Matches in SemOpenAlex for { <https://semopenalex.org/work/W1969253148> ?p ?o ?g. }
- W1969253148 endingPage "3155" @default.
- W1969253148 startingPage "3142" @default.
- W1969253148 abstract "Genetic parameters for 18 fatty acids or groups of fatty acids (FA), milk production traits, and somatic cell score (SCS) were estimated by restricted maximum likelihood with a repeatability animal model, using 45,259 test-day records from the first lactations of 13,677 Alpine and Saanen goats. Fatty acid data were collected as part of an extensive recording scheme (PhénoFinLait), and sample testing was based on mid-infrared spectra estimates. The total predicted FA content in milk was approximately 3.5% in Alpine and Saanen goats. Goat milk fat showed similar saturated FA to cattle and sheep, but higher contents of capric (C10:0) FA (~9.7 g/100 g of milk fat). Heritability estimates ranged from 0.18 to 0.49 for FA and estimates were generally higher when FA were expressed in g/100 g of milk fat compared with g/100 g of milk. In general, the 3 specific short- and medium-chain goat FA, caproic acid (C6:0), caprylic acid (C8:0), and especially capric (C10:0) acid, had among the highest heritability estimates (from 0.21 to 0.37; average of 0.30). Heritability estimates for milk yield, fat and protein contents, and SCS were 0.22, 0.23, 0.39, 0.09, and 0.24, 0.20, 0.40, and 0.15, in Alpine and Saanen goats, respectively. When FA were expressed in g/100 g of milk, genetic correlations between fat content and all FA were high and positive. Genetic correlations between the fat content and FA groups expressed in g/100 g of fat led to further investigation of the association between fat content and FA profile within milk fat. Accordingly, in both Saanen and Alpine breeds, no significant genetic correlations were found between fat content and C16:0, whereas the correlations between fat content and specific goat FA (C6:0 to C10:0) were positive (0.17 to 0.59). In addition, the genetic correlation between fat content and C14:0 was negative (−0.17 to −0.35). The values of the genetic correlations between protein content and individual FA were similar, although genetic correlations between protein content and FA groups were close to zero. Genetic correlations of milk yield or SCS with the FA profile were weak. Results for genetic parameters for FA, however, should be further validated, because the low predicting ability of certain FA using mid-infrared spectra and the limited calibration data set might have resulted in low accuracy. In conclusion, our results indicated substantial genetic variation in goat milk FA that supported their amenability for genetic selection. In addition, selection on protein and fat contents is not expected to have an undesirable effect on the FA profile in regard to specificity of goat products and human health." @default.
- W1969253148 created "2016-06-24" @default.
- W1969253148 creator A5013692065 @default.
- W1969253148 creator A5026978729 @default.
- W1969253148 creator A5030401084 @default.
- W1969253148 creator A5047733982 @default.
- W1969253148 creator A5063292856 @default.
- W1969253148 creator A5073887323 @default.
- W1969253148 creator A5088243157 @default.
- W1969253148 date "2014-05-01" @default.
- W1969253148 modified "2023-10-01" @default.
- W1969253148 title "Genetic parameter estimation for major milk fatty acids in Alpine and Saanen primiparous goats" @default.
- W1969253148 cites W1639439950 @default.
- W1969253148 cites W1971218627 @default.
- W1969253148 cites W1983119871 @default.
- W1969253148 cites W2006652855 @default.
- W1969253148 cites W2020854213 @default.
- W1969253148 cites W2049932354 @default.
- W1969253148 cites W2066072310 @default.
- W1969253148 cites W2081480994 @default.
- W1969253148 cites W2084662206 @default.
- W1969253148 cites W2085165105 @default.
- W1969253148 cites W2091515316 @default.
- W1969253148 cites W2100844962 @default.
- W1969253148 cites W2101652153 @default.
- W1969253148 cites W2105611488 @default.
- W1969253148 cites W2117426083 @default.
- W1969253148 cites W2118051155 @default.
- W1969253148 cites W2118327947 @default.
- W1969253148 cites W2119709859 @default.
- W1969253148 cites W2132710304 @default.
- W1969253148 cites W2137808057 @default.
- W1969253148 cites W2139943642 @default.
- W1969253148 cites W2148370581 @default.
- W1969253148 cites W2148639960 @default.
- W1969253148 cites W2150396523 @default.
- W1969253148 cites W2150841961 @default.
- W1969253148 cites W2155496488 @default.
- W1969253148 cites W2156567926 @default.
- W1969253148 cites W2169049777 @default.
- W1969253148 cites W2281137143 @default.
- W1969253148 cites W2330247850 @default.
- W1969253148 cites W2522268725 @default.
- W1969253148 doi "https://doi.org/10.3168/jds.2013-7328" @default.
- W1969253148 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/24612796" @default.
- W1969253148 hasPublicationYear "2014" @default.
- W1969253148 type Work @default.
- W1969253148 sameAs 1969253148 @default.
- W1969253148 citedByCount "17" @default.
- W1969253148 countsByYear W19692531482016 @default.
- W1969253148 countsByYear W19692531482017 @default.
- W1969253148 countsByYear W19692531482019 @default.
- W1969253148 countsByYear W19692531482020 @default.
- W1969253148 countsByYear W19692531482021 @default.
- W1969253148 countsByYear W19692531482022 @default.
- W1969253148 countsByYear W19692531482023 @default.
- W1969253148 crossrefType "journal-article" @default.
- W1969253148 hasAuthorship W1969253148A5013692065 @default.
- W1969253148 hasAuthorship W1969253148A5026978729 @default.
- W1969253148 hasAuthorship W1969253148A5030401084 @default.
- W1969253148 hasAuthorship W1969253148A5047733982 @default.
- W1969253148 hasAuthorship W1969253148A5063292856 @default.
- W1969253148 hasAuthorship W1969253148A5073887323 @default.
- W1969253148 hasAuthorship W1969253148A5088243157 @default.
- W1969253148 hasBestOaLocation W19692531481 @default.
- W1969253148 hasConcept C105795698 @default.
- W1969253148 hasConcept C140793950 @default.
- W1969253148 hasConcept C154020017 @default.
- W1969253148 hasConcept C161890455 @default.
- W1969253148 hasConcept C185592680 @default.
- W1969253148 hasConcept C22641795 @default.
- W1969253148 hasConcept C2776659692 @default.
- W1969253148 hasConcept C2776792119 @default.
- W1969253148 hasConcept C2779234561 @default.
- W1969253148 hasConcept C2781003072 @default.
- W1969253148 hasConcept C2909411929 @default.
- W1969253148 hasConcept C31903555 @default.
- W1969253148 hasConcept C33923547 @default.
- W1969253148 hasConcept C43617362 @default.
- W1969253148 hasConcept C49781872 @default.
- W1969253148 hasConcept C543025807 @default.
- W1969253148 hasConcept C54355233 @default.
- W1969253148 hasConcept C55493867 @default.
- W1969253148 hasConcept C61420037 @default.
- W1969253148 hasConcept C86803240 @default.
- W1969253148 hasConceptScore W1969253148C105795698 @default.
- W1969253148 hasConceptScore W1969253148C140793950 @default.
- W1969253148 hasConceptScore W1969253148C154020017 @default.
- W1969253148 hasConceptScore W1969253148C161890455 @default.
- W1969253148 hasConceptScore W1969253148C185592680 @default.
- W1969253148 hasConceptScore W1969253148C22641795 @default.
- W1969253148 hasConceptScore W1969253148C2776659692 @default.
- W1969253148 hasConceptScore W1969253148C2776792119 @default.
- W1969253148 hasConceptScore W1969253148C2779234561 @default.
- W1969253148 hasConceptScore W1969253148C2781003072 @default.
- W1969253148 hasConceptScore W1969253148C2909411929 @default.
- W1969253148 hasConceptScore W1969253148C31903555 @default.
- W1969253148 hasConceptScore W1969253148C33923547 @default.