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pH controls spermatozoa motility in the Pacific oyster (Crassostrea gigas)

机译:pH值控制太平洋牡蛎(Crassostrea gigas)的精子活力。

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Investigating the roles of chemical factors stimulating and inhibiting sperm motility is required to understand the mechanisms of spermatozoa movement. In this study, we described the composition of the seminal fluid (osmotic pressure, pH, and ions) and investigated the roles of these factors and salinity in initiating spermatozoa movement in the Pacific oyster,Crassostrea gigas. The acidic pH of the gonad (5.82±0.22) maintained sperm in the quiescent stage and initiation of flagellar movement was triggered by a sudden increase of spermatozoa external pH (pHe) when released in seawater (SW). At pH 6.4, percentage of motile spermatozoa was three times higher when they were activated in SW containing 30?mM NH4Cl, which alkalinizes internal pH (pHi) of spermatozoa, compared to NH4Cl-free SW, revealing the role of pHi in triggering sperm movement. Percentage of motile spermatozoa activated in Na+-free artificial seawater (ASW) was highly reduced compared to ASW, suggesting that change of pHi triggering sperm motility was mediated by a Na+/H+exchanger. Motility and swimming speed were highest in salinities between 33.8 and 42.7‰ (within a range of 0 to 50 ‰), and pH values above 7.5 (within a range of 4.5 to 9.5).
机译:需要研究化学因素刺激和抑制精子运动的作用,以了解精子运动的机制。在这项研究中,我们描述了精液的组成(渗透压,pH和离子),并研究了这些因素和盐度在启动太平洋牡蛎(Crassostrea gigas)中精子运动中的作用。性腺的酸性pH值(5.82±0.22)使精子处于静止状态,而鞭毛运动的开始是由释放到海水(SW)中的精子外部pH值(pHe)突然增加触发的。在pH值为6.4时,与不含NH4Cl的SW相比,在含30?mM NH4Cl的SW中活化的能动精子的百分比高3倍,从而使精子的内部pH(pHi)碱化,从而揭示了pHi在触发精子运动中的作用。 。与ASW相比,在不含Na +的人工海水(ASW)中活化的能动精子的百分比大大降低,这表明触发Na + / H +交换子介导的pHi触发精子活力的变化。盐度在33.8至42.7‰(0至50‰的范围内)和pH值在7.5以上(4.5至9.5的范围内)时,运动和游泳速度最高。

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