| Literature DB >> 29026537 |
Ping Tian1, Yanwen Luo1, Xian Li2, Jing Tian1, Shiyu Tao1, Canfeng Hua1, Yali Geng1, Yingdong Ni1, Ruqian Zhao1.
Abstract
BACKGROUND: It is well known that feeding a high concentrate (HC) diet to lactating ruminants likely induces subacute ruminal acidosis (SARA) and leads to a decrease in milk fat production. However, the effects of feeding a HC diet for long periods on milk fatty acids composition and the mechanism behind the decline of milk fat still remains poorly understood. The aim of this study was to investigate the impact of feeding a HC diet to lactating dairy goats on milk fat yield and fatty acids composition with an emphasis on the mechanisms underlying the milk fat depression. Seventeen mid-lactating dairy goats were randomly allocated to three groups. The control treatment was fed a low-concentrate diet (35% concentrate, n = 5, LC) and there were two high-concentrate treatments (65% concentrate, HC), one fed a high concentrate diet for a long period (19 wks, n = 7, HL); one fed a high concentrate diet for a short period of time (4 wk, n = 5, HS). Milk fat production and fatty acids profiles were measured. In order to investigate the mechanisms underlying the changes in milk fat production and composition, the gene expression involved in lipid metabolism and DNA methylation in the mammary gland were also analyzed.Entities:
Keywords: DNA methylation; Gene expression; Goat; High concentrate diet; Milk fat
Year: 2017 PMID: 29026537 PMCID: PMC5623059 DOI: 10.1186/s40104-017-0204-2
Source DB: PubMed Journal: J Anim Sci Biotechnol ISSN: 1674-9782
Fig. 1The changes of milk yield, milk fat and protein. a Daily milk yield (kg/d); b Milk fat content (%); c Milk protein content (%). The asterisk * indicates a significant difference between HL and LC control group
PCR primer sequences of the target genes
| Target genes | Primer sequences | GenBank accession No. | PCR products, bp |
|---|---|---|---|
|
| F:5′-CAAGTCGCCTTTCTCCCGAT-3’ |
| 177 |
| R:5′-CTGCAATCACACGGAGAGCTT-3’ | |||
|
| F:5′-TATGACGGCAGCAGTTACACC-3’ |
| 201 |
| R:5′-CACCTCGATCTCAGCATAGCAC-3’ | |||
|
| F:5′-CCCCAAGCTCTTTGACAACCG-3’ |
| 100 |
| R:5′-CAGCTCCTTGTACACGTCACC-3’ | |||
|
| F:5′-TGAGACCACGGCAGATGA-3’ |
| 230 |
| R:5′-TAGCCCACTGGCAGAAGA-3’ | |||
|
| F:5′-CATAAACTTAGATGAAGGTGCTC-3’ |
| 116 |
| R:5′-CACCGTTCATGACACATTCCA −3’ | |||
|
| F:5′-AAGCCCTTCAAGGACATG-3’ |
| 100 |
| R:5′-AGAGCCAGTAGAAGAAGATG-3’ | |||
|
| F:5′- CCAGCCACAGTTCATCGGTA-3’ |
| 103 |
| R:5′-CAGTCTTCTCCTCGAACTCC-3’ | |||
|
| F:5′-TGAGCGACTGCGACTTCC-3’ |
| 223 |
| R:5′-CGGCGGACTCCATACCTCT-3’ | |||
|
| F:5′-TGAGCCAGAGGAAACCA-3’ |
| 157 |
| R:5′-ACACGCCAGCATAGCC-3’ | |||
|
| F:5′-CGCAGTGGCATCATTAG-3’ |
| 183 |
| R:5′-CTCGGTCTGTCCGTAGC-3’ | |||
|
| F:5′-ACGCCATCGAGAAACGCTAC-3’ |
| 181 |
| R:5′-GTGCGCAGACTCAGGTTCTC-3’ | |||
|
| F:5′-CCTTCACCACCGTTGACTTCT-3’ |
| 145 |
| F:5′-GATACAGGCTCCACTTTGATTGC-3’ | |||
|
| F:5′-ATAATACTGCGGATGGA-3’ |
| 165 |
| R:5′-TCTCAACGAAAGGTGG-3’ | |||
|
| F:5′-GTGGCTGACACCAAAGGG-3’ |
| 175 |
| R:5′-CGGTCACCAGCGAGTAAAT-3’ | |||
|
| F:5′-GTGGGTTGGCTGCTTG-3’ |
| 243 |
| R:5′-CCAGGTGGCATTGAGC-3’ | |||
|
| F:5′-GCATCGCCTGGTTCACT-3’ |
| 249 |
| R:5′-GGAAGATGTTGGGTTTGG-3’ | |||
|
| F:5′-GGGTCATCTCTCTGCACCT-3’ |
| 176 |
| R:5′-GGTCATAAGTCCCTCCACGA-3’ |
PCR primer sequences using for MeDIP
| Target genes | MeDIP primer sequence | GenBank accession No. | PCR products, bp |
|---|---|---|---|
|
| F:5′-GGCACTAATCCCAAGCAG-3’ | XM_018043056.1 | 138 |
| R:5′-GGAAACAATACAGGACCTCATA-3’ | |||
|
| F:5′-GGGAGGCGAGCAGAAAGA-3’ | XM_018041881.1 | 142 |
| R:5′-AACAGACGGTGGAGGGTG-3’ | |||
|
| F:5′-ACCTGAGAAGGGATGTGG-3’ | XM_018057282.1 | 104 |
| R:5′-AGAAGACTCAACGCAAACA-3’ | |||
|
| F:5′-TTGCCTAAAGTCAGTGTCG-3’ | NM_001285629.1 | 169 |
| R:5′-GCAGGTCAACCGCATAAC-3’ | |||
|
| F:5′-GCTTTCTTCACCGAGGCT-3’ | XM_018064168.1 | 173 |
| R:5′-CGGAGGGTATCGCATTCA-3’ | |||
|
| F:5′-CCTCCCGTTCTGCTTTCC-3’ | XM_005688483.3 | 132 |
| R:5′-AGCCGTGCCTGGTGGTGTTG-3’ | |||
|
| F:5′-CCCCAGTGCCCATCCATTT-3’ | NM_001285619.1 | 168 |
| R:5′-TCCCTTTCTCCTCGGCTTCTC-3’ |
Fatty acids composition in the milk fat
| Fatty acids | LC | HS | HL |
|---|---|---|---|
| C4:0 | 0.78 ± 0.05 | 0.79 ± 0.06 | 0.91 ± 0.08 |
| C6:0 | 1.19 ± 0.06 | 1.16 ± 0.08 | 1.27 ± 0.11 |
| C8:0 | 1.45 ± 0.08 | 1.38 ± 0.10 | 1.48 ± 0.14 |
| C10:0 | 7.27 ± 0.29 | 6.48 ± 0.39 | 7.23 ± 0.55 |
| C11:0 | 0.13 ± 0.03 | 0.09 ± 0.02 | 0.09 ± 0.01 |
| C12:0 | 4.72 ± 0.36 | 3.78 ± 0.39 | 4.69 ± 0.45 |
| C13:0 | 0.09 ± 0.01 | 0.07 ± 0.02 | 0.10 ± 0.03 |
| C14:0 | 12.15 ± 0.38 | 10.28 ± 0.49 | 11.30 ± 0.6 |
| C14:1 | 0.24 ± 0.02 | 0.22 ± 0.08 | 0.21 ± 0.04 |
| C15:0 | 1.22 ± 0.05a | 0.91 ± 0.13ab | 0.85 ± 0.06b |
| C15:1 | 0.17 ± 0.08 | 0.04 ± 0.00 | 0.10 ± 0.03 |
| C16:0 | 33.16 ± 1.90 | 33.89 ± 0.49 | 38.19 ± 1.8 |
| C16:1 | 1.31 ± 0.07 | 1.35 ± 0.26 | 1.18 ± 0.08 |
| C17:0 | 0.93 ± 0.02a | 0.81 ± 0.09ab | 0.74 ± 0.02b |
| C17:1 | 0.29 ± 0.05a | 0.31 ± 0.03ab | 0.22 ± 0.22b |
| C18:0 | 7.01 ± 0.69 | 7.29 ± 1.13 | 6.32 ± 0.57 |
| C18:1n-9c | 20.71 ± 0.72a | 22.80 ± 1.06a | 18.17 ± 0.51b |
| C18:2n-6 t | 0.12 ± 0.01 | 0.17 ± 0.01 | 0.14 ± 0.01 |
| C18:2n-6c | 1.96 ± 0.12b | 2.39 ± 0.08a | 1.93 ± 0.05b |
| C18:3n-3 r | 0.22 ± 0.02a | 0.12 ± 0.01b | 0.10 ± 0.00b |
| C20:0 | 0.21 ± 0.01a | 0.17 ± 0.01b | 0.15 ± 0.01b |
| C20:4n-6 | 0.14 ± 0.01b | 0.18 ± 0.01a | 0.14 ± 0.01b |
| ΣSFA | 68.39 ± 1.03 | 67.10 ± 1.35 | 73.34 ± 0.65 |
| UFA | 25.26 ± 0.94a | 27.58 ± 1.36a | 22.21 ± 0.60b |
| ΣMUFA | 22.79 ± 0.83a | 24.71 ± 1.29a | 19.89 ± 0.58b |
| ΣPUFA | 2.47 ± 0.13b | 2.87 ± 0.10a | 2.32 ± 0.05b |
Values are means ±SE. Mean values without common superscript (a, b) differ significantly among LC, HS and HL groups (P < 0.05)
Fig. 2Genes expression involved in milk fat production in the mammary gland. a mRNA expression of genes involved in FAs up-take; b mRNA expression of genes regulating FAs synthesis and desaturation; c mRNA expression of genes for FAs activation and transport; d mRNA expression of genes involved in TG synthesis. Data are presented as mean ± SE. Mean values without common superscript (a, b) differ significantly among LC, HS and HL groups (P < 0.05)
Fig. 3The level of the ACSL1 and SCD proteins expression and the FAS activity in the mammary gland. a Protein expression of ACSL1 and SCD; b FAS enzyme activity. Data are presented as mean ± SE. Mean values without common superscript (a, b) differ significantly among LC, HS and HL groups (P < 0.05)
Fig. 4The level of the DNA Methylation in the promoter regions of the target genes. Data are presented as mean ± SE. Mean values without common superscript (a, b) differ significantly among LC, HS and HL groups (P < 0.05)