[HTML][HTML] Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics

O Jeilu, A Simachew, E Alexandersson… - Frontiers in …, 2022 - frontiersin.org
Extremophiles provide a one-of-a-kind source of enzymes with properties that allow them to
endure the rigorous industrial conversion of lignocellulose biomass into fermentable sugars …

[HTML][HTML] Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics

O Jeilu, A Simachew, E Alexandersson… - Frontiers in …, 2022 - ncbi.nlm.nih.gov
Extremophiles provide a one-of-a-kind source of enzymes with properties that allow them to
endure the rigorous industrial conversion of lignocellulose biomass into fermentable sugars …

[PDF][PDF] Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics

O Jeilu, A Simachew, E Alexandersson, E Johansson… - 2022 - academia.edu
The most abundant bioresource on Earth, lignocellulosic biomass, has an annual global
yield of up to 1.3 billion tons (Baruah et al., 2018; Zoghlami and Paës, 2019). Lignocellulosic …

Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics

O Jeilu, A Simachew… - Frontiers in …, 2022 - pubmed.ncbi.nlm.nih.gov
Extremophiles provide a one-of-a-kind source of enzymes with properties that allow them to
endure the rigorous industrial conversion of lignocellulose biomass into fermentable sugars …

Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics

O Jeilu, A Simachew, E Alexandersson… - Frontiers in …, 2022 - publications.slu.se
Extremophiles provide a one-of-a-kind source of enzymes with properties that allow them to
endure the rigorous industrial conversion of lignocellulose biomass into fermentable sugars …

[PDF][PDF] Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics

O Jeilu, A Simachew, E Alexandersson, E Johansson… - 2022 - researchgate.net
The most abundant bioresource on Earth, lignocellulosic biomass, has an annual global
yield of up to 1.3 billion tons (Barua h et al., 2018; Zoghlami and Paës, 2019) …

[PDF][PDF] Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics

O Jeilu, A Simachew, E Alexandersson, E Johansson… - 2022 - pub.epsilon.slu.se
The most abundant bioresource on Earth, lignocellulosic biomass, has an annual global
yield of up to 1.3 billion tons (Barua h et al., 2018; Zoghlami and Paës, 2019) …

Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics

O Jeilu, A Simachew, E Alexandersson… - Frontiers in …, 2022 - europepmc.org
Extremophiles provide a one-of-a-kind source of enzymes with properties that allow them to
endure the rigorous industrial conversion of lignocellulose biomass into fermentable sugars …

Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics

O Jeilu, OJ Oumer, A Simachew, E Alexandersson… - 2022 - agris.fao.org
Extremophiles provide a one-of-a-kind source of enzymes with properties that allow them to
endure the rigorous industrial conversion of lignocellulose biomass into fermentable sugars …

Discovery of novel carbohydrate degrading enzymes from soda lakes through functional metagenomics.

O Jeilu, A Simachew, E Alexandersson… - Frontiers in …, 2022 - europepmc.org
Extremophiles provide a one-of-a-kind source of enzymes with properties that allow them to
endure the rigorous industrial conversion of lignocellulose biomass into fermentable sugars …