Malau-Aduli Aeo, Otto, Bénédicte Suybeng, A. Kashani, P. Lane, B. Malau-Aduli, P. Nichols
{"title":"Gene Expression Profiles of Aralkylamine N-Acetyltransferase, B-cell Translocation Gene-2 and Fatty Acid Synthase in Pasture-based Primiparous Holstein-Friesian Dairy Cows Supplemented with Crude Degummed Canola Oil","authors":"Malau-Aduli Aeo, Otto, Bénédicte Suybeng, A. Kashani, P. Lane, B. Malau-Aduli, P. Nichols","doi":"10.4172/2169-0111.1000123","DOIUrl":null,"url":null,"abstract":"The effect of oil-rich supplements on the expression of genes involved in lipogenesis and reproduction in pasturebased dairy cows is currently unknown, or at best, scanty and limited to impacts on cow liveweight, body condition score, milk composition, fatty acid and plasma metabolite profiles only. This research investigated the gene expression patterns of Aralkylamine N-acetyltransferase (AANAT), B-cell translocation gene-2 (BTG2) and Fatty Acid Synthase (FASN) genes in response to incremental levels of dietary crude degummed canola oil (CDCO). We tested the hypothesis that the relative mRNA abundance and gene expression profiles of AANAT, BTG2 and FASN in primiparous Holstein-Friesian cows will be up-regulated in response to post-partum dietary supplementation with CDCO in a typical pasture-based dairy production system. Thus, the primary objective of this study was to investigate the expression of AANAT, BTG2 and FASN genes in response to incremental levels of CDCO. A random allocation of primiparous Holstein-Friesian dairy cows into four treatment groups comprising wheat-based pelleted with no supplemental CDCO (control), or with CDCO added at 25 ml kg-1 DM (low), 35 ml kg-1 DM (medium) and 50 ml kg-1 DM (high) was utilized in a ten-week experimental feeding trial including two weeks of adjustment. Both level of supplementation and their interaction with duration were significant sources of variation (P 0.05). The high (0.67 fold), medium (0.87 fold) and low (0.56 fold) treatments had suppressed BTG2 expressions compared to the control (1.0 fold) group. The low expression of BTG2 might be important when the reproductive system of cows is recovering from the effect of gestation and new cell growth is required.","PeriodicalId":89733,"journal":{"name":"Advancements in genetic engineering","volume":"4 1","pages":"1-10"},"PeriodicalIF":0.0000,"publicationDate":"2015-07-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Advancements in genetic engineering","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.4172/2169-0111.1000123","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 2
Abstract
The effect of oil-rich supplements on the expression of genes involved in lipogenesis and reproduction in pasturebased dairy cows is currently unknown, or at best, scanty and limited to impacts on cow liveweight, body condition score, milk composition, fatty acid and plasma metabolite profiles only. This research investigated the gene expression patterns of Aralkylamine N-acetyltransferase (AANAT), B-cell translocation gene-2 (BTG2) and Fatty Acid Synthase (FASN) genes in response to incremental levels of dietary crude degummed canola oil (CDCO). We tested the hypothesis that the relative mRNA abundance and gene expression profiles of AANAT, BTG2 and FASN in primiparous Holstein-Friesian cows will be up-regulated in response to post-partum dietary supplementation with CDCO in a typical pasture-based dairy production system. Thus, the primary objective of this study was to investigate the expression of AANAT, BTG2 and FASN genes in response to incremental levels of CDCO. A random allocation of primiparous Holstein-Friesian dairy cows into four treatment groups comprising wheat-based pelleted with no supplemental CDCO (control), or with CDCO added at 25 ml kg-1 DM (low), 35 ml kg-1 DM (medium) and 50 ml kg-1 DM (high) was utilized in a ten-week experimental feeding trial including two weeks of adjustment. Both level of supplementation and their interaction with duration were significant sources of variation (P 0.05). The high (0.67 fold), medium (0.87 fold) and low (0.56 fold) treatments had suppressed BTG2 expressions compared to the control (1.0 fold) group. The low expression of BTG2 might be important when the reproductive system of cows is recovering from the effect of gestation and new cell growth is required.
富油补充剂对牧场奶牛脂肪生成和繁殖相关基因表达的影响目前尚不清楚,或者充其量只是对奶牛活重、身体状况评分、牛奶成分、脂肪酸和血浆代谢物谱的影响有限。本研究研究了花生ar烷基胺n -乙酰转移酶(AANAT)、b细胞易位基因-2 (BTG2)和脂肪酸合成酶(FASN)基因在饲粮粗脱胶菜籽油(CDCO)添加水平增加时的表达模式。我们验证了在典型的牧场奶牛生产系统中,初产荷斯泰因-弗里斯奶牛中AANAT、BTG2和FASN的相对mRNA丰度和基因表达谱会因产后饲粮中添加CDCO而上调。因此,本研究的主要目的是研究AANAT、BTG2和FASN基因的表达对CDCO水平增加的响应。将初产荷斯泰因-弗里西亚奶牛随机分为4个处理组,分别为小麦基颗粒,不添加CDCO(对照组)、CDCO添加量分别为25 ml kg-1 DM(低)、35 ml kg-1 DM(中)和50 ml kg-1 DM(高),进行为期10周的试验饲养,其中包括2周的调整期。饲粮添加水平及其与持续时间的交互作用是差异的显著来源(p0.05)。与对照组(1.0倍)相比,高(0.67倍)、中(0.87倍)和低(0.56倍)处理抑制了BTG2的表达。BTG2的低表达可能在奶牛生殖系统从妊娠影响中恢复并需要新细胞生长时具有重要意义。