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深海长尾须虾内部光器(Pesta 器官)的潜在光敏感性。

Putative photosensitivity in internal light organs (organs of Pesta) of deep-sea sergestid shrimps.

机构信息

Halmos College of Arts and Sciences, Nova Southeastern University, Dania Beach, FL, 33004, USA.

Department of Invertebrate Zoology, National Museum of Natural History, Smithsonian Institution, Washington, DC, 20013, USA.

出版信息

Sci Rep. 2023 Sep 26;13(1):16113. doi: 10.1038/s41598-023-43327-z.

Abstract

Many marine species can regulate the intensity of bioluminescence from their ventral photophores in order to counterilluminate, a camouflage technique whereby animals closely match the intensity of the downwelling illumination blocked by their bodies, thereby hiding their silhouettes. Recent studies on autogenic cuticular photophores in deep-sea shrimps indicate that the photophores themselves are light sensitive. Here, our results suggest photosensitivity in a second type of autogenic photophore, the internal organs of Pesta, found in deep-sea sergestid shrimps. Experiments were conducted onboard ship on live specimens, exposing the animals to bright light, which resulted in ultrastructural changes that matched those seen in crustacean eyes during the photoreceptor membrane turnover, a process that is crucial for the proper functioning of photosensitive components. In addition, RNA-seq studies demonstrated the expression of visual opsins and phototransduction genes in photophore tissue that are known to play a role in light detection, and electrophysiological measurements indicated that the light organs are responding to light received by the eyes. The long sought after mechanism of counterillumination remains unknown, but evidence of photosensitivity in photophores may indicate a dual functionality of light detection and emission.

摘要

许多海洋物种可以调节腹侧生物发光器官的发光强度,以进行反照,这是一种伪装技术,动物通过这种技术使自身的发光强度与被身体阻挡的下向光照明强度相匹配,从而隐藏自身的轮廓。最近对深海虾类自体表皮生物发光器官的研究表明,这些生物发光器官本身对光敏感。在这里,我们的研究结果表明,深海长尾虾中的第二种自体生物发光器官——内部器官也具有光敏感性。在船上对活体标本进行了实验,将动物暴露在强光下,导致超微结构发生变化,与甲壳类动物眼睛在光受体膜翻转过程中观察到的变化相匹配,这是感光元件正常工作的关键过程。此外,RNA-seq 研究表明,在已知在光检测中起作用的光感受器组织中表达视觉视蛋白和光转导基因,而电生理测量表明,光器官对眼睛接收到的光有反应。长期以来,反照的机制仍不清楚,但光感受器的光敏感性证据可能表明其具有光检测和发射的双重功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95f9/10522685/135a31f64292/41598_2023_43327_Fig1_HTML.jpg

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