| Literature DB >> 32138208 |
Klavdija Poklukar1, Marjeta Čandek-Potokar1,2, Nina Batorek Lukač1, Urška Tomažin1, Martin Škrlep1.
Abstract
Modern pig breeds, which have been genetically improved to achieve fast growth and a lean meat deposition, differ from local pig breeds with respect to fat deposition, fat specific metabolic characteristics and various other properties. The present review aimed to elucidate the mechanisms underlying the differences between fatty local and modern lean pig breeds in adipose tissue deposition and lipid metabolism, taking into consideration morphological, cellular, biochemical, transcriptomic and proteomic perspectives. Compared to modern breeds, local pig breeds accumulate larger amounts of fat, which generally contains more monounsaturated and saturated fatty acids; they exhibit a higher adipocyte size and higher activity of lipogenic enzymes. Studies using transcriptomic and proteomic approaches highlighted several processes like immune response, fatty-acid turn-over, oxidoreductase activity, mitochondrial function, etc. which differ between local and modern pig breeds.Entities:
Keywords: adaptation; adipose tissue; cellularity; local breeds; modern breeds; pig; proteome; transcriptome
Year: 2020 PMID: 32138208 PMCID: PMC7142902 DOI: 10.3390/ani10030424
Source DB: PubMed Journal: Animals (Basel) ISSN: 2076-2615 Impact factor: 2.752
Figure 1Fatty acid composition of subcutaneous adipose tissue of local vs. modern pig breeds and within-study effect size (Hedges’ g) [27]. Studies were carried out in different conditions (including body weight, backfat thickness) and should be interpreted accordingly. Effect size (Hedges’g) [27] is considered to be medium if it is above 0.5 or below −0.5 and large if it is above 0.8 or below −0.8. In the case of Reference [20], the effect size for the inner and outer backfat layer was calculated separately. SFA = saturated fatty acids; MUFA = monounsaturated fatty acids; PUFA = polyunsaturated fatty acids; Hg = Hedges’ g; BFT = backfat thickness; BW = body weight; I = inner back fat layer; O = outer back fat layer; FA = fatty acids composition; Ib = Iberian pig breed, LN = Landrace; LW = Large White; Pi = Piétrain; CS = Cinta Senese; nd = calculation of Hedges’g was not possible due to missing data.
The function of lipogenic and lipolytic enzymes in adipose tissue [32].
| Lipogenic Enzyme | Function |
|---|---|
| Acetyl-CoA carboxylase (ACACA) | Irreversible formation of malonyl-CoA from acetyl-CoA. |
| Fatty acid synthase (FAS) | Synthesis of palmitate from acetyl-CoA and malonyl-CoA. |
| Glucose-6-phosphate DH (G6PDH) | Providing NADPH for reductive biosynthesis of fatty acids. |
| Malic enzyme (ME) | Providing NADPH for reductive biosynthesis of fatty acids. |
| Stearoyl-CoA desaturase (SCD) | Transformation of MUFA from SFA. |
| Hormone-sensitive lipase (HSL) | Hydrolyses triglycerides to free fatty acids. |
| Lipoprotein lipase (LPL) | Catalyses the hydrolysis of triglycerides from circulating chylomicrons and very low-density lipoproteins. |
DH = dehydrogenase; NADPH = dihydro-nicotinamide-adenine dinucleotide phosphate; MUFA = monounsaturated fatty acids; SFA = saturated fatty acids.
Lipogenic enzyme activities in subcutaneous adipose tissue in local compared to modern pig breeds.
| Ref. | Breed | Enzyme activities | ||||
|---|---|---|---|---|---|---|
| ACACA | FAS | G6PDH | ME | SCD | ||
| [ | Basque vs. LW | / | ↓ * | / | ↓ * | / |
| [ | Alentejano vs. LW | ↑2.7–3.7 FC | / | ↑3.1–5.8 FC | ↑6.2–6.9 FC | / |
| [ | Ib vs. LNxLW | / | ↑1.1–1.9 FC | ↑1.2 FC | ↑1.4–1.5 FC | / |
| [ | Meishan vs. LW | / | / | / | / | ↓1.4–1.8 FC |
Ref. = reference; ACACA = acetyl-CoA carboxylase; FAS = fatty acid synthase; G6PDH = glucose-6-phosphate dehydrogenase; ME = malic enzyme; SCD = stearoyl-CoA-desaturase; LW = Large White; Ib = Iberian; LNxLW = Landrace x Large White; FC = fold change; ↑ higher enzyme activity in local pig breed compared to modern pig breed; ↓ lower enzyme activity in local pig breed compared to modern pig breed; / = activity not measured; * exact enzyme activities were not given, thus calculation of FC was not possible.
Figure 2Fatty acids composition of intramuscular fat in longissimus dorsi muscle at given body weights of local vs. modern pig breeds or cross-breeds and within a study effect size (Hedges’ g) [27]. Studies differ with respect to experimental conditions (including BW and IMF) and should be interpreted accordingly. The effect size (Hedges’ g) [27] is considered to be medium if it is above 0.5 or below −0.5 and large if it is above 0.8 or below −0.8. SFA = saturated fatty acids; MUFA = monounsaturated fatty acids; PUFA = polyunsaturated fatty acids; Hg = Hedges’g; IMF = intramuscular fat; BW = body weight; LW = Large White; LN = Landrace; Pi = Piétrain; Ib = Iberian; Du = Duroc; WM = White Mangalitsa; SBM = Swallow bellied Mangalitsa.
Lipogenic enzyme activities in intramuscular fat for different muscles in local pig breeds compared to modern pig breeds.
| Ref. | Breed | Enzyme Activities | |||||||
|---|---|---|---|---|---|---|---|---|---|
| Tissue | ACA | FAS | G6PDH | ME | SCD | LPL | HSL | ||
| [ | Ib vs. LNxLW | LD | / | ↑2.4 FC | ns | ns | / | / | / |
| [ | Ib vs. LNxLW | BF | / | ns | ns | ↑1.2–2.1 FC | / | / | / |
| [ | Wujin vs. LN | LD | / | ↑1.9 FC | / | / | ↑2.1 FC | / | ↓3.5 FC |
| [ | Bas vs. LW | SM | ↑ 1.4 FC | / | ↑2.9 FC | ↑1.8 FC | / | / | / |
| [ | Ms vs. LW | SM | ↑ * | / | ↑ * | ↑ * | / | / | / |
| [ | Mas vs. LW | LD | ns | ↑ * | / | / | / | ns | ↓ * |
Ref. = reference; ACA = acetyl-CoA carboxylase; FAS = fatty acid synthase; G6PDH = glucose-6-phosphate dehydrogenase; ME = malic enzyme; SCD = stearoyl-CoA desaturase; LPL = lipoprotein lipase; HSL = hormone sensitive lipase; Ib = Iberian; LN = Landrace; LW = Large White; LD = longissimus dorsi muscle; BF = biceps femoris muscle; SM = semimembranosus muscle; Bas = Basque; Ms = Meishan; Mas = Mashen; FC = fold change; ↑ higher enzyme activity in a local pig breed compared to a modern pig breed; ↓ lower enzyme activity in a local pig breed compared to a modern pig breed; ns = no statistically significant differences; / = not measured; * exact enzyme activities were not given, thus calculation of FC was not possible.
Figure 3Transcriptional regulation of adipogenesis. ↑ = upregulation of the gene; CEBP/ß = CCAAT/enhancer-binding protein beta; C/EBPγ = CCAAT/enhancer-binding protein gamma; PPARγ = peroxisome proliferator-activated receptor gamma; RXR = retinoid X receptor; C/EBPα = CCAAT/enhancer-binding protein alpha; SREBP = sterol regulatory element-binding proteins; FABP = fatty acid-binding proteins; GLUT4 = glucose transporter type 4, LPL = lipoprotein lipase.
Summary of comparative transcriptomic studies with the main findings between local and modern pig breeds associated with fat deposition.
| Metabolic Pathway | Breed | Tissue | Platform | Ref. |
|---|---|---|---|---|
|
| ||||
| - ↑ lipogenesis, desaturation (ME1, ELOVL6, SCD) | Ib vs. Du | SCAT | qPCR | [ |
| - ↑ lipogenesis, desaturation (FASN, SREBP-1, SCD) | Wujin vs. LN | LD-IMF | qPCR | [ |
| - ↑ lipogenesis, desaturation (FASN, SCD) | DSP and Tibetan vs. LN and YY | LD-IMF | RNA-seq | [ |
| - ↑ lipogenesis (ACACB) | Basque vs. LW | LD-IMF | microarray | [ |
| - ↑ lipogenesis, desaturation (ELOVL6, ME1, PTGES3, AGPAT5, GNPAT, SCD) | Ib vs. Ib x Du | LD-IMF | microarray, qPCR | [ |
| - ↑ lipogenesis (PCK1, FASN), desaturation (↑ SCD expression pigs at day 30, ↓ SCD expression pigs at day 150) | Jinhua vs. LN | LD-IMF | microarray | [ |
| - ↑ lipogenesis (ME1, PCK1) | Ib vs. Du | SCAT | RNA-seq | [ |
| - ↑ lipogenic and adipogenic gene expression after insulin and glucose exposure | Bamei vs. LW | SCAT, LD-IMF | qPCR | [ |
| - ↑ adipogenesis (C/EBPγ, C/EBPα, PPARγ), lipogenesis (FASN) | Mashen vs. LN | LD-IMF | qPCR | [ |
| - ↑ lipogenesis (e.g., PCK1, ACACB) | Songliao vs. LN | SCAT | RNA-seq | [ |
| - ↑ adipogenic genes expression in preadipocyte cell culture in early stage of differentiation (PPARγ, CEBPα), ↑ lipogenic gene expression in late stage of differentiation (SREBP1, FASN) | Wujin vs. LN | LD-IMF | qPCR | [ |
|
| ||||
| - ↓ lipolysis (HSL, ATGL) | Wujin vs. LN | LD-IMF | qPCR | [ |
| - ↑ lipolysis (PON, PLA1A) | Ib vs. Ib x Du | LD-IMF | microarray | [ |
| - ↑ lipolysis, fatty acid transport (LPL, LIPE, FABP3) | Jinhua vs. LN | LD-IMF | microarray | [ |
| - ↑ lipolysis, fatty acid transport, oxidation (PPAP2A, LIPE, FABP3, SLC25A20, PPARδ) | Basque vs. LW | LD-IMF | microarray | [ |
| - ↑ fatty acid transport, oxidation (FABP3, FABP4, CPT-1B) | Wujin vs. LN | LD-IMF | qPCR | [ |
| - ↓ oxidoreductase activity, fatty acid degradation, mitochondrial function (e.g., ACAD, HADHA, ACAA2, HSD17B4) | Min vs. LN | SCAT | RNA-seq | [ |
| - ↑ oxidoreductase activity | Chinese breeds * vs. YY | SCAT, LD-IMF | RNA-seq | [ |
| - ↓ mitochondrial energy metabolism (e.g., SIRT3) | Basque vs. LW | SCAT | microarray | [ |
|
| ||||
| - ↑ response to steroid hormone stimulus | DSP and Tibetan vs. LN and YY | LD-IMF | RNA-seq | [ |
| - ↑ LEP | Ib vs. Du | SCAT | qPCR | [ |
| - ↑ LEP | Ib vs. Du | SCAT | RNA-seq | [ |
| - ↑ insulin signaling pathway, insulin resistance | Songliao vs. LN | SCAT | RNA-seq | [ |
|
| ||||
| - ↑ immune response (e.g., CSF1R) | Basque vs. LW | SCAT | microarray | [ |
| - ↑ immune response | Chinese breeds * vs. YY | SCAT, LD-IMF | RNA-seq | [ |
| - ↑ immune response, ↓ extracellular matrix formation, ↓ growth, ↑ carbohydrate metabolism | Ib vs. Du | SCAT | RNA-seq | [ |
| - ↑ glycolysis, ↑ gluconeogenesis | Songliao vs. LN | SCAT | RNA-seq | [ |
Ref. = references; ↑ = upregulation in local pig breeds compared to modern pig breeds; ↓ = downregulation in local pig breeds compared to modern pig breeds; ME1 = malic enzyme; ELOVL6 = elongation of very long chain fatty acids protein 6; SCD = stearoyl CoA desaturase; Ib = Iberian; Du = Duroc; SCAT = subcutaneous adipose tissue; qPCR = quantitative polymerase chain reaction; FASN = fatty acid synthase; SREBP-1 = sterol regulatory element-binding protein 1; LN = Landrace; LD-IMF = intramuscular fat of longissimus dorsi muscle; DSP = Diannan Small-ear pig; RNA-seq = RNA sequencing; YY = Yorkshire pig; ACACB = acetyl CoA carboxylase beta; LW = Large White; PTGES3 = prostaglandin E synthase 3; AGPAT5 = 1-acylglycerol-3-phosphate O-acyltransferase 5; GNPAT = glyceronephosphate O-acyltransferase, Ib x Du = Iberian x Duroc; PCK1 = phosphoenolpyruvate carboxykinase 1; C/EBPγ = CCAAT/enhancer-binding protein gamma; C/EBPα = CCAAT/enhancer-binding protein alpha; PPARγ = peroxisome proliferator-activated receptor gamma; HSL = hormone-sensitive lipase; ATGL = adipose triglyceride lipase; PON = paraoxonase; PLA1A = phospholipase A1 member A; LPL = lipoprotein lipase; LIPE = lipase E; FABP3 = fatty acid binding protein 3; PPAP2A = prostaglandin E synthase 3; SLC25A20 = solute carrier family 25 member 20; PPARδ = peroxisome proliferator activated receptor delta; FABP4 = fatty acid binding protein 4; CPT-1B = carnitine palmitoyl transferase 1B; ACAD = acyl-CoA dehydrogenase; HADHA = hydroxyacyl-CoA dehydrogenase; ACAA2 = acetyl-CoA acyltransferase 2; HSD17B4 = hydroxysteroid 17-beta dehydrogenase 4; SIRT3 = NAD-dependent deacetylase sirtuin-3; LEP = leptin; CSF1R = colony-stimulating factor 1 receptor; * Chinese breeds = Lantang, Tongcheng, Tibetan, Wuzhishan, Rongchang, Chenghua and Neijiang.
Summary of comparative proteomics studies with the main findings between local and modern pig breeds associated with fat deposition.
| Metabolic pathway | Breed | Tissue | Ref. |
|---|---|---|---|
|
| |||
| ↑ lipogenesis (ME, G6PDH) | Basque vs. LW | SCAT | [ |
|
| |||
| ↑ fatty acid transport capacity (albumin, fatty acid binding protein) | Korean vs. LN | LD-IMF | [ |
| ↑ fatty acid transport capacity (albumin), ↑ lipolysis (CES) | Basque vs. LW | SCAT | [ |
| ↑ fatty acid transport capacity (albumin) | Lantang vs. LN | LD-IMF | [ |
|
| |||
| ↑ acute phase response (ITIH) and low-grade inflammation (serpins), ↑ selenium binding protein | Basque vs. LW | SCAT | [ |
| ↑ carbohydrate metabolism (pyruvate dehydrogenase), ↑ oxidative metabolism (COX5A, ATP5), ↓ glycolytic metabolism (β-enolase) | Lantang vs. LN | LD-IMF | [ |
| ↑ glycolysis and glycolysis-related pathways (β-enolase, TPI, PGM1, LDH, CK and GPDH) | Casertana vs. LW | LD-IMF | [ |
Ref. = reference; ↑ upregulation in local pig breeds compared to modern pig breeds; ↓ downregulation in local pig breeds compared to modern pig breeds; ME = malic enzyme; G6PDH = glucose-6-phosphate dehydrogenase; LW = Large White; SCAT = subcutaneous adipose tissue; LN = Landrace; LD-IMF = longissimus dorsi muscle intramuscular fat; CES = carboxylesterase; ITIH = inter-alpha-trypsin inhibitor-4; COX5A = cytochrome c oxidase subunit 5a; ATP5 = ATP synthase subunit 5; TPI = triosephosphate isomerase; PGM1 = phosphoglucomutase 1; LDH = lactate dehydrogenase; CK = creatine kinase; GPDH = glycerol-3-phosphate dehydrogenase.