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盐度变化与细胞体积:河口贻贝格氏贻贝(Geukensia demissa)组织的反应

Salinity change and cell volume: the response of tissues from the estuarine mussel Geukensia demissa.

作者信息

Neufeld D S, Wright S H

机构信息

Department of Physiology, College of Medicine, University of Arizona, Tucson 85724, USA.

出版信息

J Exp Biol. 1996 Jul;199(Pt 7):1619-30. doi: 10.1242/jeb.199.7.1619.

Abstract

The response of cell volume to changes in external salinity was assessed in four tissues (gill, mantle, hemolymph cells and ventricle) of the estuarine mussel Geukensia demissa by using one or more of the following three indicators of cell volume response: changes in cell dimensions, cell water space and cell solute content. All three techniques indicated that short-term volume regulation was generally absent from gill tissue. Lateral cell height in gills, measured using differential interference contrast (DIC) microscopy, increased by approximately 20% after an abrupt exposure to reduced salinity (60% artificial sea water, ASW). There was significant variability in the observance of a regulatory volume decrease (RVD) subsequent to the initial swelling; cells remained swollen for 1 h after low-salinity exposure in two-thirds of the trials, while there was a return of cell volume towards control values in the remaining one-third of the trials. Lateral cell height increased linearly when salinity was gradually decreased from 100 to 60% ASW over 135 min. Cell height then returned to control values when the salinity was abruptly returned to 100% ASW, indicating that an RVD was not elicited by a slow change in salinity of the type normally encountered by estuarine mussels. Cumulative cell water space in gills increased by 47% after exposure to 60% ASW and the cells remained swollen for at least 4 h, returning to control values when gills were returned to 100% ASW. Consistent with the overall lack of an RVD, there was only a small decrease (approximately 5%) in cumulative osmolyte content (primarily taurine, betaine and K+) after 4 h in 60% ASW. Decreases in both cell water space and osmolyte content after 3 weeks of acclimation to 60% ASW indicated a long-term RVD of approximately 60%. Individual cells in the mantle epithelium also generally lacked an RVD in response to lowered salinity. Both abrupt and gradual decreases in salinity caused an increase in mantle cell height to a maximum of 25-30%, and cell height returned to the control height when salinity was abruptly returned to 100% ASW. Corresponding with the lack of an RVD in individual mantle cells, there was no change in solute content of the mantle tissue after 4 h of exposure to low salinity. The response of the volume of spherical hemolymph cells to 1 h of abrupt exposure to low salinity, calculated from measured cell diameters, likewise indicated that an RVD is generally lacking in these hemolymph cells. In the ventricle, however, there was a significant decrease in amino acid and betaine content after 4 h of exposure to low salinity, suggesting tissue-specific variability in the cellular response to salinity change. The consistent lack of a short-term RVD in many tissues may serve to avoid large energetic expenditures associated with repeated volume regulation in the face of the frequent, short-term changes in salinity encountered by estuarine mussels.

摘要

通过使用以下三种细胞体积反应指标中的一种或多种,评估了河口贻贝Geukensia demissa的四种组织(鳃、外套膜、血细胞和心室)对外部盐度变化的细胞体积反应:细胞尺寸变化、细胞水空间和细胞溶质含量。所有这三种技术均表明,鳃组织通常不存在短期体积调节。使用微分干涉对比(DIC)显微镜测量,鳃中的横向细胞高度在突然暴露于低盐度(60%人工海水,ASW)后增加了约20%。在初始肿胀后观察到调节性体积减小(RVD)存在显著差异;在三分之二的试验中,低盐度暴露后细胞在1小时内仍保持肿胀,而在其余三分之一的试验中,细胞体积恢复到对照值。当盐度在135分钟内从100%逐渐降至60% ASW时,横向细胞高度呈线性增加。当盐度突然恢复到100% ASW时,细胞高度随后恢复到对照值,这表明河口贻贝通常遇到的那种盐度缓慢变化不会引发RVD。暴露于60% ASW后,鳃中的累积细胞水空间增加了47%,细胞至少肿胀4小时,当鳃恢复到100% ASW时恢复到对照值。与总体缺乏RVD一致,在60% ASW中暴露4小时后,累积渗透溶质含量(主要是牛磺酸、甜菜碱和K+)仅略有下降(约5%)。适应60% ASW 3周后,细胞水空间和渗透溶质含量均下降,表明长期RVD约为60%。外套膜上皮中的单个细胞通常也缺乏对低盐度的RVD反应。盐度的突然和逐渐降低都会导致外套膜细胞高度增加至最大25 - 30%,当盐度突然恢复到100% ASW时,细胞高度恢复到对照高度。与单个外套膜细胞缺乏RVD一致,暴露于低盐度4小时后,外套膜组织的溶质含量没有变化。根据测量得到的细胞直径计算,球形血细胞体积对1小时突然暴露于低盐度的反应同样表明,这些血细胞通常缺乏RVD。然而在心室中,暴露于低盐度4小时后,氨基酸和甜菜碱含量显著下降,这表明细胞对盐度变化的反应存在组织特异性差异。许多组织中持续缺乏短期RVD可能有助于避免河口贻贝面对频繁的短期盐度变化时,因反复进行体积调节而产生的大量能量消耗。

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