Skip to main content
GrainGenes

GrainGenes

A Database for Triticeae and Avena

Main menu

  • Home
  • GrainGenes Tools
    • Browse GrainGenes
    • GSP: Genome Specific Primers
    • RJPrimers (offline)
    • BatchPrimer3 (offline)
    • PIECE2 (offline)
    • BLAST
    • SNPWorld (obsolete)
    • CMap
    • Genome Browsers
    • PanGenomes
  • Query Data Types
    • Genetic Markers
    • Sequences
    • Colleagues
    • Gene Expression
    • Maps
  • Resources
    • GrainGenes Tutorials
    • Genomics
    • Germplasm
    • Mapping
    • Pathology
    • Protocols
    • Publications
    • Taxonomy
    • Links to Related Sites
  • Collaborations
    • AgBioData
    • Agriculture and Agri-Food Canada (AAFC)
    • Oat Global
    • The Triticeae Toolbox
    • USDA-ARS Small Grains Genotyping Labs
    • U.S. Wheat and Barley Scab Initiative
    • WheatExp
    • WheatIS
  • About
  • Feedback
  • Cite Us!


Query (optional)   in Class  

GrainGenes Author Report: Rerkasem B

[Submit comment/correction]

Author
Rerkasem B
Paper
ReferenceRerkasem B et al. (2004) Increasing boron efficiency in international bread wheat, durum wheat, triticale and barley germplasm will boost production on soils low in boron Field Crops Research 86:175-184.
ReferenceRerkasem B and Jamjod S (2004) Boron deficiency in wheat: a review Field Crops Research 89:173-186.
ReferenceNachiangmai D et al. (2004) Enhanced boron transport into the ear of wheat as a mechanism for boron efficiency Plant and Soil 264:141-147.
ReferenceJamjod S et al. (2004) Genetic control of boron efficiency in wheat (Triticum aestivum L.). Euphytica 135:21-27.
ReferencePant J et al. (1998) Effect of water stress on the boron response of wheat genotypes under low boron field conditions. Plant and Soil 202:193-200.

GrainGenes is a product of the Agricultural Research Service of the US Department of Agriculture.