Effect of Alchornea cordifolia leaf meal inclusion and enzyme supplementation on performance and digestibility of rabbits
Author(s) -
Simeon Olugbenga Ayodele,
Olugbenga David Oloruntola,
J. O. Agbede
Publication year - 2016
Publication title -
world rabbit science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.396
H-Index - 23
eISSN - 1989-8886
pISSN - 1257-5011
DOI - 10.4995/wrs.2016.3933
Subject(s) - amylase , meal , xylanase , biology , protein digestibility , feed conversion ratio , zoology , soybean meal , lipase , cellulase , completely randomized design , digestive enzyme , food science , enzyme , biochemistry , body weight , endocrinology , raw material , ecology
A feeding trial was conducted to study the performance, digestibility and health status of weaner rabbits fed diets including Alchornea cordifolia leaf meal (ALM: 18% crude protein [CP] and 12.9% crude fibre) and supplemented with a multi-enzyme additive (cellulase, xylanase, β-glucanase, α-amylase, protease, lipase). Six experimental diets were arranged factorially: 3 levels of ALM (0, 5 and 10% substituting palm kernel cake: 16.3% CP and 39.1% neutral detergent fibre) combined with 2 levels of enzyme supplementation (0 and 0.35 g/kg). One hundred and eighty healthy, 5-wk-old weaner rabbits of cross-breeds were randomly allotted to 6 dietary treatments (30 rabbits/treatment, 3 rabbits/replicate). Growth rate was not affected (P>0.05) by the main factors (exogenous enzyme and ALM inclusion) and their interactions (13.5 g/d on av.). Daily feed intake and feed conversion ratio decreased (P=0.01) with the ALM inclusion by 8%, but did not affect faecal digestibility. However, enzyme supplementation improved crude protein and crude fibre digestibility (P<0.001) by 6%. In conclusion, ALM inclusion and enzyme supplementation had no adverse effect on the performance and digestibility of rabbits
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom