Matches in SemOpenAlex for { <https://semopenalex.org/work/W3011475251> ?p ?o ?g. }
- W3011475251 endingPage "118220" @default.
- W3011475251 startingPage "118220" @default.
- W3011475251 abstract "The objective of this study was to evaluate the effects of heating process on protein molecular structure from ruminal degradation residues in cool-climate adapted faba bean seeds in relation to crude protein (CP), in situ degradation kinetics, rumen protein degradation and intestinal protein digestion parameters in dairy cows. Seeds of six faba bean varieties with low (Snowbird, Snowdrop, 219_16) and normal tannin (Fatima, 346_10, SSNS_1) were collected from three different locations, and were heated 3 min by microwave irradiation (MI, dry heating) or heated 1 h by steam pressure toasting (SP, moist heating) or kept raw as a control. Heat treated samples were used for rumen incubating 24, 12, 8, 4, 2, 0 h(s) in two replicate runs and then residues from 12 h of rumen degradation were used for three steps in vitro technique for determining intestinal protein digestion. Attenuated total reflectance Fourier transforms infrared spectroscopy (ATR-Ft/IRS) was used for analyzing protien molecular structure of residual faba bean seeds. The results showed that SP increased the intensities of amide I, amide II, α-helix and β-sheet but decreased amide I to amide II height and area ratio, α-helix to β-sheet height ratio from 12 and 24 h of ruminal degradation, and MI decreased all the intensities of amide I, amide II, α-helix and β-sheet and ratios except amide I to amide II area ratio of residues from 24 h of ruminal degradation. Additionally, the intensities of amide I, amide II, α-helix and β-sheet had a unique pattern of increasing first and then decreasing with the increasing ruminal digestion time for SP treatment, while amide I to amide II height and area ratio, α-helix to β-sheet height ratio were declining. For the MI groups, this pattern was not observed and the intensities were rather consistent across the digestion process. Rumen protein degradation parameters including rumen bypass crude protein (BCP) or rumen undegradable protein (RUP) and rumen degradable protein (RDP) closely correlated with protein molecular structure of to peak heights, areas and ratios. Regression equations based on residual protein molecular structure presented a good estimation power for soluble fraction (S, R2 = 0.79), degradable fraction (D, R2 = 0.805), BCP (R2 = 0.941), RUP (R2 = 0.941) and RDP (R2 = 0.811). Overall, heat-induced changes in rumen residual protein molecular structures were related to CP, in situ degradation kinetics, rumen protein degradation and rumen protein digestion parameters." @default.
- W3011475251 created "2020-03-23" @default.
- W3011475251 creator A5014014461 @default.
- W3011475251 creator A5018319943 @default.
- W3011475251 creator A5018960170 @default.
- W3011475251 creator A5022577551 @default.
- W3011475251 creator A5029256542 @default.
- W3011475251 creator A5033278120 @default.
- W3011475251 creator A5042894154 @default.
- W3011475251 creator A5045099226 @default.
- W3011475251 creator A5048784959 @default.
- W3011475251 creator A5050117770 @default.
- W3011475251 creator A5051770059 @default.
- W3011475251 creator A5055390172 @default.
- W3011475251 creator A5064799179 @default.
- W3011475251 date "2020-06-01" @default.
- W3011475251 modified "2023-10-18" @default.
- W3011475251 title "Using advanced vibrational molecular spectroscopy (ATR-Ft/IRS) to study heating process induced changes on protein molecular structure of biodegradation residues in cool-climate adapted faba bean seeds: Relationship with rumen and intestinal protein digestion in ruminant systems" @default.
- W3011475251 cites W1972766940 @default.
- W3011475251 cites W1987086798 @default.
- W3011475251 cites W2006316219 @default.
- W3011475251 cites W2007460961 @default.
- W3011475251 cites W2013714602 @default.
- W3011475251 cites W2016236693 @default.
- W3011475251 cites W2018998652 @default.
- W3011475251 cites W2025592593 @default.
- W3011475251 cites W2040316607 @default.
- W3011475251 cites W2057583718 @default.
- W3011475251 cites W2078289584 @default.
- W3011475251 cites W2091968840 @default.
- W3011475251 cites W2101786218 @default.
- W3011475251 cites W2110497071 @default.
- W3011475251 cites W2149784280 @default.
- W3011475251 cites W2153142434 @default.
- W3011475251 cites W2154611545 @default.
- W3011475251 cites W2159929507 @default.
- W3011475251 cites W2164366449 @default.
- W3011475251 cites W2171514384 @default.
- W3011475251 cites W2315612975 @default.
- W3011475251 cites W2315994669 @default.
- W3011475251 cites W2324698932 @default.
- W3011475251 cites W2325096860 @default.
- W3011475251 cites W2326342133 @default.
- W3011475251 cites W2793739683 @default.
- W3011475251 cites W2803036494 @default.
- W3011475251 doi "https://doi.org/10.1016/j.saa.2020.118220" @default.
- W3011475251 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32200231" @default.
- W3011475251 hasPublicationYear "2020" @default.
- W3011475251 type Work @default.
- W3011475251 sameAs 3011475251 @default.
- W3011475251 citedByCount "1" @default.
- W3011475251 countsByYear W30114752512022 @default.
- W3011475251 crossrefType "journal-article" @default.
- W3011475251 hasAuthorship W3011475251A5014014461 @default.
- W3011475251 hasAuthorship W3011475251A5018319943 @default.
- W3011475251 hasAuthorship W3011475251A5018960170 @default.
- W3011475251 hasAuthorship W3011475251A5022577551 @default.
- W3011475251 hasAuthorship W3011475251A5029256542 @default.
- W3011475251 hasAuthorship W3011475251A5033278120 @default.
- W3011475251 hasAuthorship W3011475251A5042894154 @default.
- W3011475251 hasAuthorship W3011475251A5045099226 @default.
- W3011475251 hasAuthorship W3011475251A5048784959 @default.
- W3011475251 hasAuthorship W3011475251A5050117770 @default.
- W3011475251 hasAuthorship W3011475251A5051770059 @default.
- W3011475251 hasAuthorship W3011475251A5055390172 @default.
- W3011475251 hasAuthorship W3011475251A5064799179 @default.
- W3011475251 hasConcept C100544194 @default.
- W3011475251 hasConcept C127413603 @default.
- W3011475251 hasConcept C13965031 @default.
- W3011475251 hasConcept C140793950 @default.
- W3011475251 hasConcept C160892712 @default.
- W3011475251 hasConcept C185592680 @default.
- W3011475251 hasConcept C2778439535 @default.
- W3011475251 hasConcept C2779679103 @default.
- W3011475251 hasConcept C2781357212 @default.
- W3011475251 hasConcept C2992195973 @default.
- W3011475251 hasConcept C31903555 @default.
- W3011475251 hasConcept C41008148 @default.
- W3011475251 hasConcept C42360764 @default.
- W3011475251 hasConcept C43617362 @default.
- W3011475251 hasConcept C55493867 @default.
- W3011475251 hasConcept C62614982 @default.
- W3011475251 hasConcept C70262065 @default.
- W3011475251 hasConcept C76155785 @default.
- W3011475251 hasConcept C86803240 @default.
- W3011475251 hasConceptScore W3011475251C100544194 @default.
- W3011475251 hasConceptScore W3011475251C127413603 @default.
- W3011475251 hasConceptScore W3011475251C13965031 @default.
- W3011475251 hasConceptScore W3011475251C140793950 @default.
- W3011475251 hasConceptScore W3011475251C160892712 @default.
- W3011475251 hasConceptScore W3011475251C185592680 @default.
- W3011475251 hasConceptScore W3011475251C2778439535 @default.
- W3011475251 hasConceptScore W3011475251C2779679103 @default.
- W3011475251 hasConceptScore W3011475251C2781357212 @default.
- W3011475251 hasConceptScore W3011475251C2992195973 @default.
- W3011475251 hasConceptScore W3011475251C31903555 @default.
- W3011475251 hasConceptScore W3011475251C41008148 @default.
- W3011475251 hasConceptScore W3011475251C42360764 @default.