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Eric A Schmelz

Wikidata Item | Scholia Profile [curation] | Reasonator | SQID

Listed Publications

68 publications found

TitleAuthors (identified)Published InIdentifier(s)TopicPublished Date
Maize Terpene Synthase 8 (ZmTPS8) Contributes to a Complex Blend of Fungal-Elicited Antibiotics[1]Evan V. Saldivar, [2]Yezhang Ding, [3]Elly Poretsky, [4]Skylar Bird, [5]Anna Block, [6]Alisa Huffaker, [7]Eric A Schmelz [Full author list]Plants [curation]DOI: 10.3390/PLANTS12051111
2023-03-01
Signatures of plant defense response specificity mediated by herbivore‐associated molecular patterns in legumes[1]Adam D Steinbrenner, [2]Evan Saldivar, [3]Nile Hodges, [4]Natalia Guayazán‐Palacios, [5]Antonio F. Chaparro, [6]Eric A Schmelz [Full author list]The Plant Journal [curation]DOI: 10.1111/TPJ.15732
herbivore [curation]; defence against herbivory [curation]2022-04-08
A receptor-like protein mediates plant immune responses to herbivore-associated molecular patterns[1]Adam D Steinbrenner, [2]Maria Muñoz-Amatriaín, [3]Antonio F Chaparro, [4]Jessica Montserrat Aguilar-Venegas, [5]Sassoum Lo, [6]Satohiro Okuda, [7]Gaetan Glauser, [8]Julien Dongiovanni, [9]Da Shi, [10]Marlo Hall, [11]Daniel Crubaugh, [12]Nicholas Holton, [13]Cyril Zipfel, [14]Ruben Abagyan, [15]Ted Turlings, [16]Timothy J Close, [17]Alisa Huffaker, [18]Eric A Schmelz [Full author list]Proceedings of the National Academy of Sciences of the United States of America [curation]DOI: 10.1073/PNAS.2018415117
PubMed: 33229576
herbivore [curation]; herbivory [curation]2020-11-23
Genetic elucidation of interconnected antibiotic pathways mediating maize innate immunity[1]Yezhang Ding, [2]Philipp R Weckwerth, [3]Elly Poretsky, [4]Katherine M Murphy, [5]James Sims, [6]Evan Saldivar, [7]Shawn A Christensen, [8]Si Nian Char, [9]Bing Yang, [10]Anh-Dao Tong, ..., [23]Steven P Briggs, [24]Philipp Zerbe, [25]Eric A Schmelz, [26]Alisa Huffaker [Full author list]Nature Plants [curation]DOI: 10.1038/S41477-020-00787-9
PubMed: 33106639
2020-10-26
Survey of Sensitivity to Fatty Acid-Amino Acid Conjugates in the Solanaceae[1]Laquita Grissett, [2]Azka Ali, [3]Anne-Marie Coble, [4]Khalilah Logan, [5]Brandon Washington, [6]Abigail Mateson, [7]Kelsey McGee, [8]Yaw Nkrumah, [9]Leighton Jacobus, [10]Evelyn Abraham, [11]Claire Hann, [12]Carlton J Bequette, [13]Sarah R Hind, [14]Eric A Schmelz, [15]Johannes W Stratmann [Full author list]Journal of Chemical Ecology [curation]DOI: 10.1007/S10886-020-01152-Y
PubMed: 31989490
Solanaceae [curation]2020-01-27
Multiple genes recruited from hormone pathways partition maize diterpenoid defences[1]Yezhang Ding, [2]Katherine M Murphy, [3]Elly Poretsky, [4]Sibongile Mafu, [5]Bing Yang, [6]Si Nian Char, [7]Shawn A Christensen, [8]Evan Saldivar, [9]Mengxi Wu, [10]Qiang Wang, ..., [21]Alisa Huffaker, [22]Philipp Zerbe, [23]Eric A Schmelz [Full author list]Nature Plants [curation]DOI: 10.1038/S41477-019-0509-6
PubMed: 31527844
2019-09-16
Ethylene signaling regulates natural variation in the abundance of antifungal acetylated diferuloylsucroses and Fusarium graminearum resistance in maize seedling roots[1]Shaoqun Zhou, [2]Ying K Zhang, [3]Karl A Kremling, [4]Yezhang Ding, [5]John S Bennett, [6]Justin S Bae, [7]Dean K Kim, [8]Hayley H Ackerman, [9]Michael V Kolomiets, [10]Eric A Schmelz, [11]Frank C Schroeder, [12]Edward Buckler, [13]Georg Jander [Full author list]New Phytologist [curation]DOI: 10.1111/NPH.15520
PubMed: 30289553
Fusarium graminearum [curation]2018-11-02
Discovery, Biosynthesis and Stress-Related Accumulation of Dolabradiene-Derived Defenses in Maize[1]Sibongile Mafu, [2]Yezhang Ding, [3]Katherine M Murphy, [4]Omar Yaacoobi, [5]J Bennett Addison, [6]Qiang Wang, [7]Zhouxin Shen, [8]Steven P Briggs, [9]Jörg Bohlmann, [10]Gabriel Castro-Falcon, [11]Chambers C Hughes, [12]Mariam Betsiashvili, [13]Alisa Huffaker, [14]Eric A Schmelz, [15]Philipp Zerbe [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.17.01351
PubMed: 29475898
dolabradiene [curation]; 15,16-epoxydolabrene [curation]; 3beta-hydroxy-15,16-epoxydolabrene [curation]2018-02-23
Selinene Volatiles Are Essential Precursors for Maize Defense Promoting Fungal Pathogen Resistance[1]Yezhang Ding, [2]Alisa Huffaker, [3]Tobias G Köllner, [4]Philipp Weckwerth, [5]Christelle A.M. Robert, [6]Joseph Spencer, [7]Alexander E Lipka, [8]Eric A Schmelz [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.17.00879
PubMed: 28931629
2017-09-20
Activation of Shikimate, Phenylpropanoid, Oxylipins, and Auxin Pathways in Pectobacterium carotovorum Elicitors-Treated Moss[1]Alfonso Alvarez, [2]Marcos Montesano, [3]Eric A Schmelz, [4]Inés Ponce de León [Full author list]Frontiers in Plant Science [curation]DOI: 10.3389/FPLS.2016.00328
PubMed: 27047509
Pectobacterium carotovorum [curation]2016-03-22
Dynamic Maize Responses to Aphid Feeding Are Revealed by a Time Series of Transcriptomic and Metabolomic Assays[1]Vered Tzin, [2]Noe Fernandez-Pozo, [3]Annett Richter, [4]Eric A Schmelz, [5]Matthias Schoettner, [6]Martin Schäfer, [7]Kevin R Ahern, [8]Lisa N Meihls, [9]Harleen Kaur, [10]Alisa Huffaker, [11]Naoki Mori, [12]Joerg Degenhardt, [13]Lukas A Mueller, [14]Georg Jander [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.15.01039
PubMed: 26378100
transcriptome [curation]2015-09-16
Accumulation of terpenoid phytoalexins in maize roots is associated with drought tolerance[1]Martha M Vaughan, [2]Shawn Christensen, [3]Eric A Schmelz, [4]Alisa Huffaker, [5]Heather J McAuslane, [6]Hans T Alborn, [7]Maritza Romero, [8]Leon Hartwell Allen, [9]Peter E A Teal [Full author list]Plant, Cell and Environment [curation]DOI: 10.1111/PCE.12482
PubMed: 25392907
drought [curation]; terpenoids [curation]2015-01-23
The novel monocot-specific 9-lipoxygenase ZmLOX12 is required to mount an effective jasmonate-mediated defense against Fusarium verticillioides in maize[1]Shawn A Christensen, [2]Andriy Nemchenko, [3]Yong-Soon Park, [4]Eli Borrego, [5]Pei-Cheng Huang, [6]Eric A Schmelz, [7]Susan Kunze, [8]Ivo Feussner, [9]Nasser Yalpani, [10]Robert Meeley, [11]Michael V Kolomiets [Full author list]Molecular Plant-Microbe Interactions [curation]DOI: 10.1094/MPMI-06-13-0184-R
PubMed: 25122482
Fusarium verticillioides [curation]2014-11-01
Accumulation of 5-hydroxynorvaline in maize (Zea mays) leaves is induced by insect feeding and abiotic stress[1]Jian Yan, [2]Alexander E Lipka, [3]Eric A Schmelz, [4]Edward Buckler, [5]Georg Jander [Full author list]Journal of Experimental Botany [curation]DOI: 10.1093/JXB/ERU385
PubMed: 25271262
maize [curation]2014-09-30
Influence of brown stink bug feeding, planting date and sampling time on common smut infection of maize.[1]Xinzhi Ni, [2]Michael D Toews, [3]G David Buntin, [4]James E Carpenter, [5]Alisa Huffaker, [6]Eric A Schmelz, [7]Ted E Cottrell, [8]Zaid Abdo [Full author list]Insect Science [curation]DOI: 10.1111/1744-7917.12149
PubMed: 24963742
smut [curation]2014-08-20
Insect-induced daidzein, formononetin and their conjugates in soybean leaves[1]Shinichiro Murakami, [2]Ryu Nakata, [3]Takako Aboshi, [4]Naoko Yoshinaga, [5]Masayoshi Teraishi, [6]Yutaka Okumoto, [7]Atsushi Ishihara, [8]Hironobu Morisaka, [9]Alisa Huffaker, [10]Eric A Schmelz, [11]Naoki Mori [Full author list]Metabolites [curation]DOI: 10.3390/METABO4030532
PubMed: 25000357
2014-07-04
Effects of elevated [CO2 ] on maize defence against mycotoxigenic Fusarium verticillioides[1]Martha M Vaughan, [2]Alisa Huffaker, [3]Eric A Schmelz, [4]Nicole J Dafoe, [5]Shawn Christensen, [6]James Sims, [7]Vitor F Martins, [8]Jay Swerbilow, [9]Maritza Romero, [10]Hans T Alborn, [11]Leon Hartwell Allen, [12]Peter E A Teal [Full author list]Plant, Cell and Environment [curation]DOI: 10.1111/PCE.12337
PubMed: 24689748
Fusarium verticillioides [curation]2014-05-13
Biosynthesis, elicitation and roles of monocot terpenoid phytoalexins[1]Eric A Schmelz, [2]Alisa Huffaker, [3]James Sims, [4]Shawn A Christensen, [5]Xuan Lu, [6]Kazunori Okada, [7]Reuben J. Peters [Full author list]The Plant Journal [curation]DOI: 10.1111/TPJ.12436
PubMed: 24450747
terpenoids [curation]2014-03-26
A 13-lipoxygenase, TomloxC, is essential for synthesis of C5 flavour volatiles in tomato[1]Jiyuan Shen, [2]Denise Tieman, [3]Jeffrey B Jones, [4]Mark G Taylor, [5]Eric A Schmelz, [6]Alisa Huffaker, [7]Dawn Bies, [8]Kunsong Chen, [9]Harry J Klee [Full author list]Journal of Experimental Botany [curation]DOI: 10.1093/JXB/ERT382
PubMed: 24453226
2014-01-22
European corn borer (Ostrinia nubilalis) induced responses enhance susceptibility in maize[1]Nicole J Dafoe, [2]James D Thomas, [3]Paul D Shirk, [4]Michelle E Legaspi, [5]Martha M Vaughan, [6]Alisa Huffaker, [7]Peter E Teal, [8]Eric A Schmelz [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0073394
PubMed: 24023868
European Corn Borer [curation]2013-01-01
Homologous RXLR effectors from Hyaloperonospora arabidopsidis and Phytophthora sojae suppress immunity in distantly related plants[1]Ryan G Anderson, [2]Megan S Casady, [3]Rachel A Fee, [4]Martha M Vaughan, [5]Devdutta Deb, [6]Kevin Fedkenheuer, [7]Alisa Huffaker, [8]Eric A Schmelz, [9]Brett M Tyler, [10]John M. McDowell [Full author list]The Plant Journal [curation]DOI: 10.1111/J.1365-313X.2012.05079.X
PubMed: 22709376
Hyaloperonospora arabidopsidis [curation]; Phytophthora sojae [curation]2012-10-26
Physcomitrella patens activates reinforcement of the cell wall, programmed cell death and accumulation of evolutionary conserved defence signals, such as salicylic acid and 12-oxo-phytodienoic acid, but not jasmonic acid, upon Botrytis cinerea infection[1]Inés Ponce de León, [2]Eric A Schmelz, [3]Carina Gaggero, [4]Alexandra Olaya Castro, [5]Alfonso Álvarez, [6]Marcos Montesano [Full author list]Molecular Plant Pathology [curation]DOI: 10.1111/J.1364-3703.2012.00806.X
PubMed: 22551417
cell wall [curation]; salicylic acid [curation]; Botrytis cinerea [curation]; Physcomitrella patens [curation]; cell death [curation]; Medical uses of salicylic acid [curation]2012-05-03
Synthesis of caeliferins, elicitors of plant immune responses: accessing lipophilic natural products via cross metathesis[1]Inish O'Doherty, [2]Joshua J Yim, [3]Eric A Schmelz, [4]Frank C Schroeder [Full author list]Organic Letters [curation]DOI: 10.1021/OL202541B
PubMed: 21992613
natural product [curation]2011-10-12
Rapidly induced chemical defenses in maize stems and their effects on short-term growth of Ostrinia nubilalis[1]Nicole J Dafoe, [2]Alisa Huffaker, [3]Martha M Vaughan, [4]Adrian J Duehl, [5]Peter E Teal, [6]Eric A Schmelz [Full author list]Journal of Chemical Ecology [curation]DOI: 10.1007/S10886-011-0002-9
PubMed: 21833765
European Corn Borer [curation]2011-08-11
Spatial patterns of aflatoxin levels in relation to ear-feeding insect damage in pre-harvest corn[1]Xinzhi Ni, [2]Jeffrey P Wilson, [3]G David Buntin, [4]Baozhu Guo, [5]Matthew D Krakowsky, [6]R Dewey Lee, [7]Ted E Cottrell, [8]Brian T Scully, [9]Alisa Huffaker, [10]Eric A Schmelz [Full author list]Toxins [curation]DOI: 10.3390/TOXINS3070920
PubMed: 22069748
2011-07-21
Novel acidic sesquiterpenoids constitute a dominant class of pathogen-induced phytoalexins in maize[1]Alisa Huffaker, [2]Fatma Kaplan, [3]Martha M Vaughan, [4]Nicole J Dafoe, [5]Xinzhi Ni, [6]James R Rocca, [7]Hans T Alborn, [8]Peter E A Teal, [9]Eric A Schmelz [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.111.179457
PubMed: 21690302
2011-06-20
Identity, regulation, and activity of inducible diterpenoid phytoalexins in maize[1]Eric A Schmelz, [2]Fatma Kaplan, [3]Alisa Huffaker, [4]Nicole J Dafoe, [5]Martha M Vaughan, [6]Xinzhi Ni, [7]James R Rocca, [8]Hans T Alborn, [9]Peter E Teal [Full author list]Proceedings of the National Academy of Sciences of the United States of America [curation]DOI: 10.1073/PNAS.1014714108
PubMed: 21402917
2011-03-14
Soldier caste influences on candidate primer pheromone levels and juvenile hormone-dependent caste differentiation in workers of the termite Reticulitermes flavipes.[1]Matthew R Tarver, [2]Eric A Schmelz, [3]Michael E Scharf [Full author list]Journal of Insect Physiology [curation]DOI: 10.1016/J.JINSPHYS.2011.02.015
PubMed: 21356212
eastern subterranean termite [curation]2011-02-26
ZmPep1, an ortholog of Arabidopsis elicitor peptide 1, regulates maize innate immunity and enhances disease resistance[1]Alisa Huffaker, [2]Nicole J Dafoe, [3]Eric A Schmelz [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.110.166710
PubMed: 21205619
2011-01-04
Sugar levels regulate tryptophan-dependent auxin biosynthesis in developing maize kernels[1]Sherry LeCLere, [2]Eric A Schmelz, [3]Prem S Chourey [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.110.155226
PubMed: 20237017
2010-03-17
Pythium infection activates conserved plant defense responses in mosses[1]Juan Pablo Oliver, [2]Alexandra Olaya Castro, [3]Carina Gaggero, [4]Tomas Cascón, [5]Eric A Schmelz, [6]Carmen Castresana, [7]Inés Ponce de León [Full author list]Planta [curation]DOI: 10.1007/S00425-009-0969-4
PubMed: 19551405
defence against herbivory [curation]2009-06-24
Phytohormone-based activity mapping of insect herbivore-produced elicitors[1]Eric A Schmelz, [2]Jurgen Engelberth, [3]Hans T Alborn, [4]James H. Tumlinson, [5]Peter E A Teal [Full author list]Proceedings of the National Academy of Sciences of the United States of America [curation]DOI: 10.1073/PNAS.0811861106
PubMed: 19124770
insect [curation]; herbivore [curation]; herbivory [curation]2009-01-05
tasselseed1 is a lipoxygenase affecting jasmonic acid signaling in sex determination of maize[1]Iván F Acosta, [2]Hélène Laparra, [3]Sandra P Romero, [4]Eric A Schmelz, [5]Mats Hamberg, [6]John P Mottinger, [7]Maria A Moreno, [8]Stephen L Dellaporta [Full author list]Science [curation]DOI: 10.1126/SCIENCE.1164645
PubMed: 19131630
sex-determination system [curation]2009-01-01
A rapid biosensor-based method for quantification of free and glucose-conjugated salicylic acid[1]Christopher T Defraia, [2]Eric A Schmelz, [3]Zhonglin Mou [Full author list]Plant Methods [curation]DOI: 10.1186/1746-4811-4-28
PubMed: 19117519
biosensor [curation]2008-12-31
Cotton plant, Gossypium hirsutum L., defense in response to nitrogen fertilization[1]Yigen Chen, [2]Eric A Schmelz, [3]Felix L. Wäckers, [4]John R Ruberson [Full author list]Journal of Chemical Ecology [curation]DOI: 10.1007/S10886-008-9560-X
PubMed: 19020938
Gossypium hirsutum [curation]2008-11-20
XopD SUMO protease affects host transcription, promotes pathogen growth, and delays symptom development in xanthomonas-infected tomato leaves[1]Jung-Gun Kim, [2]Kyle W Taylor, [3]Andrew Hotson, [4]Mark Keegan, [5]Eric A Schmelz, [6]Mary Beth Mudgett [Full author list]The Plant Cell [curation]DOI: 10.1105/TPC.108.058529
PubMed: 18664616
2008-07-29
The Arabidopsis MAP kinase kinase 7: A crosstalk point between auxin signaling and defense responses?[1]Xudong Zhang, [2]Yuqing Xiong, [3]Christopher Defraia, [4]Eric A Schmelz, [5]Zhonglin Mou [Full author list]Plant Signaling and Behavior [curation]DOI: 10.4161/PSB.3.4.5230
PubMed: 19704652
auxin-activated signaling pathway [curation]2008-04-01
The attraction of Spodoptera frugiperda neonates to cowpea seedlings is mediated by volatiles induced by conspecific herbivory and the elicitor inceptin[1]Mark J Carroll, [2]Eric A Schmelz, [3]Peter E A Teal [Full author list]Journal of Chemical Ecology [curation]DOI: 10.1007/S10886-007-9414-Y
PubMed: 18256881
Spodoptera frugiperda [curation]; herbivory [curation]2008-02-07
Tissue-specific PhBPBT expression is differentially regulated in response to endogenous ethylene[1]Richard J Dexter, [2]Julian C. Verdonk, [3]Beverly A Underwood, [4]Kenichi Shibuya, [5]Eric A Schmelz, [6]David G Clark [Full author list]Journal of Experimental Botany [curation]DOI: 10.1093/JXB/ERM337
PubMed: 18256048
2008-02-05
Abbott, John[1]George Hangay, [2]Severiano F. Gayubo, [3]Marjorie Hoy, [4]Marta Goula, [5]Allen Sanborn, [6]Wendell. L. Morrill, [7]Gerd GÄde, [8]Heather G. Marco, [9]Joe C. B. Kabissa, [10]Jamie Ellis, ..., [58]John L. Capinera, [59]Hans T Alborn, [60]Eric A Schmelz, [61]James H. Tsai, [62]John L. Capinera, ... [Full author list]Encyclopedia of Entomology. 2nd Edition [curation]DOI: 10.1007/978-1-4020-6359-6_3
2008-01-01
Amino Acid[1]George Hangay, [2]Severiano F. Gayubo, [3]Marjorie Hoy, [4]Marta Goula, [5]Allen Sanborn, [6]Wendell. L. Morrill, [7]Gerd GÄde, [8]Heather G. Marco, [9]Joe C. B. Kabissa, [10]Jamie Ellis, ..., [58]John L. Capinera, [59]Hans T Alborn, [60]Eric A Schmelz, [61]James H. Tsai, [62]John L. Capinera, ... [Full author list]DOI: 10.1007/978-1-4020-6359-6_187
2008-01-01
Cell wall invertase-deficient miniature1 kernels have altered phytohormone levels[1]Sherry LeClere, [2]Eric A Schmelz, [3]Prem S Chourey [Full author list]Phytochemistry [curation]DOI: 10.1016/J.PHYTOCHEM.2007.09.011
PubMed: 17964617
cell wall [curation]2007-10-26
Disulfooxy fatty acids from the American bird grasshopper Schistocerca americana, elicitors of plant volatiles[1]Hans T Alborn, [2]Trond V Hansen, [3]Tappey H Jones, [4]Derrick C Bennett, [5]James H. Tumlinson, [6]Eric A Schmelz, [7]Peter E A Teal [Full author list]Proceedings of the National Academy of Sciences of the United States of America [curation]DOI: 10.1073/PNAS.0705947104
PubMed: 17664416
bird [curation]; fatty acid [curation]; American bird grasshopper [curation]; plant volatile [curation]2007-07-30
Salicylate and catechol levels are maintained in nahG transgenic poplar[1]Alison M Morse, [2]Timothy Tschaplinski, [3]Christopher Dervinis, [4]Paula M Pijut, [5]Eric A Schmelz, [6]Wendy Day, [7]John M Davis [Full author list]Phytochemistry [curation]DOI: 10.1016/J.PHYTOCHEM.2007.05.014
PubMed: 17599371
salicylic acid [curation]2007-06-27
ABA is an essential signal for plant resistance to pathogens affecting JA biosynthesis and the activation of defenses in Arabidopsis[1]Bruce A T Adie, [2]Julián Pérez-Pérez, [3]Manuel M Pérez-Pérez, [4]Marta Godoy, [5]Jose J. Sanchez Serrano, [6]Eric A Schmelz, [7]Roberto Solano [Full author list]The Plant Cell [curation]DOI: 10.1105/TPC.106.048041
PubMed: 17513501
2007-05-18
Cowpea chloroplastic ATP synthase is the source of multiple plant defense elicitors during insect herbivory[1]Eric A Schmelz, [2]Sherry LeClere, [3]Mark J Carroll, [4]Hans T Alborn, [5]Peter E A Teal [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.107.097154
PubMed: 17369425
insect [curation]; defence against herbivory [curation]; herbivory [curation]2007-03-16
Attraction of Spodoptera frugiperda larvae to volatiles from herbivore-damaged maize seedlings[1]Mark J Carroll, [2]Eric A Schmelz, [3]Robert L Meagher, [4]Peter E A Teal [Full author list]Journal of Chemical Ecology [curation]DOI: 10.1007/S10886-006-9117-9
PubMed: 16902828
herbivore [curation]; Spodoptera frugiperda [curation]; herbivory [curation]2006-08-11
Fragments of ATP synthase mediate plant perception of insect attack[1]Eric A Schmelz, [2]Mark J Carroll, [3]Sherry LeClere, [4]Stephen M Phipps, [5]Julia Meredith, [6]Prem S Chourey, [7]Hans T Alborn, [8]Peter E A Teal [Full author list]Proceedings of the National Academy of Sciences of the United States of America [curation]DOI: 10.1073/PNAS.0602328103
PubMed: 16720701
insect [curation]2006-05-23
Identification of loci affecting flavour volatile emissions in tomato fruits.[1]Denise M Tieman, [2]Michelle Zeigler, [3]Eric A Schmelz, [4]Mark G Taylor, [5]Peter Bliss, [6]Matias Kirst, [7]Harry J Klee [Full author list]Journal of Experimental Botany [curation]DOI: 10.1093/JXB/ERJ074
PubMed: 16473892
2006-02-10
The maize viviparous15 locus encodes the molybdopterin synthase small subunit[1]Masaharu Suzuki, [2]A. Mark Settles, [3]Chi-Wah Tseung, [4]Qin-Bao Li, [5]Susan Latshaw, [6]Shan Wu, [7]Timothy G Porch, [8]Eric A Schmelz, [9]Martha G James, [10]Donald R McCarty [Full author list]The Plant Journal [curation]DOI: 10.1111/J.1365-313X.2005.02620.X
PubMed: 16367969
2006-01-01
The maize Viviparous10/Viviparous13 locus encodes the Cnx1 gene required for molybdenum cofactor biosynthesis.[1]Timothy G Porch, [2]Chi-Wah Tseung, [3]Eric A Schmelz, [4]A Mark Settles [Full author list]The Plant Journal [curation]DOI: 10.1111/J.1365-313X.2005.02621.X
PubMed: 16367968
molybdenum [curation]2006-01-01
Systemic acquired tolerance to virulent bacterial pathogens in tomato[1]Anna Block, [2]Eric A Schmelz, [3]Phillip J O'Donnell, [4]Jeffrey B Jones, [5]Harry J Klee [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.105.059246
PubMed: 15937273
2005-06-03
Ethylene-regulated floral volatile synthesis in petunia corollas[1]Beverly A Underwood, [2]Denise M Tieman, [3]Kenichi Shibuya, [4]Richard J Dexter, [5]Holly M Loucas, [6]Andrew J. Simkin, [7]Charles A Sims, [8]Eric A Schmelz, [9]Harry J Klee, [10]David G Clark [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.104.051144
PubMed: 15849311
floral volatile [curation]2005-04-22
Phytohormones mediate volatile emissions during the interaction of compatible and incompatible pathogens: the role of ethylene in Pseudomonas syringae infected tobacco[1]Juan Huang, [2]Eric A Schmelz, [3]Hans T Alborn, [4]Jurgen Engelberth, [5]James H. Tumlinson [Full author list]Journal of Chemical Ecology [curation]DOI: 10.1007/S10886-005-2018-5
PubMed: 15898494
Pseudomonas syringae [curation]2005-03-01
Coronatine and salicylic acid: the battle between Arabidopsis and Pseudomonas for phytohormone control[1]Anna Block, [2]Eric A Schmelz, [3]Jeffrey B Jones, [4]Harry J Klee [Full author list]Molecular Plant Pathology [curation]DOI: 10.1111/J.1364-3703.2004.00265.X
PubMed: 20565640
salicylic acid [curation]; Medical uses of salicylic acid [curation]2005-01-01
Circadian regulation of the PhCCD1 carotenoid cleavage dioxygenase controls emission of beta-ionone, a fragrance volatile of petunia flowers[1]Andrew J. Simkin, [2]Beverly A Underwood, [3]Michele Auldridge, [4]Holly M Loucas, [5]Kenichi Shibuya, [6]Eric A Schmelz, [7]David G Clark, [8]Harry J Klee [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.104.049718
PubMed: 15516502
circadian rhythm [curation]2004-10-29
The use of vapor phase extraction in metabolic profiling of phytohormones and other metabolites[1]Eric A Schmelz, [2]Juergen Engelberth, [3]James H. Tumlinson, [4]Anna Block, [5]Hans T Alborn [Full author list]The Plant Journal [curation]DOI: 10.1111/J.1365-313X.2004.02168.X
PubMed: 15315639
metabolic profiling [curation]2004-09-01
Multiple hormones act sequentially to mediate a susceptible tomato pathogen defense response[1]Philip J O'Donnell, [2]Eric A Schmelz, [3]Anna Block, [4]Otto Miersch, [5]Claus Wasternack, [6]Jeffrey B Jones, [7]Harry J Klee [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.103.030379
PubMed: 14551324
2003-10-09
Development of a lesion-mimic phenotype in a transgenic wheat line overexpressing genes for pathogenesis-related (PR) proteins is dependent on salicylic acid concentration[1]Ajith Anand, [2]Eric A Schmelz, [3]Subbaratnam Muthukrishnan [Full author list]Molecular Plant-Microbe Interactions [curation]DOI: 10.1094/MPMI.2003.16.10.916
PubMed: 14558693
phenotype [curation]; salicylic acid [curation]; wheat [curation]; Medical uses of salicylic acid [curation]; overexpression [curation]2003-10-01
Nitrogen deficiency increases volicitin-induced volatile emission, jasmonic acid accumulation, and ethylene sensitivity in maize[1]Eric A Schmelz, [2]Hans T Alborn, [3]Jurgen Engelberth, [4]James H. Tumlinson [Full author list]Plant Physiology [curation]DOI: 10.1104/PP.103.024174
PubMed: 12970495
2003-09-01
Differential volatile emissions and salicylic acid levels from tobacco plants in response to different strains of Pseudomonas syringae[1]Juan Huang, [2]Yasmin J Cardoza, [3]Eric A Schmelz, [4]Ramesh Raina, [5]Jürgen Engelberth, [6]James H. Tumlinson [Full author list]Planta [curation]DOI: 10.1007/S00425-003-1039-Y
PubMed: 12712338
salicylic acid [curation]; Pseudomonas syringae [curation]; Medical uses of salicylic acid [curation]2003-04-24
Synergistic interactions between volicitin, jasmonic acid and ethylene mediate insect-induced volatile emission in Zea mays.[1]Eric A Schmelz, [2]Hans T Alborn, [3]James H. Tumlinson [Full author list]Physiologia Plantarum [curation]DOI: 10.1034/J.1399-3054.2003.00054.X
PubMed: 12654041
insect [curation]; maize [curation]2003-03-01
Simultaneous quantification of jasmonic acid and salicylic acid in plants by vapor-phase extraction and gas chromatography-chemical ionization-mass spectrometry[1]Juergen Engelberth, [2]Eric A Schmelz, [3]Hans T Alborn, [4]Yasmin J Cardoza, [5]Juan Huang, [6]James H. Tumlinson [Full author list]Analytical Biochemistry [curation]DOI: 10.1016/S0003-2697(02)00466-9
PubMed: 12531212
salicylic acid [curation]; Medical uses of salicylic acid [curation]2003-01-01
Susceptible to intolerance--a range of hormonal actions in a susceptible Arabidopsis pathogen response[1]Philip J O'Donnell, [2]Eric A Schmelz, [3]Patricia Moussatche, [4]Steven T Lund, [5]Jeffery B Jones, [6]Harry J Klee [Full author list]The Plant Journal [curation]DOI: 10.1046/J.1365-313X.2003.01619.X
PubMed: 12535339
2003-01-01
Interactions between Spinacia oleracea and Bradysia impatiens: a role for phytoecdysteroids[1]Eric A Schmelz, [2]Robert J Grebenok, [3]Thomas E Ohnmeiss, [4]William S Bowers [Full author list]Archives of Insect Biochemistry and Physiology [curation]DOI: 10.1002/ARCH.10062
PubMed: 12432520
Spinacia oleracea [curation]2002-12-01
The influence of intact-plant and excised-leaf bioassay designs on volicitin- and jasmonic acid-induced sesquiterpene volatile release in Zea mays[1]Eric A Schmelz, [2]H T Alborn, [3]J H Tumlinson [Full author list]Planta [curation]DOI: 10.1007/S004250100603
PubMed: 11800380
maize [curation]2001-12-01
Effects of octadecanoid metabolites and inhibitors on induced nicotine accumulation in Nicotiana sylvestris[1]Ian T. Baldwin, [2]Eric A Schmelz, [3]Z P Zhang [Full author list]Journal of Chemical Ecology [curation]DOI: 10.1007/BF02040200
PubMed: 24226983
Nicotiana sylvestris [curation]1996-01-01
Wound-induced changes in root and shoot jasmonic acid pools correlate with induced nicotine synthesis inNicotiana sylvestris spegazzini and comes.[1]Ian T. Baldwin, [2]Eric A Schmelz, [3]T E Ohnmeiss [Full author list]Journal of Chemical Ecology [curation]DOI: 10.1007/BF02066250
PubMed: 24242736
nicotine [curation]1994-08-01
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