Lectin binding to pectoral fin of neonate little skates reared under ambient and projected-end-of-century temperature regimes

IF 1.5 4区 医学 Q2 ANATOMY & MORPHOLOGY
Peyton Thomas, Emily E. Peele, Kara E. Yopak, James A. Sulikowski, Stephen T. Kinsey
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引用次数: 0

Abstract

The glycosylation of macromolecules can vary both among tissue structural components and by adverse conditions, potentially providing an alternative marker of stress in organisms. Lectins are proteins that bind carbohydrate moieties and lectin histochemistry is a common method to visualize microstructures in biological specimens and diagnose pathophysiological states in human tissues known to alter glycan profiles. However, this technique is not commonly used to assess broad-spectrum changes in cellular glycosylation in response to environmental stressors. In addition, the binding of various lectins has not been studied in elasmobranchs (sharks, skates, and rays). We surveyed the binding tissue structure specificity of 14 plant-derived lectins, using both immunoblotting and immunofluorescence, in the pectoral fins of neonate little skates (Leucoraja erinacea). Skates were reared under present-day or elevated (+5°C above ambient) temperature regimes and evaluated for lectin binding as an indicator of changing cellular glycosylation and tissue structure. Lectin labeling was highly tissue and microstructure specific. Dot blots revealed no significant changes in lectin binding between temperature regimes. In addition, lectins only detected in the elevated temperature treatment were Canavalia ensiformis lectin (Concanavalin A) in spindle cells of muscle and Ricinus communis agglutinin in muscle capillaries. These results provide a reference for lectin labeling in elasmobranch tissue that may aid future investigations.

Abstract Image

在环境温度和本世纪末预测温度条件下饲养的新生小鳐鱼胸鳍上的凝集素结合情况
大分子的糖基化既会因组织结构成分的不同而变化,也会因不利条件的不同而变化,有可能成为生物体内压力的另一种标记。凝集素是一种能与碳水化合物分子结合的蛋白质,凝集素组织化学是一种常用的方法,用于观察生物标本的微观结构,并诊断已知会改变糖谱的人体组织的病理生理状态。然而,这种技术并不常用于评估细胞糖基化在环境压力下的广泛变化。此外,各种凝集素的结合还没有在鳍鳃类动物(鲨鱼、鳐鱼和魟)中进行过研究。我们使用免疫印迹法和免疫荧光法调查了 14 种植物凝集素在新生小鳐(Leucoraja erinacea)胸鳍中的结合组织结构特异性。鳐鱼在现温或升温(高于环境温度+5°C)条件下饲养,并评估凝集素结合情况,以此作为细胞糖基化和组织结构变化的指标。凝集素标记具有高度的组织和微观结构特异性。点印迹显示,不同温度条件下凝集素的结合没有明显变化。此外,只有在高温处理中检测到的凝集素是肌肉纺锤细胞中的Canavalia ensiformis凝集素(Concanavalin A)和肌肉毛细血管中的蓖麻凝集素。这些结果为鞘鳃类动物组织中的凝集素标记提供了参考,可能有助于今后的研究。
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来源期刊
Journal of Morphology
Journal of Morphology 医学-解剖学与形态学
CiteScore
2.80
自引率
6.70%
发文量
119
审稿时长
1 months
期刊介绍: The Journal of Morphology welcomes articles of original research in cytology, protozoology, embryology, and general morphology. Articles generally should not exceed 35 printed pages. Preliminary notices or articles of a purely descriptive morphological or taxonomic nature are not included. No paper which has already been published will be accepted, nor will simultaneous publications elsewhere be allowed. The Journal of Morphology publishes research in functional, comparative, evolutionary and developmental morphology from vertebrates and invertebrates. Human and veterinary anatomy or paleontology are considered when an explicit connection to neontological animal morphology is presented, and the paper contains relevant information for the community of animal morphologists. Based on our long tradition, we continue to seek publishing the best papers in animal morphology.
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