AI Article Synopsis

  • The hemp plant has historically been used for industrial, medicinal, and nutritional purposes, particularly hemp seeds, which are nutrient-rich and beneficial for animal nutrition.
  • This study is the first to use RNA sequencing to analyze blood samples from ewes fed a diet with or without hemp seed supplement, identifying 314 differentially regulated genes associated with energy production and lactose synthesis.
  • Results show that supplementing ewes' diets with hemp seeds enhances their energy pathways and increases milk lactose content, potentially improving dairy product profitability while also providing better resilience against cold temperatures.

Article Abstract

The hemp plant (Cannabis sativa L.) has a long tradition of being used for many different purposes such as industry, medicine and nutrition. In particular, because hemp seed (HS) is rich in oil protein and considerable amounts of dietary fiber, vitamins and minerals that are particularly suitable also for animal nutrition. Different studies have evaluated HS on qualitative and quantitative properties of livestock products but as of today, nobody has investigated the molecular pathway behind HS supplementation in farm animals. Thus, in this study, we will report the first RNA sequencing of the whole-blood transcriptome of ewes fed either with a controlled diet (CTR, n = 5) or with a diet supplemented with 5% of hemp seed (HSG, n = 5). Applying a false discovery rate (FDR) <0.05 and a logFC either higher than 0.5 or lower than -0.5, we identified 314 differentially regulated genes in the HS-supplemented group compared to the CTR group. Several genes encoding for different subunits belonging to the complex I, II, III, IV and ATP-synthase were up-regulated making oxidative phosphorylation (FDR: 3.05e-19) and thermogenesis (FDR: 2.17e-16) the highest up-regulated pathways in our study. Moreover, we found up-regulation in different genes involved in lactose biosyntheses such as GALK1 and PGM1 and, as a result, we observed a statistically higher lactose percentage in the HSG group (p < 0.05). These results indicate that HS supplementation positively affects the energy production pathway in lactating ewes conferring them also more resistance to adverse climatic conditions such as low temperature. Finally, the higher milk lactose content makes the derived dairy products more profitable.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6838114PMC
http://dx.doi.org/10.1038/s41598-019-52712-6DOI Listing

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