Wilfred Vermerris

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Publications in SciGraph latest 50 shown

  • 2022-04-15 Linkage map construction using limited parental genotypic information in EUPHYTICA
  • 2021-10-15 The inheritance of anthracnose (Colletotrichum sublineola) resistance in sorghum differential lines QL3 and IS18760 in SCIENTIFIC REPORTS
  • 2020-02-06 Use of Sorghum bicolor leaf whorl explants to expedite regeneration and increase transformation throughput in PLANT CELL, TISSUE AND ORGAN CULTURE (PCTOC)
  • 2020 High-Biomass Sorghums as a Feedstock for Renewable Fuels and Chemicals in SORGHUM IN THE 21ST CENTURY: FOOD – FODDER – FEED – FUEL FOR A RAPIDLY CHANGING WORLD
  • 2019-05-27 A new reference genome for Sorghum bicolor reveals high levels of sequence similarity between sweet and grain genotypes: implications for the genetics of sugar metabolism in BMC GENOMICS
  • 2018-04-13 Techno-Economic Evaluation of Cellulosic Ethanol Production Based on Pilot Biorefinery Data: a Case Study of Sweet Sorghum Bagasse Processed via L+SScF in BIOENERGY RESEARCH
  • 2017-11-24 A cost-benefit analysis to select the most effective method for positional cloning: genotyping by sequencing versus allele-specific PCR in EUPHYTICA
  • 2016-10-31 Bioenergy Potential, Energy Crops, and Biofuel Production in Mexico in BIOENERGY RESEARCH
  • 2015-08-30 Sweet Sorghum Juice and Bagasse as Feedstocks for the Production of Optically Pure Lactic Acid by Native and Engineered Bacillus coagulans Strains in BIOENERGY RESEARCH
  • 2015-02-05 Replication Concepts for Bioenergy Research Experiments in BIOENERGY RESEARCH
  • 2012-07-27 Genetic Enhancement of Sorghum for Biomass Utilization in GENOMICS OF THE SACCHARINAE
  • 2012-07-10 Erratum to: Identification and Characterization of Four Missense Mutations in Brown midrib12 (Bmr12), the Caffeic acid O-Methyltranferase (COMT) of Sorghum in BIOENERGY RESEARCH
  • 2012-04-22 Identification and Characterization of Four Missense Mutations in Brown midrib 12 (Bmr12), the Caffeic O-Methyltranferase (COMT) of Sorghum in BIOENERGY RESEARCH
  • 2010-04-17 DOE Bioenergy Center Special Issue: The Joint BioEnergy Institute (JBEI) in BIOENERGY RESEARCH
  • 2009-01-01 Cell wall Biosynthetic Genes of Maize and their Potential for Bioenergy Production in HANDBOOK OF MAIZE
  • 2008-10-25 Editorial for Issue 3 of BioEnergy Research in BIOENERGY RESEARCH
  • 2008-10-25 Allelic Association, Chemical Characterization and Saccharification Properties of brown midrib Mutants of Sorghum (Sorghum bicolor (L.) Moench) in BIOENERGY RESEARCH
  • 2008-06 Editorial in BIOENERGY RESEARCH
  • 2008-04-12 Introduction to Session 1A: Feedstock Genomics and Development in BIOTECHNOLOGY FOR FUELS AND CHEMICALS
  • 2008-03 Introduction to Session 1A: Feedstock Genomics and Development in APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY
  • 2008-01-01 A Primer on Genetics, Genomics and Plant Breeding in GENETIC IMPROVEMENT OF BIOENERGY CROPS
  • 2008-01-01 Composition and Biosynthesis of Lignocellulosic Biomass in GENETIC IMPROVEMENT OF BIOENERGY CROPS
  • 2008-01-01 Why Bioenergy Makes Sense in GENETIC IMPROVEMENT OF BIOENERGY CROPS
  • 2008-01-01 Miscanthus: Genetic Resources and Breeding Potential to Enhance Bioenergy Production in GENETIC IMPROVEMENT OF BIOENERGY CROPS
  • 2006 Phenolic Compound Biochemistry in NONE
  • 2006-01-01 Chemical Properties of Phenolic Compounds in PHENOLIC COMPOUND BIOCHEMISTRY
  • 2006-01-01 Phenolic Compounds and their Effects on Human Health in PHENOLIC COMPOUND BIOCHEMISTRY
  • 2005-06-25 Genomics of plant cell wall biogenesis in PLANTA
  • 2003-03-12 A candidate-gene approach to clone the sorghum Brown midrib gene encoding caffeic acid O-methyltransferase in MOLECULAR GENETICS AND GENOMICS
  • 2002-05-27 The maize Brown midrib1 locus affects cell wall composition and plant development in a dose-dependent manner in HEREDITY
  • 2002-01-07 Evidence for an evolutionarily conserved interaction between cell wall biosynthesis and flowering in maize and sorghum in BMC ECOLOGY AND EVOLUTION
  • 1999-08-01 Time to flowering in brown midrib mutants of maize: an alternative approach to the analysis of developmental traits in HEREDITY
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