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Genetics

D-Index
76
Citations
22432
World Ranking
1820
National Ranking
838

Overview

Milton P. Gordon was affiliated with the University of Washington in the United States. Throughout their academic career, Gordon contributed to the scientific community primarily through research activities conducted during this affiliation.

No detailed records of recent papers, including titles, publication venues, or citation counts, are available for Gordon. There is also no information about frequent co-authors or venues in which their work was regularly published.

The scientist's profile does not include specific fields or subfields of study linked to their body of work, nor are there distinct main topics that their research focused on. Similarly, no documented book publications were recorded under Gordon's authorship.

There is no record of awards received by Milton P. Gordon, and the data confirms that the scientist is deceased. The available information presents only a minimal outline of their academic presence based on institutional affiliation.

Best Publications

  • Stable incorporation of plasmid DNA into higher plant cells: the molecular basis of crown gall tumorigenesis

    Mary-Dell Chilton;Martin H. Drummond;Donald J. Merlo;Daniela Sciaky

  • The Genome of the Natural Genetic Engineer Agrobacterium tumefaciens C58

    Derek W. Wood;Joao C. Setubal;Rajinder Kaul;Dave E. Monks

  • Plasmid required for virulence of Agrobacterium tumefaciens.

    B Watson;T C Currier;M P Gordon;M D Chilton

  • Agrobacterium tumefaciens DNA and PS8 bacteriophage DNA not detected in crown gall tumors

    Mary-Dell Chilton;Thomas C. Currier;Stephen K. Farrand;Arnold J. Bendich

  • T-DNA of Agrobacterium tumefaciens encodes an enzyme of cytokinin biosynthesis

    D E Akiyoshi;H Klee;R M Amasino;E W Nester

  • Genetic analysis of crown gall: Fine structure map of the T-DNA by site-directed mutagenesis

    David J. Garfinkel;Robert B. Simpson;Lloyd W. Ream;Frank F. White

  • Molecular and genetic analysis of the transferred DNA regions of the root-inducing plasmid of Agrobacterium rhizogenes.

    F F White;B H Taylor;G A Huffman;M P Gordon

  • New cloning vehicles for transformation of higher plants.

    G. An;B.D. Watson;B.D. Watson;S. Stachel;S. Stachel;M.P. Gordon

  • CROWN GALL: A MOLECULAR AND PHYSIOLOGICAL ANALYSIS

    Eugene W. Nester;Milton P. Gordon;Richard M. Amasino;Martin F. Yanofsky

  • Integration and organization of Ti plasmid sequences in crown gall tumors

    Michael F. Thomashow;Robert Nutter;Alice L. Montoya;Milton P. Gordon

  • Cytokinin/auxin balance in crown gall tumors is regulated by specific loci in the T-DNA.

    D. E. Akiyoshi;R. O. Morris;R. Hinz;Barbara Sue Mischke

  • Enhanced metabolism of halogenated hydrocarbons in transgenic plants containing mammalian cytochrome P450 2E1

    Sharon Lafferty Doty;Tanya Q. Shang;Angela M. Wilson;Jeff Tangen

  • Organization and sequence analysis of the 2,4-dichlorophenol hydroxylase and dichlorocatechol oxidative operons of plasmid pJP4.

    E J Perkins;M P Gordon;O Caceres;P F Lurquin

  • T-DNA from Agrobacterium Ti plasmid is in the nuclear DNA fraction of crown gall tumor cells

    Mary-Dell Chilton;Randall K. Saiki;Narendra Yadav;Milton P. Gordon

  • The virD operon of Agrobacterium tumefaciens encodes a site-specific endonuclease.

    Martin F. Yanofsky;Sandra G. Porter;Calvin Young;Lisa M. Albright

  • Plant phenolic compounds induce expression of the Agrobacterium tumefaciens loci needed for virulence.

    George W. Bolton;Eugene W. Nester;Milton P. Gordon

  • Genes responsible for the supervirulence phenotype of Agrobacterium tumefaciens A281.

    Shouguang Jin;T. Komari;M. P. Gordon;E. W. Nester

  • Octopine and nopaline metabolism in Agrobacterium tumefaciens and crown gall tumor cells: role of plasmid genes.

    A L Montoya;M D Chilton;M P Gordon;D Sciaky

  • A gene essential for Agrobacterium virulence is homologous to a family of positive regulatory loci.

    Stephen C. Winans;Paul R. Ebert;Scott E. Stachel;Milton P. Gordon

  • Tumor induction by Agrobacterium rhizogenes involves the transfer of plasmid DNA to the plant genome.

    Frank F. White;Gina Ghidossi;Milton P. Gordon;Eugene W. Nester

Frequent Co-Authors

Eugene W. Nester
Eugene W. Nester University of Washington
Mary-Dell Chilton
Mary-Dell Chilton Washington University in St. Louis
Frank F. White
Frank F. White University of Florida
Stuart E. Strand
Stuart E. Strand University of Washington
David J. Garfinkel
David J. Garfinkel University of Georgia
Kyung Hwan Han
Kyung Hwan Han Michigan State University
Xiaoping Wang
Xiaoping Wang Chinese Academy of Sciences
Martin F. Yanofsky
Martin F. Yanofsky University of California, San Diego
Harry J. Klee
Harry J. Klee University of Florida
Michael F. Thomashow
Michael F. Thomashow Michigan State University

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