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首页> 外文期刊>Journal of experimental zoology, Part A. Comparative experimental biology >Early carbonic anhydrase induction in the gills of the blue crab, Callinectes sapidus, during low salinity acclimation is independent of ornithine decarboxylase activity.
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Early carbonic anhydrase induction in the gills of the blue crab, Callinectes sapidus, during low salinity acclimation is independent of ornithine decarboxylase activity.

机译:在低盐度驯化过程中,蓝蟹,Callinectes sapidus ill的早期碳酸酐酶诱导与鸟氨酸脱羧酶活性无关。

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摘要

Carbonic anhydrase (CA) induction in the gills of the euryhaline blue crab, Callinectes sapidus, was measured in response to lowered environmental salinity. Simultaneous measurements of ornithine decarboxylase (ODC) activity were made in gills and nonbranchial tissues to determine whether ODC activity and the resultant synthesis of polyamines played a role in the initiation and regulation of CA induction. CA induction in the seventh gill pair (G7) was proportional to the decrease in ambient salinity, but activity in the third gill pair (G3) remained unchanged. Induction began by 24 hr after low salinity transfer, much earlier than previously reported, and peaked after 4 days. The magnitude of salinity change affected the magnitude of CA induction only, not the time course. A general cell volume regulatory response, as measured by the appearance of total ninhydrin-positive substances (TNPS) in the hemolymph, was initiated within 4 hr of low salinity transfer and was complete by 24 hr post-transfer. General cell swelling may be the initial signal in the pathway of CA induction. ODC activity in the gills of acclimated animals was not influenced by salinity. For crabs transferred from 35 to 25 ppt, ODC activity did not change significantly over the time course of acclimation. There was an early but transient increase in ODC activity in all tissues for crabs acclimated to 28 ppt and transferred to 15 ppt. Induction of ODC activity does not appear to be a precursor for CA induction; therefore, it does not appear that polyamines are substantially involved in the up-regulation of transport enzyme activity in low salinity. ODC, and resultant polyamine synthesis, may, however, have a role in cell volume regulation.
机译:响应于降低的环境盐度,测量了在淡碱性蓝蟹,Callinectes sapidus的ill中的碳酸酐酶(CA)诱导。在g和非支气管组织中同时测量鸟氨酸脱羧酶(ODC)活性,以确定ODC活性和所得多胺合成是否在CA诱导的启动和调节中起作用。第七对ill(G7)中的CA诱导与环境盐度的下降成比例,但第三对pair(G3)中的活性保持不变。低盐度转移后24小时开始诱导,比以前报道的要早得多,并在4天后达到峰值。盐度变化的幅度仅影响CA诱导的幅度,而不影响时间进程。通过血淋巴中总茚三酮阳性物质(TNPS)的出现来衡量,一般的细胞体积调节反应在低盐度转移后4小时内开始,并在转移后24小时内完成。一般细胞肿胀可能是CA诱导途径中的初始信号。驯化动物the中的ODC活性不受盐度的影响。对于从35 ppt转移到25 ppt的螃蟹,ODC活性在适应过程中没有明显变化。适应于28 ppt并转移至15 ppt的螃蟹在所有组织中的ODC活性都有早期但短暂的增加。诱导ODC活性似乎不是诱导CA的先兆。因此,在低盐度条件下,多胺似乎基本上不参与转运酶活性的上调。但是,ODC和所得的多胺合成可能在细胞体积调节中起作用。

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