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海七鳃鳗中的超极化棒双极细胞。

A hyperpolarizing rod bipolar cell in the sea lamprey, Petromyzon marinus.

机构信息

Stein Eye Institute, David Geffen School of Medicine, University of California Los Angeles, Los Angeles, CA 90095-7000, USA.

Department of Integrative Biology and Physiology, University of California Los Angeles, Los Angeles, CA 90095-7239, USA.

出版信息

J Exp Biol. 2022 Apr 15;225(8). doi: 10.1242/jeb.243949. Epub 2022 Apr 20.

Abstract

Retinal bipolar cells receive direct input from rod and cone photoreceptors and send axons into the inner retina, synapsing onto amacrine and ganglion cells. Bipolar cell responses can be either depolarizing (ON) or hyperpolarizing (OFF); in lower vertebrates, bipolar cells receive mixed rod and cone input, whereas in mammals, input is mostly segregated into 14 classes of cone ON and OFF cells and a single rod ON bipolar cell. We show that lamprey, like mammals, have rod bipolar cells with little or no cone input, but these cells are OFF rather than ON. They have a characteristic morphology and a spectral sensitivity nearly indistinguishable from that of rod photoreceptors. In background light known to saturate rods, rod bipolar cells are also saturated and cannot respond to increment flashes. Our results suggest that early vertebrate progenitors of both agnathans and gnathostomes may have had a more fluid retinal organization than previously thought.

摘要

视网膜双极细胞接收来自视杆和视锥光感受器的直接输入,并将轴突送入内视网膜,与无长突细胞和节细胞形成突触。双极细胞的反应可以是去极化(ON)或超极化(OFF);在较低等的脊椎动物中,双极细胞接收混合的视杆和视锥输入,而在哺乳动物中,输入主要分为 14 类视锥 ON 和 OFF 细胞和一个单一的视杆 ON 双极细胞。我们表明,七鳃鳗与哺乳动物一样,具有几乎没有或没有视锥输入的视杆双极细胞,但这些细胞是 OFF 而不是 ON。它们具有特征性的形态和与视杆感受器几乎无法区分的光谱灵敏度。在已知使视杆细胞饱和的背景光下,视杆双极细胞也饱和,无法对增量闪烁做出反应。我们的结果表明,无颌类和颌口类脊椎动物的早期祖先是具有比以前认为的更具流动性的视网膜组织。

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Rod and cone interactions in the retina.视网膜中的视杆细胞与视锥细胞相互作用。
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Light adaptation and the evolution of vertebrate photoreceptors.光适应与脊椎动物光感受器的进化。
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