Strauss Anja S, Peters Sven, Boland Wilhelm, Burse Antje
Department of Bioorganic Chemistry, Max Planck Institute for Chemical Ecology, Jena, Germany.
Elife. 2013 Dec 3;2:e01096. doi: 10.7554/eLife.01096.
Plant-herbivore interactions dominate the planet's terrestrial ecology. When it comes to host-plant specialization, insects are among the most versatile evolutionary innovators, able to disarm multiple chemical plant defenses. Sequestration is a widespread strategy to detoxify noxious metabolites, frequently for the insect's own benefit against predation. In this study, we describe the broad-spectrum ATP-binding cassette transporter CpMRP of the poplar leaf beetle, Chrysomela populi as the first candidate involved in the sequestration of phytochemicals in insects. CpMRP acts in the defensive glands of the larvae as a pacemaker for the irreversible shuttling of pre-selected metabolites from the hemolymph into defensive secretions. Silencing CpMRP in vivo creates a defenseless phenotype, indicating its role in the secretion process is crucial. In the defensive glands of related leaf beetle species, we identified sequences similar to CpMRP and assume therefore that exocrine gland-based defensive strategies, evolved by these insects to repel their enemies, rely on ABC transporters as a key element. DOI: http://dx.doi.org/10.7554/eLife.01096.001.
植物与食草动物的相互作用主导着地球上的陆地生态。在宿主植物特化方面,昆虫是最具适应性的进化创新者之一,能够破解植物的多种化学防御机制。储存是一种广泛存在的策略,用于解毒有害代谢产物,通常是为了昆虫自身抵御捕食者的利益。在本研究中,我们将杨叶甲(Chrysomela populi)的广谱ATP结合盒转运蛋白CpMRP描述为参与昆虫植物化学物质储存的首个候选蛋白。CpMRP在幼虫的防御腺中作为一个起搏器,用于将预先选择的代谢产物从血淋巴不可逆地转运到防御分泌物中。在体内沉默CpMRP会产生无防御能力的表型,这表明其在分泌过程中的作用至关重要。在相关叶甲物种的防御腺中,我们鉴定出了与CpMRP相似的序列,因此推测这些昆虫进化出的基于外分泌腺的防御策略依赖于ABC转运蛋白作为关键要素。DOI: http://dx.doi.org/10.7554/eLife.01096.001