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水螅早期发育中的极性形态发生:铯、神经递质及一种内在头部激活因子对模式形成的作用

Polar morphogenesis in early hydroid development: Action of caesium, of neurotransmitters and of an intrinsic head activator on pattern formation.

作者信息

Müller Werner A, Mitze Arntraud, Wickhorst Jörn-P, Meier-Menge Hans M

机构信息

Zoological Institute, Technical University, Pockelsstr. 10a, D-3300, Braunschweig, Germany.

出版信息

Wilehm Roux Arch Dev Biol. 1977 Dec;182(4):311-328. doi: 10.1007/BF00848383.

Abstract
  1. Polar pattern formation and morphogenesis during metamorphosis ofHydractinia echinata are pre-programmed by the spatial distribution of morphogenetic potencies along the body axis of the planula larva. This prepattern becomes manifest when parts of larvae are brought to metamorphosis immediately after isolation. The anterior region forms only stolons, the posterior only a head. The middle region can develop stolons as well as heads. The potencies for head and stolon formation establish gradients with opposite directions. 2) The origin of this pattern during embryogenesis and its expression in the course of metamorphosis can be influenced by chemical stimuli. Two alternative effects can be obtained: activation of head formation at the expense of stolonal growth (=oralization); hyperdevelopment of stolon tissue at the expense of head structures (=aboralization). 3) Caesium ions temporarily applied during cleavage result in larvae which complete metamorphosis with symptoms of aboralization. Cs ions applied during early metamorphosis (disc stage) exert an oralizing influence. The sensitive periods coincide with phases of high Na-K-ATPase activity. Ouabain abolishes the morphogenetic action of Cs. 4) Strong symptoms of oralization or aboralization can also be evoked by exposing disc stages to neuropharmacological agents. Acetylcholine (carbachol) brings about oralization; serotonin causes aboralization. 5) In planulae a substance can already be traced which corresponds to the neurosecretory head activator known from adult organisms. Along with initiation of metamorphosis, head activator activity rises steeply and already approaches its final level in early metamorphosis. Activities extracted from metamorphosing larvae or various adult Cnidaria when applied to disc stages promote head formation without affecting stolonal growth. Dose response curves display optimum peaks. 6) The significance of pre-programming and of neuroid functions in polarized patterning are discussed.
摘要
  1. 刺胞水螅在变态过程中的极性模式形成和形态发生是由形态发生潜能沿浮浪幼虫体轴的空间分布预先设定的。当幼虫部分在分离后立即进入变态时,这种预模式就会显现出来。前部区域只形成匍匐茎,后部只形成头部。中部区域既能发育匍匐茎也能发育头部。头部和匍匐茎形成的潜能建立了相反方向的梯度。2) 这种模式在胚胎发育过程中的起源及其在变态过程中的表达会受到化学刺激的影响。可以获得两种不同的效应:以匍匐茎生长为代价激活头部形成(=口化);以头部结构为代价使匍匐茎组织过度发育(=反口化)。3) 在卵裂期间临时施加铯离子会导致幼虫完成变态并出现反口化症状。在变态早期(盘状阶段)施加铯离子会产生口化影响。敏感期与高钠钾ATP酶活性阶段一致。哇巴因会消除铯的形态发生作用。4) 将盘状阶段暴露于神经药理学试剂也能引发强烈的口化或反口化症状。乙酰胆碱(卡巴胆碱)导致口化;血清素导致反口化。5) 在浮浪幼虫中已经可以追踪到一种物质,它与成年生物体中已知的神经分泌头部激活剂相对应。随着变态的开始,头部激活剂活性急剧上升,在变态早期就已接近其最终水平。从正在变态的幼虫或各种成年刺胞动物中提取的活性物质应用于盘状阶段时,可促进头部形成而不影响匍匐茎生长。剂量反应曲线显示出最佳峰值。6) 讨论了预编程和类神经功能在极化模式形成中的意义。

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