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Evaluation of DNase activity in seminal plasma and uptake of exogenous DNA by spermatozoa of the Brazilian flounder Paralichthys orbignyanus

机译:巴西·帕拉伯血糖血糖的精子血浆中血浆中DNA血浆中DNA的吸收评价

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摘要

Sperm mediated gene transfer (SMGT) has been successfully used in mammals, amphibians, birds, and some invertebrates. In fish, this methodology has failed or had poor efficiency for the production of transgenic specimens, presumably because the processes regulating the interaction between spermatozoa and exogenous DNA are not well understood. Therefore, the objective was to develop a SMGT protocol for the Brazilian flounder Paralichthys orbignyanus, with an emphasis on the role of seminal plasma DNase on exogenous DNA uptake by fish spermatozoa. In this study, there was strong DNase activity in the seminal plasma of P. orbignyanus; however, this DNase activity was decreased or eliminated by washing the spermatozoa with solutions containing EDTA (DNase activity was completely inhibited by 40 mM EDTA). Three washing solutions were tested, all of which maintained sperm quality. Moreover, it was determined that the no more than 50 ng of exogenous DNA/106 cells should be used for SMGT in fish. Finally, it was demonstrated that fish spermatozoa were capable of spontaneous uptake of exogenous DNA after elimination of DNase activity; this was confirmed by exogenous DNA amplification (PCR using sperm genomic DNA as a template) after DNase I treatment. We concluded that whereas DNase activity was an important obstacle for exogenous DNA uptake by fish spermatozoa;controlling this activity improved the efficiency of SMGT in fish.
机译:精子介导的基因转移(SMGT)已成功用于哺乳动物,两栖动物,鸟类和一些无脊椎动物。在鱼类中,这种方法已经失败或效率较差的转基因标本,可能是因为调节精子和外源DNA之间的相互作用的方法并不了解。因此,该目的是为巴西比尔普罗拉科血糖组织开发一个SMGT议定书,重点是精子血浆DNase对鱼精子的外源DNA摄取的作用。在该研究中,P. Orbignyanus的精液中存在强烈的DNase活性;然而,通过用含有EDTA的溶液洗涤精子来降低或消除该DNase活性(DNA酶活性被40mM EDTA完全抑制)。测试了三种洗涤溶液,所有这些都保持了精子质量。此外,确定不超过50ng的外源DNA / 106细胞用于鱼类中的SMGT。最后,证明鱼精子能够在消除DNase活性后自发摄取外源性DNA;在DNA酶I处理后,通过外源DNA扩增(PCR使用精子基因组DNA作为模板)来证实这一点。我们得出结论,虽然DNA酶活性是鱼精子外源性DNA吸收的重要障碍;控制该活动提高了鱼类中SMGT的效率。

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