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首页> 外文期刊>The Journal of Experimental Biology >Emptying and refilling of slime glands in Atlantic (Myxine glutinosa) and Pacific (Eptatretus stoutii) hagfishes
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Emptying and refilling of slime glands in Atlantic (Myxine glutinosa) and Pacific (Eptatretus stoutii) hagfishes

机译:在大西洋(甲骨嘌呤谷氨酸)和太平洋(Eptatretus Stoutii)Hagfshes中排空和重新填充粘液腺体

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Hagfishes are known for their unique defensive slime, which they use toward off gill-breathing predators. Although much is known about the slime cells (gland thread cells and gland mucous cells), little is known about how long slime gland refilling takes, or how slime composition changes with refilling or repeated stimulation of the same gland. Slime glands can be individually electrostimulated to release slime, and this technique was used to measure slime gland refilling times for Atlantic and Pacific hagfish. The amount of exudate produced, the composition of the exudate and the morphometrics of slime cells were analyzed during refilling, and as a function of stimulation number when full glands were stimulated in rapid succession. Complete refilling of slime glands for both species took 3-4 weeks, with Pacific hagfish achieving faster absolute rates of exudate recovery than Atlantic hagfish. We found significant changes in the composition of the exudate and in the morphometrics of slime cells from Pacific hagfish during refilling. Over successive stimulations of full Pacific hagfish glands, multiple boluses of exudate were released, with exudate composition, but not thread cell morphometrics, changing significantly. Finally, histological examination of slime glands revealed slime cells retained in glands after exhaustion. Discrepancies in the volume of cells released suggest that mechanisms other than contraction of the gland musculature alone may be involved in exudate ejection. Our results provide a first look at the process and timing of slime gland refilling in hagfishes, and raise new questions about how refilling is achieved at the cellular level.
机译:Hagishes以其独特的防守粘液而闻名,它们用于呼吸吞咽困难的捕食者。虽然关于粘液细胞(腺体螺纹细胞和腺体粘液细胞)众所周知,但是关于粘液腺重新填充的长度或粘液组合物如何随着相同腺体的重新灌注或重复刺激而变化时几乎是知之甚少。粘液腺可以单独静电以释放粘液,这种技术用于测量大西洋和太平洋豹纹的粘液压缩腺重新填充时间。在重新填充过程中分析了产生的渗出物的量,渗出物的组成和粘液细胞的形态化学,并且当快速连续刺激充分腺体时,作为刺激数的函数。完全重新填充两种物种的粘液腺,花了3-4周,太平洋牙本盆达到了比大西洋豹的渗出物恢复更快。在重新填充过程中发现了渗出物组成和来自太平洋牙龈的粘液细胞的形态学性质的显着变化。过度刺激满太平洋豹纹的刺激,释放出多种渗出物,渗出物组成,但不是螺纹细胞形态晶状体,显着变化。最后,粘液腺体的组织学检查显示出耗尽后保留在腺体中的粘液细胞。释放的细胞体积的差异表明,除了单独的腺体肌肉组织的收缩以外的机制可能涉及渗出物喷射。我们的结果提供了首先看一下Hagfshes中重新填充羊毛腺的过程和时间,并提出关于在细胞水平上实现重新填充的新问题。

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