Tannic acid modulates the activity of bombyxin- and PTTH-producing neurons in Lymantria dispar L. (Insecta: Lepidoptera) caterpillars

L. Ilijin, M. Vlahović, M. Mrdaković, A. Gavrilovic, D. Matić, J. Lazarević, V. Perić Mataruga
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Abstract

Abstract Lymantria dispar caterpillars were exposed for 3 days to tannic acid, added to the artificial diet in the following concentrations: 1, 2.5 and 5%. Changes in the morphometric parameters of medial A2 bombyxin immunopositive and dorsolateral L2` prothoracicotropic (PTTH) immunopositive neurosecretory neurons (nsn; sizes of six nsn, the size of their nuclei, and quantification of cytoplasm density) were analysed upon caterpillars’ exposure to this allelochemical. Protein band density, obtained by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS PAGE) electrophoresis, from regions of bombyxin and PTTH molecular mass (Mr) were estimated. A2 nsn decreased in size, while the size of their nuclei did not change significantly. Relative cytoplasm density and relative band density from the bombyxin Mr region (Mr 4–5 kD) were decreased upon exposure to 1% and 2.5% tannic acid, while the addition of 5% tannic acid to artificial diet increased all of these parameters. Results suggested that lower concentrations of tannic acid stimulate the release of neurosecretory material from A2 nsn, most probably bombyxin-like protein. High tannic acid concentration (5%) probably allocates resources towards induction of other stress protective components instead of bombyxin-mediated metabolic stress response mechanisms. In L2` nsn, the size of nsn, nuclei and the relative cytoplasm density were increased, and relative band density from the region of big PTTH form (Mr 11–15 kD) was higher in all treatments in comparison to control. Results indicate that PTTH is synthesised and stored in the cytoplasm of L2` nsn.
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单宁酸调节Lymantria dispar L.(昆虫纲:鳞翅目)毛虫产蚕蛹素和甲状旁腺素神经元的活性
摘要将单宁酸分别添加到人工饲料中,浓度分别为1、2.5和5%。内侧A2抗体免疫阳性和背外侧L2′前致胸性(PTTH)免疫阳性神经分泌神经元(nsn;分析了6个nsn的大小、细胞核大小和细胞质密度的定量)。利用十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS PAGE)对蚕蛹毒素和甲状旁腺嘌呤分子质量(Mr)区域的蛋白带密度进行了估算。A2 nsn细胞体积减小,细胞核大小变化不明显。1%和2.5%单宁酸处理降低了细胞质相对密度和蚕蛹蛋白Mr区(Mr 4 ~ 5 kD)的相对带密度,而在人工饲料中添加5%单宁酸使这些参数均升高。结果表明,较低浓度的单宁酸刺激A2 nsn释放神经分泌物质,最可能是蚕蛹蛋白样蛋白。高单宁酸浓度(5%)可能将资源分配给诱导其他应激保护成分,而不是家蚕素介导的代谢应激反应机制。在L2′nsn中,nsn的大小、细胞核和相对细胞质密度均增加,大PTTH区(Mr 11-15 kD)的相对带密度均高于对照。结果表明,PTTH被合成并储存在L2 ' nsn的细胞质中。
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Italian Journal of Zoology
Italian Journal of Zoology 生物-动物学
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