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Production of nitric oxide by sperm of the steelhead (Oncorhynchus mykiss) and its actions on motility and respiration

机译:硬头精子(Oncorhynchus mykiss)产生的一氧化氮及其对运动和呼吸的作用

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The objective was to characterize nitric oxide (NO) involvement in steelhead sperm physiology with respect to modulation of motility and quiescent sperm respiration, and to assess NO production. Activation of sperm motility in the presence of a NO scavenger (PTIO) decreased path straightness (STR; from 62 to 44%, P < 0.05) and wobble (indicator of lateral head movement, WOB; from 68 to 61%, P < 0.05), whereas activating solution containing a NO donor (SNAP) increased STR (from 62 to 71%, P < 0.05). Neither SNAP nor PTIO impacted percent motility or velocity when present in activating media alone. Incubation of quiescent sperm with SNAP reduced motility (from 96 to 53%, P < 0.0001), curvilinear velocity (from 156 to 83 mu m/s P < 0.0001), and WOB (from 77 to 50%, P < 0.0001); however, these effects were abolished by inclusion of PTIO. Response of quiescent sperm to SNAP was reversible with time, whereas PTIO alone had no effect. Incubation of sperm with SNAP decreased respiration to approximately one half of control (P < 0.05). With the fluorescent NO indicator, DAF-FM DA, intracellular NO was detected in quiescent, but not activated, sperm. Incubation of activated sperm in an immobilization buffer resulted in reappearance of NO. In addition to illustrating NO sensitivity of steelhead sperm motility, we inferred that the effects of NO on quiescent sperm occurred via inhibition of respiration, and that these sperm produced NO prior to activation
机译:目的是表征一氧化氮(NO)在调节运动性和静息精子呼吸方面参与钢头精子生理,并评估NO的产生。在没有NO清除剂(PTIO)的情况下激活精子运动会降低路径直线度(STR;从62%降低至44%,P <0.05)和摆动(头部横向运动指标,WOB;从68%降低至61%,P <0.05) ),而含有NO供体(SNAP)的活化溶液可增加STR(从62%增至71%,P <0.05)。当单独存在于活化介质中时,SNAP和PTIO都不会影响运动或速度百分数。用SNAP孵育静止的精子会降低活力(从96%降至53%,P <0.0001),曲线速度(从156μm/ s降至P <0.0001)和WOB(从77%降至50%,P <0.0001);但是,通过包含PTIO消除了这些影响。静态精子对SNAP的反应随时间可逆,而仅PTIO无效。用SNAP孵育精子可将呼吸作用降低至对照组的一半左右(P <0.05)。使用荧光NO指示剂DAF-FM DA,可以在静止但未激活的精子中检测到细胞内NO。将活化的精子在固定缓冲液中孵育会导致NO的重新出现。除了说明钢头精子运动对NO的敏感性外,我们推断NO对静止精子的作用是通过抑制呼吸而发生的,并且这些精子在激活前会产生NO。

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