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The Plant Cell|October 21, 2004
Multiple genetic processes result in heterogeneous rates of evolution within the major cluster disease resistance genes in lettuceHanhui Kuang, Sung-Sick Woo, Blake C Meyers, et al.Plant Disease|March 1, 2019
Insensitivity to the Fungicide Fosetyl-Aluminum in California Isolates of the Lettuce Downy Mildew Pathogen, Bremia lactucaeSarah Brown, Steven T Koike, Oswaldo E Ochoa, et al.G3 (Bethesda, Md.)|March 27, 2021
High-resolution genetic dissection of the major QTL for tipburn resistance in lettuce, Lactuca sativaMiguel Macias-González, Maria Jose Truco, Rongkui Han, et al.BMC Plant Biology|May 28, 2021
The genetic basis of water-use efficiency and yield in lettuceAnnabelle Damerum, Hazel K Smith, Gjj Clarkson, et al.Horticulture Research|April 6, 2018
Molecular markers reliably predict post-harvest deterioration of fresh-cut lettuce in modified atmosphere packagingIvan Simko, Ryan J Hayes, Maria-Jose Truco, et al.Plant Physiology|March 26, 2021
Isolating an active and inactive CACTA transposon from lettuce color mutants and characterizing their familyCsanad Gurdon, Alexander Kozik, Rong Tao, et al.Fungal Genetics and Biology : FG & B|May 14, 2003
A genetic map of the lettuce downy mildew pathogen, Bremia lactucae, constructed from molecular markers and avirulence genesDelphine Sicard, Erik Legg, Sarah Brown, et al.BMC Plant Biology|February 8, 2014
Genetic analysis of safflower domesticationStephanie A Pearl, John E Bowers, Sebastian Reyes-Chin-Wo, et al.Molecular Plant-Microbe Interactions : MPMI|February 5, 2015
Dissection of Two Complex Clusters of Resistance Genes in Lettuce (Lactuca sativa)Marilena Christopoulou, Leah K McHale, Alex Kozik, et al.G3 (Bethesda, Md.)|March 8, 2018
High-Resolution Analysis of the Efficiency, Heritability, and Editing Outcomes of CRISPR/Cas9-Induced Modifications of NCED4 in Lettuce (Lactuca sativa)Lien D Bertier, Mily Ron, Heqiang Huo, et al.Pageof 11