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  4. Potential of Paulownia Leaves Silage in Lamb Diet to Improve Ruminal Fermentation and Fatty Acid Profile − An in vitro Study
 
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Potential of Paulownia Leaves Silage in Lamb Diet to Improve Ruminal Fermentation and Fatty Acid Profile − An in vitro Study

Type
Journal article
Language
English
Date issued
2024
Author
Szulc, Paulina
Nowak, Bogumiła
Hassan, Mahmood Ul
Lechniak, Dorota
Ślusarczyk, Sylwester
Bocianowski, Jan 
Szumacher-Strabel, Małgorzata
Patra, Amlan Kumar
Cieślak, Adam 
Faculty
Wydział Medycyny Weterynaryjnej i Nauk o Zwierzętach
Wydział Rolnictwa, Ogrodnictwa i Bioinżynierii
PBN discipline
animal science and fisheries
Journal
Annals of Animal Science
ISSN
1642-3402
DOI
10.2478/aoas-2023-0065
Web address
https://sciendo.com/pl/article/10.2478/aoas-2023-0065
Volume
24
Number
1
Pages from-to
211-221
Abstract (EN)
Environmental impact, quality, and quantity of food products of ruminant origin (especially beef and mutton) are considered major challenges in meeting the nutritional requirements of the growing human population worldwide. Therefore, we conducted this in vitro study to explore the potential of Paulownia leaves silage to reduce the environmental impact of feedlot lamb production and improve ruminal fatty acids (FAs) profile by influencing ruminal biohydrogenation. In the present study, Paulownia leaves silage (PLS) and alfalfa silage (AAS) were mixed in a proportion of 1:0 (Control, PLS 0%), 0.75:0.25 (PLS 25%), 0.5:0.5 (PLS 50%), 0.25:0.75 (PLS 75%) and 0:1 (PLS 100%) on dry matter basis in the lamb diet. The experimental findings demonstrated that 100% replacement of AAS with PLS in the lamb diet significantly improved the ruminal fermentation by increasing the in vitro DM degradability (P<0.01), total volatile fatty acid (P<0.01), and propionate production (P<0.01) while reducing the acetate: propionate (A/P) ratio (P<0.01) and CH4 concentration (mM; L and Q P<0.05) and CH4 production, mM/g DM (L and Q P<0.05). Meanwhile, 100% PLS inclusion in the diet increased the total monounsaturated fatty acids (P<0.05), total unsaturated fatty acids (P<0.01) and total n-3 fatty acids (P<0.05) particularly alpha-linolenic acid (ALA; C18:3 n-3; P<0.05) in the rumen fluid after incubation. Moreover, the total saturated fatty acids concentration was reduced (P<0.01). These findings suggested that PLS could be a climate-friendly and sustainable alternative to AAS in the lamb feedlot diet for quality meat production.
License
cc-bycc-by CC-BY - Attribution
Open access date
January 23, 2024
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