Results 101 to 110 of about 1,158,489 (305)
CYFC Consortium Connections, Fall 2009
This archival publication may not reflect current scientific knowledge or recommendations. Current information available from the University of Minnesota Extension: https://www.extension.umn.edu.Children, Youth & Family Consortium. (2009).
Children, Youth & Family Consortium
core
ABSTRACT Synthetic biology has recently proven to be a valuable tool for enhancing agriculture even in the face of environmental and biological stresses. Understanding the challenges that militate synthetic biology will assist in ensuring safe, stable, and scalable crop production.
Ben Jesuorsemwen Enagbonma +6 more
wiley +1 more source
Functioning of a synthetic lignocellulolytic microbial consortium
The rich polysaccharide sugar content (75%) of lignocellulosic biomass (LCB) makes it a perfect resource for production of liquid fuels and industrial building blocks. Various LCB-degrading microbial consortia from different sources, with a set of “core” strains, have drawn attention. In particular, a bacterial-fungal consortium denoted SWT, consisting
openaire +2 more sources
CYFC Consortium Connections, Summer 2009
This archival publication may not reflect current scientific knowledge or recommendations. Current information available from the University of Minnesota Extension: https://www.extension.umn.edu.Children, Youth & Family Consortium. (2009).
Children, Youth & Family Consortium
core
Genetic engineering (GE) overcomes BCA limits, enabling robust, scalable crop protection. “Super Bioagents” (SBs) use optimized SSs to enhance bioactive molecule delivery. Optimizing SSs enhance precise, sustainable effector deployment for stable disease suppression. SBs use microbiome‐informed design for scalable, next‐gen sustainable crop protection.
Michael Dare Asemoloye
wiley +1 more source
CYFC Consortium Connections, Summer 2008
This archival publication may not reflect current scientific knowledge or recommendations. Current information available from the University of Minnesota Extension: https://www.extension.umn.edu.Children, Youth & Family Consortium. (2008).
Children, Youth & Family Consortium
core
Pectinase‐Based Bioprocesses for Circular Bioeconomy and Sustainable Industrial Development
This picture demonstrates a unified strategy for sustainable pectinase production, focusing on microbial bioproduction, innovative strategies in enzyme engineering (Protein engineering, rational enzyme design, directed evolution and heterologous expression) and various applications in industry, including food, textiles, pulp and paper, agriculture and ...
Nisha Sharma +6 more
wiley +1 more source
CYFC Consortium Connections, Winter 2009
This archival publication may not reflect current scientific knowledge or recommendations. Current information available from the University of Minnesota Extension: https://www.extension.umn.edu.Children, Youth & Family Consortium. (2009).
Children, Youth & Family Consortium
core
These results demonstrate that mixotrophic conditions drive both microbial community shifts and metabolic reprogramming, underscoring the importance of cultivation strategy and polyculture selection for targeted applications such as nutrient recovery and bioproduct generation.
Quyen Nham +3 more
wiley +1 more source
CYFC Consortium Connections, Spring 2008
This archival publication may not reflect current scientific knowledge or recommendations. Current information available from the University of Minnesota Extension: https://www.extension.umn.edu.Children, Youth & Family Consortium. (2008).
Children, Youth & Family Consortium
core

