Characterization of three members of the Arabidopsis carotenoid cleavage dioxygenase family demonstrates the divergent roles of this multifunctional enzyme family ME Auldridge, A Block, JT Vogel, C Dabney‐Smith, I Mila, M Bouzayen, ... The Plant Journal 45 (6), 982-993, 2006 | 416 | 2006 |
Phytopathogen type III effector weaponry and their plant targets A Block, G Li, ZQ Fu, JR Alfano Current opinion in plant biology 11 (4), 396-403, 2008 | 384 | 2008 |
Plant targets for Pseudomonas syringae type III effectors: virulence targets or guarded decoys? A Block, JR Alfano Current opinion in microbiology 14 (1), 39-46, 2011 | 290 | 2011 |
The use of vapor phase extraction in metabolic profiling of phytohormones and other metabolites EA Schmelz, J Engelberth, JH Tumlinson, A Block, HT Alborn The Plant Journal 39 (5), 790-808, 2004 | 283 | 2004 |
Multiple hormones act sequentially to mediate a susceptible tomato pathogen defense response PJ O'Donnell, E Schmelz, A Block, O Miersch, C Wasternack, JB Jones, ... Plant physiology 133 (3), 1181-1189, 2003 | 191 | 2003 |
The effects of climate change associated abiotic stresses on maize phytochemical defenses MM Vaughan, A Block, SA Christensen, LH Allen, EA Schmelz Phytochemistry Reviews 17, 37-49, 2018 | 170 | 2018 |
Biosynthesis and function of terpenoid defense compounds in maize (Zea mays) AK Block, MM Vaughan, EA Schmelz, SA Christensen Planta 249, 21-30, 2019 | 141 | 2019 |
The Pseudomonas syringae type III effector HopG1 targets mitochondria, alters plant development and suppresses plant innate immunity A Block, M Guo, G Li, C Elowsky, TE Clemente, JR Alfano Cellular microbiology 12 (3), 318-330, 2010 | 138 | 2010 |
Coronatine and salicylic acid: the battle between Arabidopsis and Pseudomonas for phytohormone control A Block, E Schmelz, JB Jones, HJ Klee Molecular Plant Pathology 6 (1), 79-83, 2005 | 126 | 2005 |
The Pseudomonas syringae type III effector HopD1 suppresses effector‐triggered immunity, localizes to the endoplasmic reticulum, and targets the Arabidopsis … A Block, TY Toruño, CG Elowsky, C Zhang, J Steinbrenner, J Beynon, ... New phytologist 201 (4), 1358-1370, 2014 | 118 | 2014 |
The Origin and Biosynthesis of the Benzenoid Moiety of Ubiquinone (Coenzyme Q) in Arabidopsis A Block, JR Widhalm, A Fatihi, RE Cahoon, Y Wamboldt, C Elowsky, ... The Plant Cell 26 (5), 1938-1948, 2014 | 102 | 2014 |
Systemic acquired tolerance to virulent bacterial pathogens in tomato A Block, E Schmelz, PJ O'Donnell, JB Jones, HJ Klee Plant Physiology 138 (3), 1481-1490, 2005 | 99 | 2005 |
Plant Immunity Directly or Indirectly Restricts the Injection of Type III Effectors by the Pseudomonas syringae Type III Secretion System E Crabill, A Joe, A Block, JM Van Rooyen, JR Alfano Plant physiology 154 (1), 233-244, 2010 | 93 | 2010 |
Phylloquinone (vitamin K1): occurrence, biosynthesis and functions G J Basset, S Latimer, A Fatihi, E Soubeyrand, A Block Mini reviews in medicinal chemistry 17 (12), 1028-1038, 2017 | 92 | 2017 |
Plant defense chemicals against insect pests JP Yactayo-Chang, HV Tang, J Mendoza, SA Christensen, AK Block Agronomy 10 (8), 1156, 2020 | 74 | 2020 |
Xanthomonas translucens commandeers the host rate-limiting step in ABA biosynthesis for disease susceptibility Z Peng, Y Hu, J Zhang, JC Huguet-Tapia, AK Block, S Park, S Sapkota, ... Proceedings of the National Academy of Sciences 116 (42), 20938-20946, 2019 | 67 | 2019 |
MSH1 is a plant organellar DNA binding and thylakoid protein under precise spatial regulation to alter development KS Virdi, Y Wamboldt, H Kundariya, JD Laurie, I Keren, KRS Kumar, ... Molecular Plant 9 (2), 245-260, 2016 | 67 | 2016 |
A Dedicated Type II NADPH Dehydrogenase Performs the Penultimate Step in the Biosynthesis of Vitamin K1 in Synechocystis and Arabidopsis A Fatihi, S Latimer, S Schmollinger, A Block, PH Dussault, WFJ Vermaas, ... The Plant Cell 27 (6), 1730-1741, 2015 | 66 | 2015 |
Tissue inhibitors of matrix metalloproteinases in platelets and megakaryocytes: a novel organization for these secreted proteins J Villeneuve, A Block, MC Le Bousse-Kerdilès, S Lepreux, P Nurden, ... Experimental hematology 37 (7), 849-856, 2009 | 66 | 2009 |
The peroxidative cleavage of kaempferol contributes to the biosynthesis of the benzenoid moiety of ubiquinone in plants E Soubeyrand, TS Johnson, S Latimer, A Block, J Kim, TA Colquhoun, ... The Plant Cell 30 (12), 2910-2921, 2018 | 61 | 2018 |