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在慈鲷鱼 Astatotilapia burtoni 中,视蛋白的表达随生殖状态而变化。

Opsin Expression Varies with Reproductive State in the Cichlid Fish Astatotilapia burtoni.

机构信息

Department of Biological Sciences, Louisiana State University, 202 Life Sciences Bldg, Baton Rouge, LA 70803, USA.

Department of Biology, Stanford University, 304 Gilbert, 371 Jane Stanford Way, Stanford, CA 94305, USA.

出版信息

Integr Comp Biol. 2021 Jul 23;61(1):240-248. doi: 10.1093/icb/icab058.

Abstract

Animals use visual communication to convey crucial information about their identity, reproductive status, and sex. Plasticity in the auditory and olfactory systems has been well-documented, however, fewer studies have tested for plasticity in the visual system, a surprising detail since courtship and mate choice are largely dependent on visual signals across taxa. We previously found reproductive state-dependent plasticity in the eye of the highly social cichlid fish Astatotilapia burtoni. Male A. burtoni increase their courtship, including multicomponent visual displays, when around ovulated females, and ovulated females are more responsive to male visual courtship displays than non-ovulated females. Based on this, we hypothesized that ovulation status impacts visual capabilities in A. burtoni females. Using electroretinograms, we found that ovulated females had greater visual sensitivity at wavelengths corresponding to male courtship coloration compared with non-reproductively-receptive females. In addition, ovulated females had higher neural activation in the retina and higher mRNA expression levels of neuromodulatory receptors (e.g., sex-steroids; gonadotropins) in the eye than non-ovulated females. Here, we add to this body of work by testing the hypothesis that cone opsin expression changes with female reproductive state. Ovulated females had higher expression of short wavelength sensitive opsins (sws1, sws2a, sws2b) compared with mouthbrooding females. Further, expression of sws2a, the most abundant opsin in the A. burtoni eye, positively correlated with levels of circulating 11-ketotestosterone and estradiol and estrogen, androgen, and gonadotropin system receptor expression in the eye in females. These data indicate that reproductive state-dependent plasticity also occurs at the level of photoreceptors, not just through modulation of visual signals at downstream retinal layers. Collectively, these data provide crucial evidence linking endocrine modulation of visual plasticity to mate choice behaviors in females.

摘要

动物利用视觉通讯来传达关于其身份、繁殖状态和性别的关键信息。听觉和嗅觉系统的可塑性已经得到了充分的证明,然而,较少的研究测试了视觉系统的可塑性,这是一个令人惊讶的细节,因为求偶和配偶选择在很大程度上依赖于跨类别的视觉信号。我们之前发现高度社交的丽鱼科鱼类 Astatotilapia burtoni 的眼睛存在繁殖状态依赖性可塑性。当周围有排卵的雌性时,雄性 A. burtoni 会增加求偶行为,包括多成分视觉展示,而排卵的雌性对雄性视觉求偶展示的反应比对非排卵的雌性更敏感。基于此,我们假设排卵状态会影响 A. burtoni 雌性的视觉能力。通过视网膜电图,我们发现与非繁殖接受性雌性相比,排卵雌性在与雄性求偶颜色相对应的波长下具有更高的视觉敏感性。此外,与非排卵雌性相比,排卵雌性的视网膜神经激活更高,眼部神经调节受体(例如,性激素;促性腺激素)的 mRNA 表达水平更高。在这里,我们通过测试以下假设来进一步研究这个问题,即视锥蛋白表达随雌性繁殖状态而变化。与口孵育雌性相比,排卵雌性短波长敏感视锥蛋白(sws1、sws2a、sws2b)的表达更高。此外,sws2a 的表达,即 A. burtoni 眼睛中最丰富的视蛋白,与循环 11-酮睾酮和雌二醇以及雌性眼睛中的雌激素、雄激素和促性腺激素系统受体表达水平呈正相关。这些数据表明,视觉可塑性的繁殖状态依赖性也发生在光感受器水平,而不仅仅是通过下游视网膜层的视觉信号调制。总的来说,这些数据提供了至关重要的证据,将视觉可塑性的内分泌调节与雌性的配偶选择行为联系起来。

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