Soil solarization and thermal death: a logarithmic relationship between time and temperature for four soilborne plant pathogens. GS Pullman, JE DeVay, RH Garber Phytopathology 71 (9), 959-964, 1981 | 331 | 1981 |
Soil solarization: effects on Verticillium wilt of cotton and soilborne populations of Verticillium dahliae, Pythium spp., Rhizoctonia solani, and Thielaviopsis basicola GS Pullman, JE DeVay, RH Garber, AR Weinhold Phytopathology 71 (9), 954-959, 1981 | 221 | 1981 |
High-efficiency Agrobacterium-mediated transformation of Norway spruce (Picea abies) and loblolly pine (Pinus taeda) A Richard Wenck, M Quinn, RW Whetten, G Pullman, R Sederoff Plant Molecular Biology 39, 407-416, 1999 | 211 | 1999 |
Forestry in the 21st Century PK Gupta, G Pullman, R Timmis, M Kreitinger, WC Carlson, J Grob, ... Bio/technology 11 (4), 454-459, 1993 | 198 | 1993 |
Improving loblolly pine somatic embryo maturation: comparison of somatic and zygotic embryo morphology, germination, and gene expression GS Pullman, S Johnson, G Peter, J Cairney, N Xu Plant Cell Reports 21, 747-758, 2003 | 171 | 2003 |
The cellular and molecular biology of conifer embryogenesis J Cairney, GS Pullman New phytologist 176 (3), 511-536, 2007 | 170 | 2007 |
Brassinolide improves embryogenic tissue initiation in conifers and rice GS Pullman, Y Zhang, BH Phan Plant cell reports 22, 96-104, 2003 | 133 | 2003 |
Genetic control of somatic embryogenesis initiation in loblolly pine and implications for breeding JJ MacKay, MR Becwar, YS Park, JP Corderro, GS Pullman Tree Genetics & Genomes 2, 1-9, 2006 | 121 | 2006 |
Method for reproducing coniferous plants by somatic embryogenesis using abscisic acid and osmotic potential variation PK Gupta, GS Pullman US Patent 5,036,007, 1991 | 115 | 1991 |
Method for reproducing coniferous plants by somatic embryogenesis using adsorbent materials in the development stage media GS Pullman, PK Gupta US Patent 5,034,326, 1991 | 112 | 1991 |
Somatic embryogenesis in loblolly pine (Pinus taeda L.): improving culture initiation with abscisic acid and silver nitrate GS Pullman, K Namjoshi, Y Zhang Plant cell reports 22, 85-95, 2003 | 99 | 2003 |
Method for reproducing coniferous plants by somatic embryogenesis PK Gupta, GS Pullman US Patent 4,957,866, 1990 | 99 | 1990 |
Epidemiology of Verticillium wilt of cotton: a relationship between inoculum density and disease progression. GS Pullman, JE DeVay | 96 | 1982 |
Expressed sequence tags from loblolly pine embryos reveal similarities with angiosperm embryogenesis J Cairney, L Zheng, A Cowels, J Hsiao, V Zismann, J Liu, S Ouyang, ... Plant Molecular Biology 62, 485-501, 2006 | 91 | 2006 |
The impact of Gelrite and activated carbon on the elemental composition of two conifer embryogenic tissue initiation media SC Van Winkle, S Johnson, GS Pullman Plant Cell Reports 21, 1175-1182, 2003 | 89 | 2003 |
Evidence for stage‐specific modulation of specific microRNAs (miRNAs) and miRNA processing components in zygotic embryo and female gametophyte of loblolly pine (Pinus taeda) TJ Oh, RM Wartell, J Cairney, GS Pullman New Phytologist 179 (1), 67-80, 2008 | 86 | 2008 |
Pine somatic embryogenesis: analyses of seed tissue and medium to improve protocol development GS Pullman, K Bucalo New Forests 45, 353-377, 2014 | 84 | 2014 |
Method for reproducing coniferous plants by somatic embryogenesis using abscisic acid and osmotic potential variation. PK Gupta, GS Pullman | 82 | 1991 |
An embryo staging system for comparison of zygotic and somatic embryo development GS Pullman, DT Webb TAPPI R&D Division biological sciences symposium, 31-34, 1994 | 80 | 1994 |
Somatic embryogenesis in loblolly pine (Pinus taeda L.): improving culture initiation rates GS Pullman, S Johnson Annals of Forest Science 59 (5-6), 663-668, 2002 | 75 | 2002 |