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Journal Links
| Agronomy Journal | |
|---|---|
| Articles Published | 51053 |
| Total Downloads | 2953198 |
| Average downloads per article | 57 |
| Article History | |
|---|---|
| Downloads (6 weeks) | 6 |
| Downloads (1 year) | 32 |
| Downloads (cumulative) | 153 |
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Functional characterization of cinnamyl alcohol dehydrogenase and caffeic acid O-methyltransferase in Brachypodium distachyon
BMC Biotechnology
2013 13:1 -
TALEN-mediated targeted mutagenesis of more than 100 COMT
copies/alleles in highly polyploid sugarcane improves saccharification efficiency without compromising biomass yield
Plant Biotechnology Journal
2018 16:4 -
Millets and Sorghum
2017 -
The abnormal lignins produced by the brown-midrib mutants of maize
Archives of Biochemistry and Biophysics
1964 105:1 -
Assessment of a brown midrib (BMR) mutant gene on the nutritive value of sudangrass using in vitro and in vivo techniques
Animal Feed Science and Technology
2009 150:3-4 -
Insights into lignin primary structure and deconstruction from Arabidopsis thaliana COMT (caffeic acid O-methyl transferase) mutant Atomt1
Organic & Biomolecular Chemistry
2010 8:17 -
Variation in lignin and cell wall digestibility in caffeic acid O-methyltransferase down-regulated maize half-sib progenies in field experiments
Molecular Breeding
2006 18:3 -
Significant Variation for Bio-oil Compounds After Pyrolysis/Gas Chromatography–Mass Spectrometry of Cobs and Stover Among Five Near-Isogenic Brown Midrib Hybrids in Maize
BioEnergy Research
2014 7:2 -
Bio-Fuel Crops Research for Energy Security and Rural Development in Developing Countries
BioEnergy Research
2008 1:3-4 -
Inheritance and phenotype expression of functional and null alleles of aromatic alcohol dehydrogenase (CAD) in diploid wheats
Russian Journal of Genetics
2014 50:11 -
Brown-midrib maize (bm1) - a mutation affecting the cinnamyl alcohol dehydrogenase gene
The Plant Journal
1998 14:5 -
Bioenergy grass feedstock: current options and prospects for trait improvement using emerging genetic, genomic, and systems biology toolkits
Biotechnology for Biofuels
2012 5:1 -
Sorghum mutant RG displays antithetic leaf shoot lignin accumulation resulting in improved stem saccharification properties
Biotechnology for Biofuels
2013 6:1 -
Polymorphism of lignification enzymes in plants: Functional importance and applied aspects
Biology Bulletin Reviews
2016 6:2 -
Genetic and molecular basis of grass cell wall biosynthesis and degradability. II. Lessons from brown-midrib mutants
Comptes Rendus Biologies
2004 327:9-10 -
Advances in Agronomy Volume 46
1991 46 -
Increased lodging resistance in long-culm, low-lignin gh2 rice for improved feed and bioenergy production
Scientific Reports
2015 4:1 -
Trends in lignin modification: a comprehensive analysis of the effects of genetic manipulations/mutations on lignification and vascular integrity
Phytochemistry
2002 61:3 -
The maizebrown midrib2(bm2) gene encodes a methylenetetrahydrofolate reductase that contributes to lignin accumulation
The Plant Journal
2014 77:3 -
1997 172 -
Expediting the biofuels agenda via genetic manipulations of cellulosic bioenergy crops
Biofuels, Bioproducts and Biorefining
2009 3:4 -
Engineering Plant Biomass Lignin Content and Composition for Biofuels and Bioproducts
Energies
2015 8:8 -
Catalase and superoxide dismutase gene expression and distribution during stem development in maize
Developmental Genetics
1991 12:6 -
Biological variability in lignification of maize: Expression of the brown midrib bm3 mutation in three maize cultivars
Journal of the Science of Food and Agriculture
1994 64:3 -
Measuring the Mechanical Properties of Plant Cell Walls
Plants
2015 4:2 -
Transposon insertion in a cinnamyl alcohol dehydrogenase gene is responsible for a brown midrib1 mutation in maize
Plant Molecular Biology
2012 80:3 -
Genetic Resources, Chromosome Engineering, and Crop Improvement
2006 20064428 -
Cloning, characterization and impact of up- and down-regulating subabul cinnamyl alcohol dehydrogenase (CAD) gene on plant growth and lignin profiles in transgenic tobacco
Plant Growth Regulation
2012 66:3 -
Effects of Brown Midrib Corn Silage on the Energy Balance of Dairy Cattle
Journal of Dairy Science
2001 84:4 -
Phylogeny and structure of the cinnamyl alcohol dehydrogenase gene family in Brachypodium distachyon
Journal of Experimental Botany
2012 63:17 -
Biological conversion assay using Clostridium phytofermentans to estimate plant feedstock quality
Biotechnology for Biofuels
2012 5:1 -
Specialty Corns, Second Edition
2000 -
Biofuels: Greenhouse Gas Mitigation and Global Warming
2018 -
Molecular characterization of allelic variation in spontaneous brown midrib mutants of sorghum (Sorghum bicolor (L.) Moench)
Molecular Breeding
2013 31:4 -
Improvement of biomass through lignin modification
The Plant Journal
2008 54:4 -
Identification of novel brown midrib genes in maize by tests of allelism
Plant Breeding
2010 129:6 -
Reaction of Sorghum Lines Genetically Modified for Reduced Lignin Content to Infection byFusariumandAlternariaspp.
Plant Disease
2006 90:3 -
How to make a tumour: cell type specific dissection of Ustilago maydis-
induced tumour development in maize leaves
New Phytologist
2018 217:4 -
Dissection of lignin macromolecular configuration and assembly: Comparison to related biochemical processes in allyl/propenyl phenol and lignan biosynthesis
Natural Product Reports
2008 25:6 -
Brown midrib mutations and their importance to the utilization of maize, sorghum, and pearl millet lignocellulosic tissues
Plant Science
2010 178:3 -
Potential of Sorghum as an Alternative to Corn Forage
American Journal of Plant Sciences
2016 07:07 -
Expression of Lignin Biosynthetic Genes in Wheat during Development and upon Infection by Fungal Pathogens
Plant Molecular Biology Reporter
2011 29:1

