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Phytochemistry|August 21, 2007
Inactivation of pea genes by RNAi supports the involvement of two similar O-methyltransferases in the biosynthesis of (+)-pisatin and of chiral intermediates with a configuration opposite that found in (+)-pisatinEvans Kaimoyo, Hans D VanEttenMolecular Plant-Microbe Interactions : MPMI|July 10, 2004
Introduction of plant and fungal genes into pea (Pisum sativum L.) hairy roots reduces their ability to produce pisatin and affects their response to a fungal pathogenQindong Wu, Hans D VanEttenCurrent Genetics|June 20, 2002
Distribution of the pea pathogenicity ( PEP) genes in the fungus Nectria haematococca mating population VIEsteban D Temporini, Hans D VanEttenPhytochemistry|December 17, 2013
(+)-Pisatin biosynthesis: from (-) enantiomeric intermediates via an achiral 7,2'-dihydroxy-4',5'-methylenedioxyisoflav-3-eneRhodesia M Celoy, Hans D VanEttenCurrent Genetics|May 1, 2004
An analysis of the phylogenetic distribution of the pea pathogenicity genes of Nectria haematococca MPVI supports the hypothesis of their origin by horizontal transfer and uncovers a potentially new pathogen of garden pea: Neocosmospora boniensisEsteban D Temporini, Hans D VanEttenPhytochemistry|March 1, 2006
Studies on the late steps of (+) pisatin biosynthesis: evidence for (-) enantiomeric intermediatesGregory L DiCenzo, Hans D VanEttenMolecular Plant-Microbe Interactions : MPMI|August 17, 2002
Pisatin demethylase genes are on dispensable chromosomes while genes for pathogenicity on carrot and ripe tomato are on other chromosomes in Nectria haematococcaDeanna L Funnell, Hans D VanEttenCurrent Genetics|August 20, 2003
Expression profiles of pea pathogenicity ( PEP) genes in vivo and in vitro, characterization of the flanking regions of the PEP cluster and evidence that the PEP cluster region resulted from horizontal gene transfer in the fungal pathogen Nectria haematococcaXiaoguang Liu, Mark Inlow, Hans D VanEttenFungal Genetics and Biology : FG & B|November 1, 2002
Identification of new pisatin demethylase genes (PDA5 and PDA7) in Nectria haematococca and non-Mendelian segregation of pisatin demethylating ability and virulence on pea due to loss of chromosomal elementsDeanna L Funnell, Patty S Matthews, Hans D VanEttenPlant Physiology|December 5, 2006
Extracellular proteins in pea root tip and border cell exudatesFushi Wen, Hans D VanEtten, George Tsaprailis, et al.Pageof 3