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代谢组学显示,澳大利亚野狗具有独特的血浆特征。

Metabolomics shows the Australian dingo has a unique plasma profile.

机构信息

School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, NSW, 2052, Australia.

Bioanalytical Mass Spectrometry Facility, University of New South Wales, Sydney, NSW, 2052, Australia.

出版信息

Sci Rep. 2021 Mar 4;11(1):5245. doi: 10.1038/s41598-021-84411-6.

Abstract

Dingoes occupy a wide range of the Australian mainland and play a crucial role as an apex predator with a generalist omnivorous feeding behaviour. Dingoes are ecologically, phenotypically and behaviourally distinct from modern breed dogs and have not undergone artificial selection since their arrival in Australia. In contrast, humans have selected breed dogs for novel and desirable traits. First, we examine whether the distinct evolutionary histories of dingoes and domestic dogs has lead to differences in plasma metabolomes. We study metabolite composition differences between dingoes (n = 15) and two domestic dog breeds (Basenji n = 9 and German Shepherd Dog (GSD) n = 10). Liquid chromatography mass spectrometry, type II and type III ANOVA with post-hoc tests and adjustments for multiple comparisons were used for data evaluation. After accounting for within group variation, 62 significant metabolite differences were detected between dingoes and domestic dogs, with the majority of differences in protein (n = 14) and lipid metabolites (n = 12), mostly lower in dingoes. Most differences were observed between dingoes and domestic dogs and fewest between the domestic dog breeds. Next, we collect a second set of data to investigate variation between pure dingoes (n = 10) and dingo-dog hybrids (n = 10) as hybridisation is common in regional Australia. We detected no significant metabolite differences between dingoes and dingo-dog hybrids after Bonferroni correction. However, power analysis showed that increasing the sample size to 15 could result in differences in uridine 5'-diphosphogalactose (UDPgal) levels related to galactose metabolism. We suggest this may be linked to an increase in Amylase 2B copy number in hybrids. Our study illustrates that the dingo metabolome is significantly different from domestic dog breeds and hybridisation is likely to influence carbohydrate metabolism.

摘要

袋狼广泛分布于澳大利亚大陆,作为顶级掠食者,具有广泛的杂食性进食行为,对生态系统有着至关重要的作用。袋狼在生态、表型和行为上与现代犬种明显不同,自抵达澳大利亚以来,它们没有经历过人工选择。相比之下,人类选择了犬种来获得新的、理想的特征。首先,我们研究了袋狼和家犬截然不同的进化历史是否导致了它们血浆代谢组的差异。我们研究了 15 只袋狼、9 只巴仙吉犬和 10 只德国牧羊犬之间的代谢物组成差异。采用液相色谱-质谱联用、二型和三型方差分析以及事后检验和多重比较调整进行数据分析。在考虑组内变异后,我们检测到袋狼和家犬之间有 62 种显著的代谢物差异,其中大多数差异存在于蛋白质(n=14)和脂质代谢物(n=12)中,且袋狼中的这些代谢物水平更低。大多数差异存在于袋狼和家犬之间,而家犬之间的差异最少。接下来,我们收集了第二组数据,以研究纯袋狼(n=10)和袋狼-犬杂种(n=10)之间的变异,因为杂种在澳大利亚地区很常见。在经过 Bonferroni 校正后,我们没有检测到袋狼和袋狼-犬杂种之间有显著的代谢物差异。然而,通过功效分析,我们发现如果将样本量增加到 15 个,可能会导致与半乳糖代谢相关的尿苷二磷酸半乳糖(UDPgal)水平的差异。我们认为这可能与杂种中淀粉酶 2B 拷贝数的增加有关。我们的研究表明,袋狼的代谢组与家犬品种有显著差异,杂交可能会影响碳水化合物代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10fc/7933249/571bcd3d8b65/41598_2021_84411_Fig1_HTML.jpg

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