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Insights into the Prostanoid Pathway in the Ovary Development of the Penaeid Shrimp Penaeus monodon

机译:对虾对虾卵巢发育中前列腺素途径的见解

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摘要

The prostanoid pathway converts polyunsaturated fatty acids (PUFAs) into bioactive lipid mediators, including prostaglandins, thromboxanes and prostacyclins, all of which play vital roles in the immune and reproductive systems in most animal phyla. In crustaceans, PUFAs and prostaglandins have been detected and often associated with female reproductive maturation. However, the presence of prostanoid biosynthesis genes remained in question in these species. In this study, we outlined the prostanoid pathway in the black tiger shrimp Penaeus monodon based on the amplification of nine prostanoid biosynthesis genes: cytosolic phospholipase A2, hematopoietic prostaglandin D synthase, glutathione-dependent prostaglandin D synthase, prostaglandin E synthase 1, prostaglandin E synthase 2, prostaglandin E synthase 3, prostaglandin F synthase, thromboxane A synthase and cyclooxygenase. TBLASTX analysis confirmed the identities of these genes with 51-99% sequence identities to their closest homologs. In addition, prostaglandin F2α (PGF2α), which is a product of the prostaglandin F synthase enzyme, was detected for the first time in P. monodon ovaries along with the previously identified PUFAs and prostaglandin E2 (PGE2) using RP-HPLC and mass-spectrometry. The prostaglandin synthase activity was also observed in shrimp ovary homogenates using in vitro activity assay. When prostaglandin biosynthesis was examined in different stages of shrimp ovaries, we found that the amounts of prostaglandin F synthase gene transcripts and PGF2α decreased as the ovaries matured. These findings not only indicate the presence of a functional prostanoid pathway in penaeid shrimp, but also suggest a possible role of the PGF2α biosynthesis in shrimp ovarian development.
机译:前列腺素途径将多不饱和脂肪酸(PUFA)转化为生物活性脂质介质,包括前列腺素,血栓烷和前列环素,它们在大多数动物门的免疫和生殖系统中均起着至关重要的作用。在甲壳类动物中,已检测到PUFA和前列腺素,它们通常与女性生殖成熟有关。然而,在这些物种中,前列腺素生物合成基因的存在仍然是个问题。在这项研究中,我们基于九种类前列腺素生物合成基因的扩增概述了黑老虎虾斑节对虾中的类前列腺素途径:胞质磷脂酶A2,造血性前列腺素D合酶,谷胱甘肽依赖性前列腺素D合酶,前列腺素E合酶1,前列腺素E 2,前列腺素E合酶3,前列腺素F合酶,血栓烷A合酶和环氧合酶。 TBLASTX分析证实了这些基因的身份,其最接近的同源物具有51-99%的序列同一性。此外,前列腺素F2α(PGF2α)是前列腺素F合酶的产物,它是通过RP-HPLC和质谱法首次在斑节对虾卵巢中与先前鉴定的PUFA和前列腺素E2(PGE2)一起检测到的。光谱法。还使用体外活性测定法在虾卵巢匀浆中观察到前列腺素合酶活性。当在虾卵巢的不同阶段检查前列腺素的生物合成时,我们发现随着卵巢的成熟,前列腺素F合酶基因的转录产物和PGF2α的含量降低。这些发现不仅表明对虾中存在功能性类前列腺素途径,而且还暗示了PGF2α生物合成在虾卵巢发育中的可能作用。

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