| Name: | Description: | Size: | Format: | |
|---|---|---|---|---|
| 371.08 KB | Adobe PDF |
Advisor(s)
Abstract(s)
Herein, we investigated the effect of
Chlorella vulgaris as ingredient (10% of incorporation) in
broiler diets, supplemented or not with 2 formulations of
Carbohydrate-Active enZymes (CAZymes; Rovabio
Excel AP and a mixture of recombinant CAZymes,
composed by an exo-b-glucosaminidase, an alginate
lyase, a peptidoglycan N-acetylmuramic acid deacetylase
and a lysozyme), on growth performance, meat quality,
fatty acid composition, oxidative stability, and sensory
traits. One hundred twenty 1-day-old Ross 308 male birds
were randomly assigned to one of the 4 experimental diets
(n 5 30): corn-soybean meal–basal diet (control), basal
diet with 10% C. vulgaris (CV), CV supplemented with
0.005% of a commercialCAZymecocktail (Rovabio Excel
AP), (CV1R), and CV supplemented with 0.01% of a 4-
CAZyme mixture previously selected (CV 1 M) during
the experimental period lasted from day 21 to day 35.
Body weight gain and feed conversion rate of broilers were
not affected by C. vulgaris but digesta viscosity increased more than 2-fold (P , 0.001) relative to the control. In
addition, neither cooking loss, shear force, juiciness, flavor
nor off-flavor was impaired by dietary treatments
(P.0.05). By contrast, the dietary C. vulgaris increased
tenderness, yellowness (b*) and total carotenoids in
breast and thigh meats. However, no additional protective
effect against lipid oxidation was observed in meat
with the inclusion of microalga. Chlorella vulgaris, independently
of CAZymes, had a minor impact on meat fatty
acid composition but improved the proportion of some
beneficial fatty acids. In summary, our data indicate a
slight improvement of broiler meat quality and lipid
nutritional value, without impairment of broilers’ growth
performance, thus supporting the usefulness of this
microalga in poultry diets, up to this high level of incorporation.
By contrast, the selected CAZyme mixtures
used do not significantly improve the release of microalga
nutrients in poultry diets, through the disruption of
microalga cell wall, which warrants further research
Description
Article in press
Keywords
microalgae CAZymes animal performance nutritional value broilers
Pedagogical Context
Citation
2020 Poultry Science
Publisher
Elsevier
