Potential of seaweeds to mitigate production of greenhouse gases during production of ruminant proteins
G De Bhowmick, M Hayes - Global Challenges, 2023 - Wiley Online Library
The potential of seaweed to mitigate methane is real and studies with red seaweeds have
found reductions in methane produced from ruminants fed red seaweeds in the region of 60 …
found reductions in methane produced from ruminants fed red seaweeds in the region of 60 …
The effects of phytochemicals on methanogenesis: insights from ruminant digestion and implications for industrial biogas digesters management
The overarching objective of this review is to compare methanogenesis in ruminant gut
systems and industrial digesters that employ plants, crops and their processing residues or …
systems and industrial digesters that employ plants, crops and their processing residues or …
[HTML][HTML] Effects of dietary inclusion of Moringa oleifera leaf meal on nutrient digestibility, rumen fermentation, ruminal enzyme activities and growth performance of …
SM Abdel-Raheem, EH Hassan - Saudi Journal of Biological Sciences, 2021 - Elsevier
This study was conducted to investigate the impact of dietary inclusion of Moringa oleifera
leaf meal (MLM) as a substitution for soybean meal on nutrient digestibility, rumen …
leaf meal (MLM) as a substitution for soybean meal on nutrient digestibility, rumen …
[HTML][HTML] Carbon sequestration offsets a large share of GHG emissions in dehesa cattle production
C Reyes-Palomo, E Aguilera, M Llorente… - Journal of Cleaner …, 2022 - Elsevier
The contribution of cattle production to climate change is increasingly recognized, and there
is a need to identify those systems minimizing emissions and maximizing carbon (C) sinks …
is a need to identify those systems minimizing emissions and maximizing carbon (C) sinks …
[HTML][HTML] Proanthocyanidins Modulate Rumen Enzyme Activities and protein utilization in vitro
This study investigated the principal leaf protein (rubisco) solubilization and in vitro ruminal
enzyme activity in relation to the molecular structure of proanthocyanidins extracted from …
enzyme activity in relation to the molecular structure of proanthocyanidins extracted from …
[HTML][HTML] Effect of Moringa oleifera leaves powder in diets of lactating buffaloes
AEY El-Badawi, AA Hassan, MS Khalel… - Bulletin of the National …, 2023 - Springer
Background Egyptian water buffalo as a dairy animal is adapted to the environmental
conditions in Egypt and most of it is with small farmers, therefore, it was necessary to pay …
conditions in Egypt and most of it is with small farmers, therefore, it was necessary to pay …
[PDF][PDF] Dietary supplementation of galangal (Alpinia galangal) essential oil affects rumen fermentation pattern
The present study aims to evaluate numerous doses of galangal EO (EO) and pure cineole
for the relative abundance of rumen microbes and its fermentation parameters in vitro. It …
for the relative abundance of rumen microbes and its fermentation parameters in vitro. It …
[HTML][HTML] In vitro screening of east asian plant extracts for potential use in reducing ruminal methane production
Simple Summary Methane from ruminants is a major contributor to total greenhouse gases.
Therefore, ruminant nutritionists have proposed strategies to mitigate methane emissions …
Therefore, ruminant nutritionists have proposed strategies to mitigate methane emissions …
Alternative animal feeds from agroforestry plants
This special issue idea originated when a few researchers from around the world came
together with the goal of compiling the most up-to-date information on the use of alternative …
together with the goal of compiling the most up-to-date information on the use of alternative …
[HTML][HTML] Proanthocyanidins isolated from the leaves of Ficus glomerata evaluated on the activities of rumen enzymes: in vitro and in silico studies
Two new proanthocyanidins (2S: 3S)-(−)-epicatechin-(4α→ 8) 4-(2R: 3R)-(+)-catechin
(Compound 1) and (2R, 3R)-3-O-galloyl-(+)-catechin (4β→ 8) 3-(2R, 3R)-3-O-galloyl-(+) …
(Compound 1) and (2R, 3R)-3-O-galloyl-(+)-catechin (4β→ 8) 3-(2R, 3R)-3-O-galloyl-(+) …