Fine structure of the retrocerebral organ in the rotifer Trichocerca similis (Monogononta)

IF 1.3 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY Invertebrate Biology Pub Date : 2023-03-10 DOI:10.1111/ivb.12396
Rick Hochberg, Thiago Q. Araújo, Elizabeth J. Walsh, Jonathon E. Mohl, Robert L. Wallace
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Abstract

The retrocerebral organ (RCO) is a complex glandular system that is widely distributed across species of phylum Rotifera (sensu stricto). This system is hypothesized to secrete mucus that aids in benthic locomotion, adhesion, and/or reproduction. Unfortunately, the ultrastructure of the RCO is mostly unknown, having only been partially examined in one species. We used transmission electron microscopy and confocal laser scanning microscopy to describe the RCO in the planktonic freshwater rotifer Trichocerca similis. Results reveal the RCO to be a singular syncytial organ composed of a posterior glandular region, an expansive reservoir, and an anterior duct. The glandular portion has an active synthetic cytoplasm with paired nuclei, abundant rER, ribosomes, Golgi, and mitochondria. Electron-dense secretion granules accumulate at the anterior end of the gland and undergo homotypic fusion to create larger, more electron-lucent granules with numerous mesh-like contents that gradually fuse into tubular secretions that accumulate in the reservoir. Ultrastructure of these secretions suggests they may be hydrated glycoproteins. Cross-striated longitudinal muscles form a partial sleeve around the reservoir and may function to squeeze the secretions through the single cytoplasmic duct that penetrates the cerebral ganglion. A review of the RCOs from other rotifers suggests that further ultrastructural analyses are required before attempting to discern their functions and homologies.

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相似毛丝虫脑后器官的精细结构
脑后器官(RCO)是一个复杂的腺体系统,广泛分布于轮虫门的各种物种中。这个系统被假设为分泌粘液,帮助底栖动物运动、粘附和/或繁殖。不幸的是,RCO的超微结构大部分是未知的,只在一个物种中进行了部分检查。采用透射电镜和共聚焦激光扫描显微镜对浮游淡水轮虫相似毛丝虫体内的RCO进行了研究。结果显示RCO是一个单一的合胞器官,由后腺区、膨胀的贮液区和前管组成。腺部有活性的合成细胞质,有成对的细胞核,丰富的内质网、核糖体、高尔基体和线粒体。电子密集的分泌颗粒积聚在腺体的前端,经过同型融合形成更大、更透明的颗粒,其中含有大量网状内容物,这些颗粒逐渐融合成积聚在储存器中的管状分泌物。这些分泌物的超微结构提示它们可能是水合糖蛋白。横纹肌在贮液池周围形成部分套筒,可通过穿透大脑神经节的单个细胞质管挤压分泌物。对其他轮虫rco的回顾表明,在试图辨别其功能和同源性之前,需要进一步的超微结构分析。
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来源期刊
Invertebrate Biology
Invertebrate Biology 生物-动物学
CiteScore
2.20
自引率
8.30%
发文量
28
审稿时长
>12 weeks
期刊介绍: Invertebrate Biology presents fundamental advances in our understanding of the structure, function, ecology, and evolution of the invertebrates, which represent the vast majority of animal diversity. Though ultimately organismal in focus, the journal publishes manuscripts addressing phenomena at all levels of biological organization. Invertebrate Biology welcomes manuscripts addressing the biology of invertebrates from diverse perspectives, including those of: • genetics, cell, and molecular biology • morphology and biomechanics • reproduction and development • physiology and behavior • ecology • evolution and phylogenetics
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