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首页> 外文期刊>Chemoecology >Structure and function of the eversible glands of the aquatic firefly Luciola leii (Coleoptera: Lampyridae)
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Structure and function of the eversible glands of the aquatic firefly Luciola leii (Coleoptera: Lampyridae)

机译:水生萤火虫Luciola leii(鞘翅目:兰科)的可食腺的结构和功能

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摘要

When attacked or otherwise disturbed, larvae of the aquatic firefly Luciola leii display fork-shaped glands laterally from the meso- and metathorax as well as each abdominal segment. Glandular eversion is accompanied by a strong pine oil-like odour, thanatosis and glowing from paired larval light organs. Observations by SEM and TEM revealed that there are numerous, almost spherical protuberances, measuring 9 μm in diameter on the surface of each gland. Each protuberance is connected to a well developed secretory cell via a 0.1 μm thick and 0.2 μm long stalk and bears three to six 7 μm long spines on its apex. The convoluted glandular walls measure 0.2 μm. The cytoplasm of the secretory cells is characterized by the presence of numerous mitochondria and an extensive system of cisternae and tubular endoplasmic reticulum. Preliminary GC-MS analysis of the glandular secretion revealed two volatile terpenoids: terpinolene and γ-terpinene. Choice and no-choice bioassays involving fish and ants as well as other predators demonstrate that the secretions serve as an effective deterrent against a range of ecologically relevant enemies. The larval postural adjustments, light emission, everted glands, and glandular release of distasteful or repellent compounds, appear to function as a multi-modal, aposematic larval defence. The tandem evolution of glandular secretions and conspicuousness in larval fireflies could partially explain their successful radiation into both aquatic and terrestrial habitats.
机译:当受到攻击或受到其他干扰时,水生萤火虫Luciola leii的幼虫从中胸​​和后胸以及每个腹部节段的侧面显示叉状腺体。腺体外翻伴有强烈的松油状气味,成虫和成对的幼虫发光器官发光。 SEM和TEM的观察表明,每个腺体的表面上都有许多几乎球形的突起,直径为9μm。每个突起均通过0.1μm厚,0.2μm长的茎与发达的分泌细胞相连,并在其顶点上带有3至6个7μm长的刺。盘旋的腺壁尺寸为0.2μm。分泌细胞的细胞质的特征是存在大量线粒体以及广泛的水箱和管状内质网系统。腺体分泌物的初步GC-MS分析显示出两种挥发性萜类化合物:萜品油烯和γ-萜品烯。涉及鱼类和蚂蚁以及其他捕食者的选择和不作选择的生物测定表明,这些分泌物可以有效地威慑一系列与生态相关的敌人。幼虫的体态调节,发光​​,外翻的腺体以及令人讨厌或排斥的化合物的腺体释放似乎起多态性,目的性幼虫防御的作用。幼体萤火虫的腺体分泌物和显眼性的串联演变可以部分解释它们在水生和陆地生境中的成功辐射。

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