adversely affecting LAM expression exist in the honey bee population suggesting that they might be beneficial in certain contexts and cannot be eliminated by natural selection.

METHODS

We have used a combination of enzymology, molecular biology and metabolomics to characterise the catalytic properties of honey bee LAM (AmLAM) and then used an indolizidine alkaloid swainsonine to inhibit its activity and .

RESULTS

We show that AmLAM is inhibited by swainsonine albeit at slightly higher concentrations than in other animals. Dietary exposure of growing larvae to swainsonine leads to pronounced metabolic changes affecting not only saccharides, but also amino acids, polyols and polyamines. Interestingly, the abundance of two fatty acids implicated in epigenetic regulation is significantly reduced in treated individuals. Additionally, swainsonie causes loco-like symptoms, increased mortality and a subtle decrease in the rate of larval growth resulting in a subsequent developmental delay in pupal metamorphosis.

DISCUSSION

We consider our findings in the context of cellular LAM function, larval development, environmental toxicity and colony-level impacts. The observed developmental heterochrony in swainsonine-treated larvae with lower LAM activity offer a plausible explanation for the existence of epialleles with impaired LAM expression. Individuals carrying such epialleles provide an additional level of epigenetic diversity that could be beneficial for the functioning of a colony whereby more flexibility in timing of adult emergence might be useful for task allocation.

摘要

背景

动物体内溶酶体α-甘露糖苷酶(LAM)活性的缺乏,无论是由突变还是摄入有毒生物碱引起,都会导致严重的表型和行为后果。然而,蜜蜂群体中存在对LAM表达产生不利影响的表观等位基因,这表明它们在某些情况下可能是有益的,并且不能通过自然选择被消除。

方法

我们结合酶学、分子生物学和代谢组学来表征蜜蜂LAM(AmLAM)的催化特性,然后使用吲哚里西啶生物碱苦马豆素抑制其活性。

结果

我们发现苦马豆素能抑制AmLAM,尽管所需浓度略高于其他动物。将生长中的幼虫通过饮食暴露于苦马豆素会导致明显的代谢变化,不仅影响糖类,还影响氨基酸、多元醇和多胺。有趣的是,参与表观遗传调控的两种脂肪酸的丰度在处理过的个体中显著降低。此外,苦马豆素会导致类似疯草中毒的症状、死亡率增加以及幼虫生长速率略有下降,从而导致随后蛹变态发育延迟。

讨论

我们从细胞LAM功能、幼虫发育、环境毒性和群体水平影响的背景下考虑我们的发现。在苦马豆素处理的LAM活性较低的幼虫中观察到的发育异时性,为LAM表达受损的表观等位基因的存在提供了一个合理的解释。携带此类表观等位基因的个体提供了额外的表观遗传多样性水平,这可能有利于蜂群的运作,从而成虫羽化时间的更大灵活性可能对任务分配有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbc0/5357340/ef3567fee759/peerj-05-3109-g001.jpg

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