首页> 外文期刊>The Biological Bulletin >COMPOUND EYE FINE STRUCTURE IN PARALOMIS MULTISPINA BENEDICT, AN ANOMURAN HALF-CRAB FROM 1200 M DEPTH (CRUSTACEA DECAPODA ANOMURA)
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COMPOUND EYE FINE STRUCTURE IN PARALOMIS MULTISPINA BENEDICT, AN ANOMURAN HALF-CRAB FROM 1200 M DEPTH (CRUSTACEA DECAPODA ANOMURA)

机译:巴拉诺米斯多脊椎本底动物的精细眼部复合结构,深度为1200 M(无壳蛤)

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Fully grown, unsexed specimens of the anomuran half-crab Paralomis multispina Benedict were obtained from a depth of 1200 m, and the eyes of three individuals were prepared for light and electron microscopy. In their outer appearance the compound eyes of Paralomis resemble those of common shallow-water half-crabs (e.g., Petrolisthes), but facets in Paralomis were about 3 times larger in diameter (i.e., 60 mu m) and at least twice as long. Interommatidial angles ranged from 3 degrees to 5 degrees, The proximal width of the crystalline cone in Paralomis was 10 times that of its equivalent in the Petrolisthes eye, and the rhabdom-although only twice as long-had a radius that was 7 times greater distally and 4 times greater proximally, A clear-zone between cones and rhabdom was not developed, and cross sections of crystalline cones revealed rounded rather than square profiles, A distal retinula cell (R8) was absent, and all regular retinula cells (R1-R7) protruded microvilli of about 0.11 mu m diameter in many (and not only two) directions. A maximum rhabdom occupation ratio of 85% was found in the Paralomis retinula, whereas in the shallow-water half-crabs the comparable figure was 35%. Paralomis featured a wide, rhabdomless space between basement membrane and proximal rhabdom ends the space was occupied by reflecting cells, Primary screening pigment cells and their dark granules were present; secondary screening pigment. cells, however, were replaced by reflecting cells, The anatomical modifications in the Paralomis eye are consistent with habitat-related adaptations seen in the eyes of other benthic and slow-moving deep-water crustaceans, but not with those of euphausiids. We conclude that the eye of Paralomis functions as an apposition eye, designed to maximize photon capture, especially from point sources (i.e., bioluminescence) rather than extended sources. We estimate that the Paralomis eye is at least 150 times more sensitive to light than the eye of shallow-water Petrolisthes. [References: 52]
机译:从1200 m的深度获得了完全生长的无性别半蟹Paralomis multispina Benedict的标本,并准备了三个人的眼睛进行光镜和电子显微镜检查。帕拉罗米斯的复眼在外观上类似于普通的浅水半蟹(例如Petrolisthes),但帕拉罗米斯的小面直径大3倍(即60微米),至少长两倍。枕间角度在3度到5度之间,在Paralomis中,视锥的近端宽度是Petrolisthes眼中等效视锥的10倍,而横纹肌虽然长,但其半径是远端的7倍和近端大4倍,在视锥细胞和横纹肌之间没有形成清晰的区域,并且视锥细胞的横截面显示出圆形而不是正方形的轮廓,远侧视网膜细胞(R8)缺失,所有常规视网膜细胞(R1-R7) )在许多方向(不仅是两个方向)伸出直径约0.11微米的微绒毛。在帕拉洛米网眼中发现最大横纹占用率为85%,而在浅水半蟹中,可比数字为35%。阳伞的特征是在基膜和近端横纹末端之间有一个宽而无横纹的空间,该空间被反射细胞占据,存在初级筛选色素细胞及其暗颗粒。二次筛选颜料。然而,Paralomis眼的解剖学改变与其他底栖生物和缓慢运动的深水甲壳类动物的眼中所观察到的栖息地相关适应性变化一致,而与e鱼的相适应。我们得出的结论是,帕拉洛米斯(Paralomis)的眼睛起着并置眼睛的作用,旨在最大程度地捕获光子,尤其是从点源(即生物发光)而不是扩展源中捕获光子。我们估计Paralomis眼睛对光的敏感度至少是浅水Petrolisthes眼睛的150倍。 [参考:52]

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