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The caudal neurosecretory system: control and function of a novel neuroendocrine system in fish

机译:尾神经分泌系统:鱼类中新型神经内分泌系统的控制和功能

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The caudal neurosecretory system (CNSS) of fish was first defined over 70 years ago yet despite much investigation, a clear physiological role has yet to be elucidated. Although the CNSS structure is as yet thought to be confined to piscine species,the secreted peptides, urotensins I and II (UI and UII), have been detected in a number of vertebrate species, most recently illustrated by the isolation of UII in humans. The apparent importance of these peptides, suggested by their relative phylogenetic conservation, is further supported by the complex control mechanisms associated with their secretion. The CNSS in teleosts is known to receive extensive and diverse innervation from the higher central nervous system, with evidence for the presence ofcholinergic, noradrenergic, serotonergic, and peptidergic descending inputs. Recent observations also suggest the presence of glucocorticoid receptors in the flounder CNSS. supporting previous evidence for a possible role as a pituitary-independent mechanism controlling cortisol secretion. The most convincing evidence as to a physiological role for the CNSS in fish has stemmed from the direct and indirect influence of the urotensins on osmoregulatory function. Recent advances allowing the measurement ofcirculating levels of UII in the flounder have supported this. In addition, there is evidence to suggest some seasonal variation in peptide levels supporting the notion that the CNSS may have an integrative role in the control of coordinated changes inthe reproductive, osmoregulatory and nutritional systems of migratory euryhaline species.
机译:鱼的尾神经分泌系统(CNSS)最早定义于70年前,尽管进行了大量研究,但尚不清楚其明确的生理作用。尽管目前尚认为CNSS结构仅限于鱼类,但已在许多脊椎动物中检出了分泌的肽尿素I和II(UI和UII),最近通过在人类中分离UII进行了说明。这些肽的相对系统发育保守性表明,这些肽的明显重要性进一步得到与其分泌相关的复杂控制机制的支持。已知硬骨质中枢神经系统可从中枢神经系统接受广泛多样的神经支配,并有胆碱能,去甲肾上腺素能,血清素能和肽能降序输入的证据。最近的观察还表明,比目鱼CNSS中存在糖皮质激素受体。支持以前的证据可能作为垂体独立机制控制皮质醇分泌的作用。关于CNSS在鱼类中的生理作用的最令人信服的证据来自于尿紧张素对渗透调节功能的直接和间接影响。允许测量比目鱼UII循环水平的最新进展对此表示支持。另外,有证据表明,肽水平的某些季节性变化支持以下观点,即CNSS可能在控制迁徙性欧人种的生殖,渗透调节和营养系统的协调性变化中发挥综合作用。

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