Ripley Jennifer L, Foran Christy M
Department of Biology, West Virginia University, Morgantown, WV 26506, USA.
J Comp Physiol B. 2009 Apr;179(3):325-33. doi: 10.1007/s00360-008-0316-2. Epub 2008 Nov 13.
Seahorses, sea dragons and pipefishes of the teleost family Syngnathidae are unique in that embryos develop within specialized brooding structures of the male. We enriched brooding Syngnathus fuscus and Syngnathus floridae males with injections of L-lysine-[(15)N(2)] and 16:0-palmitic acid 1-[(13)C] to demonstrate embryonic uptake of paternally-derived nutrients. While all embryos demonstrated amino acid enrichment, late stages showed significantly higher [(15)N], indicating greater utilization of paternal resources as yolk reserves diminished and embryonic energy demands increased. Limited embryonic [(13)C] uptake, defined as less than 10% of adult enrichment, in 75 and 81% of S. floridae and S. fuscus respectively signified rapid lipid metabolism and thus the need for greater enrichment. Interspecific differences in embryonic uptake of paternally-derived nutrients were not demonstrated. However, interspecific differences in egg nutrient reserves and fry size but comparable fry nutrient levels along with data from a published paternal exposure study indicate paternal transfer in S. fuscus most likely compensates for the comparative egg nutrient deficiency. This study is the first to our knowledge to provide direct evidence for the functional significance of the brood pouch in nutrient provisioning. These results add comparative information on the diversity of Syngnathid paternal care and further our understanding of paternal influence on development.
硬骨鱼科海龙科的海马、叶形海龙和管口鱼很独特,因为其胚胎在雄性特有的育儿结构中发育。我们给正在育儿的褐管口鱼和弗罗里达管口鱼雄性注射L-赖氨酸-[(15)N(2)]和16:0-棕榈酸1-[(13)C],以证明胚胎摄取了来自父本的营养物质。虽然所有胚胎都显示出氨基酸富集,但后期阶段的[(15)N]显著更高,这表明随着卵黄储备减少和胚胎能量需求增加,对父本资源的利用更多。在弗罗里达管口鱼和褐管口鱼中,分别有75%和81%的胚胎[(13)C]摄取有限(定义为低于成体富集的10%),这表明脂质代谢迅速,因此需要更多的富集。未发现胚胎摄取来自父本营养物质的种间差异。然而,卵营养储备和幼鱼大小的种间差异以及幼鱼营养水平相当,再加上一项已发表的父本暴露研究的数据表明,褐管口鱼中的父本转移很可能弥补了相对的卵营养不足。据我们所知,这项研究首次为育儿袋在营养供应方面的功能意义提供了直接证据。这些结果增加了关于海龙科父本照顾多样性的比较信息,并进一步加深了我们对父本对发育影响的理解。