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精子的可冻存性与水通道蛋白 3 的表达或精子头部尺寸均无关联,无论在单峰驼(Camelus dromedarius)中。

Sperm freezability is neither associated with the expression of aquaporin 3 nor sperm head dimensions in dromedary camel (Camelus dromedarius).

机构信息

Department of Animal Reproduction, INIA-CSIC, Madrid, Spain.

Camel Reproduction Centre, Dubai, United Arab Emirates.

出版信息

Theriogenology. 2022 Sep 1;189:230-236. doi: 10.1016/j.theriogenology.2022.06.029. Epub 2022 Jun 28.

DOI:10.1016/j.theriogenology.2022.06.029
PMID:35797755
Abstract

The expression of aquaglyceroporin 3 (AQP-3) has been demonstrated in the spermatozoa of several mammalian species and its role has been associated with cryotolerance. Post-thaw sperm quality from individual dromedary males with different response to freezing-thawing process was evaluated through sperm head morphometry. In order to understand the cellular mechanisms affected by cryoinjury we have explored the presence and distribution of sperm AQP-3 using western blotting and immunocytochemistry. WB showed different intensity of the specific signal bands at 28 kDa. Immunofluorescence assessments allowed us to identify five different and clear AQP-3 distribution patterns of labelling in the sperm plasma membrane; acrosome, post-acrosome, mid-piece, and principal and final tail. Although expression of AQP-3 varied among male ejaculates, the individual sperm response to freeze-thawing was not associated with AQP-3 expression. Thus, AQP3 expressions do not seem like a reliable predictor of sperm response to freeze-thawing process in this species. This work is the first to describe the morphometric characteristics of the heads of dromedary spermatozoa. No correlation was found between sperm head dimensions and sperm quality variables after freeze-thawing suggesting that dromedary camel sperm head morphometry is also not a reliable predictor of cryosurvival.

摘要

水通道蛋白 3(AQP-3)的表达已在几种哺乳动物的精子中得到证实,其作用与抗冻性有关。通过精子头部形态计量学评估对冷冻-解冻过程反应不同的个体单峰驼雄性的解冻后精子质量。为了了解受冷冻损伤影响的细胞机制,我们使用 Western blot 和免疫细胞化学探索了精子 AQP-3 的存在和分布。WB 显示在 28 kDa 处具有不同强度的特异性信号带。免疫荧光评估使我们能够识别精子质膜中五种不同且清晰的 AQP-3 标记分布模式;顶体、顶体后、中段、主段和末段。尽管 AQP-3 的表达在雄性精液中有所不同,但个体精子对冷冻-解冻的反应与 AQP-3 的表达无关。因此,AQP3 的表达似乎不是该物种精子对冷冻-解冻过程反应的可靠预测指标。这项工作首次描述了单峰驼精子头部的形态计量特征。冷冻-解冻后,精子头部尺寸与精子质量变量之间没有相关性,这表明单峰驼精子头部形态计量也不是冷冻存活的可靠预测指标。

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