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New Functions of Arthropod Bursicon: Inducing Deposition and Thickening of New Cuticle and Hemocyte Granulation in the Blue Crab Callinectes sapidus

机译:节肢动物Bursicon的新功能:诱导沉积并在蓝蟹新角质层和血细胞造粒的增厚蓝蟹

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摘要

Arthropod growth requires molt-associated changes in softness and stiffness of the cuticle that protects from desiccation, infection and injury. Cuticle hardening in insects depends on the blood-borne hormone, bursicon (Burs), although it has never been determined in hemolymph. Whilst also having Burs, decapod crustaceans reiterate molting many more times during their longer life span and are encased in a calcified exoskeleton, which after molting undergoes similar initial cuticle hardening processes as in insects. We investigated the role of homologous crustacean Burs in cuticular changes and growth in the blue crab, Callinectes sapidus. We found dramatic increases in size and number of Burs cells during development in paired thoracic ganglion complex (TGC) neurons with pericardial organs (POs) as neurohemal release sites. A skewed expression of Burs β/Burs α mRNA in TGC corresponds to protein contents of identified Burs β homodimer and Burs heterodimer in POs. In hemolymph, Burs is consistently present at ∼21 pM throughout the molt cycle, showing a peak of ∼89 pM at ecdysis. Since initial cuticle hardness determines the degree of molt-associated somatic increment (MSI), we applied recombinant Burs in vitro to cuticle explants of late premolt or early ecdysis. Burs stimulates cuticle thickening and granulation of hemocytes. These findings demonstrate novel cuticle-associated functions of Burs during molting, while the unambiguous and constant presence of Burs in cells and hemolymph throughout the molt cycle and life stages may implicate further functions of its homo- and heterodimer hormone isoforms in immunoprotective defense systems of arthropods.
机译:节肢动物的生长需要与蜕皮相关的角质层柔软度和刚度变化,以防止干燥,感染和伤害。昆虫中的表皮硬化取决于血源激素bursicon(Burs),尽管从未在血淋巴中确定。十足纲甲壳动物虽然也有伯氏菌,但在其更长的寿命中会多次蜕皮,并被包裹在钙化的外骨骼中,蜕皮后会经历与昆虫类似的初始表皮硬化过程。我们调查了在蓝蟹Callinectes sapidus中同源甲壳类伯斯在表皮变化和生长中的作用。我们发现在成对的胸神经节复合体(TGC)神经元与心包器官(POs)作为神经血流释放部位的发育过程中,Burs细胞的大小和数量急剧增加。 TGC中Bursβ/ BursαmRNA的偏斜表达对应于POs中已鉴定的Bursβ同二聚体和Burs异二聚体的蛋白质含量。在血淋巴中,整个蜕皮周期中Burs始终存在于〜21 pM处,在蜕皮时显示出〜89 pM的峰值。由于最初的表皮硬度决定了与蜕皮相关的体细胞增量(MSI)的程度,因此我们在体外将重组Burs应用于晚期前蜕皮或早期蜕皮的表皮外植体。突发刺激角质层增厚和血细胞粒化。这些发现表明,蜕皮过程中Burs具有新的表皮相关功能,而在整个蜕皮周期和生命阶段,细胞和血淋巴中Burs的明确且持续存在可能暗示其同型和异二聚体激素同工型在节肢动物的免疫保护系统中的进一步功能。

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