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1.
Synopsis At high latitudes, such as in Iceland, the daily photoperiod varies from almost continuous darkness in winter to virtually constant light in summer. Previous studies of detailed retinal structure in vertebrates have shown significant daily and annual effects of photoperiod. We sampled arctic charr in Iceland during the summer, including fish that were both light- and dark-adapted, during both day and night. We observed retinomotor responses characteristic of light- and dark-adaptation, but found no difference in the number of synaptic ribbons in the retina. The morpho-physiological changes, appearing as retinomotor responses, are thus not expressed at the synaptic level.  相似文献   
2.
Summary Neuron populations in the retina of the toad, Bufo marinus, were labelled with a monoclonal antibody raised against microtubule-associated protein 2 (MAP2). A subpopulation of cones, probably corresponding to the blue-sensitive small single cones, large diameter amacrine cells in the most proximal row of the inner nuclear layer and some large ganglion cells in the ganglion cell layer were labelled. Double labelling experiments were carried out to establish the colocalisation of MAP2 with known putative transmitter substances of the anuran amacrine cells. MAP2 was colocalised in a subpopulation of serotonin-immunoreactive and in all tyrosine hydroxylase-immunoreactive amacrine cells. The results indicate, that the MAP2 content in the neurons of the anuran retina can be correlated with other well-defined neurochemical and/or physiological properties.On leave from Department of Zoology, Attlia József University, Szeged, Hungary  相似文献   
3.
多歧苏铁的修订   总被引:1,自引:0,他引:1  
中国特有种。产云南东南部元江流域,个旧、蒙自、屏边与河口交界处,海拔200-1000  相似文献   
4.
Summary Microspectrophotometric and electroretinographic investigation of photoreceptor spectral sensitivity in the rudd Scardinius erythrophthalmus has revealed four spectral classes of cone with peak sensitivity in the ultra-violet, violet, green and red regions of the spectrum. These peak sensitivities were found to vary seasonally, and in response to artificial illumination, as a result of a change in the ratio of A1 to A2-based visual pigment in the cells. Short daylengths favoured the A2 pigment whereas long daylengths favoured the A1 analogue. Both the ultra-violet and violet-sensitive pigments have not previously been reported for the rudd. Evidence is presented supporting the hypothesis that the ultra-violet class of cells is not present in older fish.Abbreviation rvi response versus intensity (curve)  相似文献   
5.
A more detailed descrption of a rare and endangered species Cycas multipinnata C.J.Chen et S.Y.Yang from SE Yunnan,China is given.Male and female cones of this species is described for the first time.Cycas longipetiolula D.Y.Wang is reduced and treated as a new synonym of the species.  相似文献   
6.
硬骨鱼胚后发育中,边缘生长区及胚胎裂缝代表神经形成的活跃位点,同时对新的神经胶质细胞和光感器(视锥和视杆细胞)的形成有积极作用。此项工作首次研究红腹罗非鱼(硬骨鱼类辐鳍亚纲)视网膜中视网膜色素上皮和光感器的胚后生长及分化。采用光学和透射电子显微镜术分析了四个大小不同的鱼群组。正如至目前为止,在已研究过的大多数其它硬骨鱼中所观察到的结果一样,我们研究的所有样本中,成年红腹罗非鱼的视网膜表现为气球样扩张。此外,尚具有一弯曲的、有开口的胚胎裂缝,表明眼的不对称性胚后生长。在胚后分化过程中,视网膜色素上皮表现为自外周向中央的梯度变化,即边缘生长区周围,该上皮仅含有球形的黑色素体,而在中央部位发育为长形的黑色素体及顶端突起。同样,发育中的光感受器亦表现为由侧面向中央逐步发展变化的程序。光感觉器先形成1内节及其附属的突起,随后内节分化为一椭圆体加一肌样结构,这两种成分与其它已研究过的硬骨鱼视网膜中观察到的胚胎发育程序大致相符。因此提供了另一线索:硬骨鱼胚后视网膜的生长极大地刺激(促进)了胚胎视网膜的发育。本研究表明:双体视锥细胞可能是发育中的单体视锥细胞裂开的结果[动物学报49(6):813~818,2003]。  相似文献   
7.
We have been investigating the mechanisms of diurnal and circadian regulation of teleost retinomotor movements. In the retinas of lower vertebrates, photoreceptors and melanin pigment granules of the retinal pigment epithelium (RPE) undergo movements at dawn and dusk. These movements continue to occur at subjective dawn and dusk in animals maintained in constant darkness. Cone myoids contract at dawn and elongate at dusk; RPE pigment disperses into the epithelial cells' long apical processes at dawn and aggregates into the cell bodies at dusk. We report here that forskolin, an adenylate cyclase activator, and 3-isobutyl-1-methylxanthine (IBMX), a phosphodiesterase inhibitor, each induces dark-adaptive cone and RPE retinomotor movements in isolated light-adapted green sunfish retinas cultured in constant light. Forskolin induces a 22-fold elevation in retinal cyclic AMP content. Forskolin- and IBMX-induced movements are inhibited approximately 65% and 95%, respectively, by 3,4-dihydroxyphenylethylamine (dopamine). However, dopamine does not inhibit dark-adaptive movements induced by dibutyryl cyclic AMP. Epinephrine is much less effective than dopamine in inhibiting forskolin-induced movements, while phenylephrine and clonidine are totally ineffective. These results are consistent with our previous findings that treatments that increase intracellular cyclic AMP content promote dark-adaptive retinomotor movement. They further suggest that dopamine inhibits adenylate cyclase activity in photoreceptors and RPE cells and thereby favors light-adaptive retinomotor movements.  相似文献   
8.
Summary Localization of iodopsin in the retina of the chicken and Japanese quail was investigated immunohistochemically with the use of monoclonal antibodies (R1-R4) highly specific for R-photopsin (protein moiety of iodopsin). In paraffin sections of the retina, the outer segments of double cones (principal and accessory cones) and of one particular type of single cones were labeled with the antibodies. In addition, reticular cytoplasmic structures, probably representing the Golgi apparatus in a position close to the vitreous pole of the paraboloid and to the outer limiting membrane were intensely stained in the cone cells bearing an immunoreactive outer segment. In whole-mount preparations, 5 types of cone cells were identified according to the color of oil droplets, i.e., red, yellow, pale-green (principal member of double cones), pale-blue and clear, in addition to a sixth type devoid of an oil droplet (accessory member of double cones). The immunohistochemical analysis of the preparations revealed that R-photopsin (suggesting the presence of iodopsin) is localized in the outer segments of both the principal and accessory members of double cones, and the population of single cones displaying a red oil droplet. Other cones endowed with a yellow, blue or clear oil droplet were not labeled with the antibodies used. Similar results were obtained in the retina of the Japanese quail.  相似文献   
9.
Summary Although it is now clear that the outer segments of mature vertebrate cones are regularly renewed, it is not known how a cone outer segment can maintain a tapered shape if its narrower tip is periodically lost by shedding. This problem was addressed by morphological examination of photoreceptors in retinas of anurans (Xenopus laevis) and monkeys (Macaca fascicularis). Light microscopy revealed a marked daily change in the shape of cone outer segments in X. laevis: at light offset they were long and conical, at light onset they had shed their narrow tips, were sharply truncated, and 40% shorter. Electron microscopy revealed previously undescribed fine-structural features in these mature cone outer segments, most notably the presence of many partial membrane infoldings within their distal lamellae. The growth of each of these distal invaginations apparently split 1 pre-existing distal lamella into 2 daughter lamellae of reduced width. The formation of distal invaginations at various heights within a cone outer segment would thus make it longer and narrower. Similar ultrastructural features were also found in cone outer segments of monkey retinas. These findings suggest that during outer segment renewal the tapered shape of mature cone outer segments is maintained via a remodelling process that accompanies the formation of distal invaginations.Portions of this work have been published in abbreviated or preliminary form (Eckmiller 1988, 1989b, c)  相似文献   
10.
Activation of the visual pigment by light in rod and cone photoreceptors initiates our visual perception. As a result, the signaling properties of visual pigments, consisting of a protein, opsin, and a chromophore, 11-cis-retinal, play a key role in shaping the light responses of photoreceptors. The combination of pharmacological, physiological, and genetic tools has been a powerful approach advancing our understanding of the interactions between opsin and chromophore and how they affect the function of visual pigments. The signaling properties of the visual pigments modulate many aspects of the function of rods and cones, producing their unique physiological properties.  相似文献   
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