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160 peer-reviewed articles • 13,881 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Transgenic cotton expressing Allium sativum leaf agglutinin exhibits resistance to whiteflies and aphids without negative effects on ladybugs
Gene, 2025, 933, 148926
2.33Citations (PDF)
2Acylsugars, Nicotine and a Protease Inhibitor Provide Variable Protection for Nicotiana benthamiana in a Natural Setting
Plant, Cell and Environment, 2025, 48, 1073-1087
6.56Citations (PDF)
3Genome and Tissue‐Specific Transcriptome of the Tropical Milkweed ( Asclepias curassavica )
Plant Direct, 2025, 9,
2.34Citations (PDF)
4Identification of UDP-dependent glycosyltransferases in the wallflower cardenolide biosynthesis pathway2.20Citations (PDF)
5Success and limitations in adaptation of Fast-TrACC tissue culture-independent transformation in coffee, cotton, and tree tobacco
PLoS ONE, 2025, 20, e0318324
2.30Citations (PDF)
6In situ foliar augmentation of multiple species for optical phenotyping and bioengineering using soft robotics
Science Robotics, 2025, 10,
14.34Citations (PDF)
7Cardiac glycosides protect wormseed wallflower ( Erysimum cheiranthoides ) against some, but not all, glucosinolate‐adapted herbivores
New Phytologist, 2024, 242, 2719-2733
8.127Citations (PDF)
8Aphid Resistance Segregates Independently of Cardenolide and Glucosinolate Content in an Erysimum cheiranthoides (Wormseed Wallflower) F2 Population
Plants, 2024, 13, 466
3.63Citations (PDF)
9Punicalagin, a pomegranate polyphenol sensitizes the activity of antibiotics against three MDR pathogens of the Enterobacteriaceae3.021Citations (PDF)
10COI1 F-box proteins regulate DELLA protein levels, growth, and photosynthetic efficiency in maize
Plant Cell, 2024, 36, 3237-3259
7.617Citations (PDF)
11Catechol acetylglucose: a newly identified benzoxazinoid‐regulated defensive metabolite in maize
New Phytologist, 2024, 244, 2474-2488
8.15Citations (PDF)
12Tree tobacco (Nicotiana glauca) cuticular wax composition is essential for leaf retention during drought, facilitating a speedy recovery following rewatering
New Phytologist, 2023, 237, 1574-1589
8.134Citations (PDF)
13Horizontally transferred genes as RNA interference targets for aphid and whitefly control
Plant Biotechnology Journal, 2023, 21, 754-768
8.836Citations (PDF)
14Non‐volatile metabolites mediate plant interactions with insect herbivores
Plant Journal, 2023, 114, 1164-1177
6.126Citations (PDF)
15Convergent and divergent evolution of plant chemical defenses7.133Citations (PDF)
16Cytokinin Promotes Jasmonic Acid Accumulation in the Control of Maize Leaf Growth
Plants, 2023, 12, 3014
3.68Citations (PDF)
17Inoculation of Maize with Sugarcane Mosaic Virus Constructs and Application for RNA Interference in Fall Armyworms
Bio-protocol, 2023, 13,
0.44Citations (PDF)
18Molecular ecology of plant volatiles in interactions with insect herbivores5.1149Citations (PDF)
19Characterizing serotonin biosynthesis in Setaria viridis leaves and its effect on aphids
Plant Molecular Biology, 2022, 109, 533-549
3.220Citations (PDF)
20Maize resistance to insect herbivory is enhanced by silencing expression of genes for jasmonate‐isoleucine degradation using sugarcane mosaic virus
Plant Direct, 2022, 6,
2.37Citations (PDF)
21AIG2A and AIG2B limit the activation of salicylic acid-regulated defenses by tryptophan-derived secondary metabolism in Arabidopsis
Plant Cell, 2022, 34, 4641-4660
7.613Citations (PDF)
22OPDA, more than just a jasmonate precursor
Phytochemistry, 2022, 204, 113432
3.057Citations (PDF)
23Metagenomic identification of novel viruses of maize and teosinte in North America
BMC Genomics, 2022, 23,
3.326Citations (PDF)
24Interaction of eukaryotic proliferating cell nuclear antigen (PCNA) with the replication-associated protein (Rep) of cotton leaf curl Multan virus and pedilanthus leaf curl virus
3 Biotech, 2021, 11,
2.52Citations (PDF)
25Phenolic sucrose esters: evolution, regulation, biosynthesis, and biological functions
Plant Molecular Biology, 2021, 109, 369-383
3.28Citations (PDF)
26Indole‐3‐glycerolphosphate synthase, a branchpoint for the biosynthesis of tryptophan, indole, and benzoxazinoids in maize
Plant Journal, 2021, 106, 245-257
6.152Citations (PDF)
27Engineering pest tolerance through plant-mediated RNA interference7.141Citations (PDF)
28Genetic mapping identifies a rice naringenin O‐glucosyltransferase that influences insect resistance
Plant Journal, 2021, 106, 1401-1413
6.130Citations (PDF)
29A sugarcane mosaic virus vector for rapid in planta screening of proteins that inhibit the growth of insect herbivores
Plant Biotechnology Journal, 2021, 19, 1713-1724
8.816Citations (PDF)
30Specific and conserved patterns of microbiota-structuring by maize benzoxazinoids in the field
Microbiome, 2021, 9,
11.599Citations (PDF)
31Global patterns in genomic diversity underpinning the evolution of insecticide resistance in the aphid crop pest Myzus persicae4.4114Citations (PDF)
32Engineering insect resistance using plant specialized metabolites6.833Citations (PDF)
33Acylsugars protect Nicotiana benthamiana against insect herbivory and desiccation
Plant Molecular Biology, 2021, 109, 505-522
3.246Citations (PDF)
34Acropetal and basipetal cardenolide transport in Erysimum cheiranthoides (wormseed wallflower)
Phytochemistry, 2021, 192, 112965
3.010Citations (PDF)
35Arabidopsis ADC1 functions as an Nδ‐acetylornithine decarboxylase8.925Citations (PDF)
36Natural variation in the expression and catalytic activity of a naringenin 7‐O‐methyltransferase influences antifungal defenses in diverse rice cultivars
Plant Journal, 2020, 101, 1103-1117
6.164Citations (PDF)
37Comparison of in Vitro and in Planta Toxicity of Vip3A for Lepidopteran Herbivores
Journal of Economic Entomology, 2020, 113, 2959-2971
2.15Citations (PDF)
38Expression of Pinellia ternata leaf agglutinin under rolC promoter confers resistance against a phytophagous sap sucking aphid, Myzus persicae2.57Citations (PDF)
39Less Is More: a Mutation in the Chemical Defense Pathway of Erysimum cheiranthoides (Brassicaceae) Reduces Total Cardenolide Abundance but Increases Resistance to Insect Herbivores
Journal of Chemical Ecology, 2020, 46, 1131-1143
1.413Citations (PDF)
40In-planta expression of insecticidal proteins provides protection against lepidopteran insects3.420Citations (PDF)
41Metabolome-Scale Genome-Wide Association Studies Reveal Chemical Diversity and Genetic Control of Maize Specialized Metabolites
Plant Cell, 2019, 31, 937-955
7.695Citations (PDF)
42Genome sequence of the corn leaf aphid ( Rhopalosiphum maidis Fitch)
GigaScience, 2019, 8,
3.299Citations (PDF)
43Silencing cathepsin L expression reduces Myzus persicae protein content and the nutritional value as prey for Coccinella septempunctata
Insect Molecular Biology, 2019, 28, 785-797
2.223Citations (PDF)
4412-Oxo-Phytodienoic Acid Acts as a Regulator of Maize Defense against Corn Leaf Aphid
Plant Physiology, 2019, 179, 1402-1415
5.595Citations (PDF)
45Systemic disruption of the homeostasis of transfer RNA isopentenyltransferase causes growth and development abnormalities in Bombyx mori
Insect Molecular Biology, 2019, 28, 380-391
2.29Citations (PDF)
46Ethylene signaling regulates natural variation in the abundance of antifungal acetylated diferuloylsucroses and Fusarium graminearum resistance in maize seedling roots
New Phytologist, 2019, 221, 2096-2111
8.161Citations (PDF)
47RNAi-mediated silencing of endogenous Vlnv gene confers stable reduction of cold-induced sweetening in potato (Solanum tuberosum L. cv. Désirée)
Plant Biotechnology Reports, 2018, 12, 175-185
1.311Citations (PDF)
48Beyond Defense: Multiple Functions of Benzoxazinoids in Maize Metabolism
Plant and Cell Physiology, 2018, 59, 1528-1537
3.4196Citations (PDF)
49Computational and biological characterization of fusion proteins of two insecticidal proteins for control of insect pests3.413Citations (PDF)
50Fusarium graminearum‐ induced shoot elongation and root reduction in maize seedlings correlate with later seedling blight severity
Plant Direct, 2018, 2,
2.314Citations (PDF)
51Convergent evolution of a metabolic switch between aphid and caterpillar resistance in cereals
Science Advances, 2018, 4,
10.979Citations (PDF)
52Maize Carbohydrate partitioning defective1 impacts carbohydrate distribution, callose accumulation, and phloem function
Journal of Experimental Botany, 2018, 69, 3917-3931
5.158Citations (PDF)
53The maize W22 genome provides a foundation for functional genomics and transposon biology
Nature Genetics, 2018, 50, 1282-1288
25.2231Citations (PDF)
54Erysimum cheiranthoides, an ecological research system with potential as a genetic and genomic model for studying cardiac glycoside biosynthesis
Phytochemistry Reviews, 2018, 17, 1239-1251
6.225Citations (PDF)
55Genetic mapping identifies loci that influence tomato resistance against Colorado potato beetles3.48Citations (PDF)
56Changes in the free amino acid composition of Capsicum annuum (pepper) leaves in response to Myzus persicae (green peach aphid) infestation. A comparison with water stress
PLoS ONE, 2018, 13, e0198093
2.381Citations (PDF)
57Tecia solanivora infestation increases tuber starch accumulation in Pastusa Suprema potatoes8.98Citations (PDF)
58RNAi-Mediated Simultaneous Resistance Against Three RNA Viruses in Potato
Molecular Biotechnology, 2017, 59, 73-83
2.068Citations (PDF)
59Rapid transcriptional plasticity of duplicated gene clusters enables a clonally reproducing aphid to colonise diverse plant species
Genome Biology, 2017, 18,
8.1814Citations (PDF)
60A Global Coexpression Network Approach for Connecting Genes to Specialized Metabolic Pathways in Plants
Plant Cell, 2017, 29, 944-959
7.6285Citations (PDF)
61Concurrent Overexpression of Arabidopsis thaliana Cystathionine γ-Synthase and Silencing of Endogenous Methionine γ-Lyase Enhance Tuber Methionine Content in Solanum tuberosum6.023Citations (PDF)
62Transcriptomics reveals multiple resistance mechanisms against cotton leaf curl disease in a naturally immune cotton species, Gossypium arboreum3.474Citations (PDF)
63Abscisic acid-regulated protein degradation causes osmotic stress-induced accumulation of branched-chain amino acids in Arabidopsis thaliana
Planta, 2017, 246, 737-747
3.3183Citations (PDF)
64Rapid defense responses in maize leaves induced by Spodoptera exigua caterpillar feeding
Journal of Experimental Botany, 2017, 68, 4709-4723
5.1134Citations (PDF)
65Costs and Tradeoffs of Resistance and Tolerance to Belowground Herbivory in Potato
PLoS ONE, 2017, 12, e0169083
2.38Citations (PDF)
66Metabolic engineering of Rhodopseudomonas palustris for the obligate reduction of n-butyrate to n-butanol6.326Citations (PDF)
67Abscisic acid deficiency increases defence responses against M yzus persicae in A rabidopsis
Molecular Plant Pathology, 2016, 17, 225-235
5.178Citations (PDF)
68Aversion and attraction to harmful plant secondary compounds jointly shape the foraging ecology of a specialist herbivore
Ecology and Evolution, 2016, 6, 3256-3268
2.032Citations (PDF)
69The draft genome of whitefly Bemisia tabaci MEAM1, a global crop pest, provides novel insights into virus transmission, host adaptation, and insecticide resistance
BMC Biology, 2016, 14,
3.9329Citations (PDF)
70Potato tuber herbivory increases resistance to aboveground lepidopteran herbivores
Oecologia, 2016, 182, 177-187
1.735Citations (PDF)
71Characterization of Biosynthetic Pathways for the Production of the Volatile Homoterpenes DMNT and TMTT in Zea mays
Plant Cell, 2016, 28, 2651-2665
7.6131Citations (PDF)
72Glucosinolates from Host Plants Influence Growth of the Parasitic Plant Cuscuta gronovii and Its Susceptibility to Aphid Feeding
Plant Physiology, 2016, 172, 181-197
5.548Citations (PDF)
73A transgenic approach to control hemipteran insects by expressing insecticidal genes under phloem-specific promoters3.453Citations (PDF)
74Rewiring of jasmonate and phytochrome B signalling uncouples plant growth-defense tradeoffs13.7407Citations (PDF)
75Arabidopsis NATA1 acetylates putrescine and decreases defense-related hydrogen peroxide accumulation
Plant Physiology, 2016, , pp.00446.2016
5.549Citations (PDF)
76Biosynthesis of 8-O-methylated benzoxazinoid defense compounds in maize
Plant Cell, 2016, , tpc.00065.2016
7.6102Citations (PDF)
77Genetic mapping shows intraspecific variation and transgressive segregation for caterpillar‐induced aphid resistance in maize
Molecular Ecology, 2015, 24, 5739-5750
3.756Citations (PDF)
78Stable isotope studies reveal pathways for the incorporation of non-essential amino acids in Acyrthosiphon pisum (pea aphids)
Journal of Experimental Biology, 2015, 218, 3797-3806
2.126Citations (PDF)
79Additive effects of two quantitative trait loci that confer Rhopalosiphum maidis (corn leaf aphid) resistance in maize inbred line Mo175.185Citations (PDF)
80RNA interference against gut osmoregulatory genes in phloem-feeding insects
Journal of Insect Physiology, 2015, 79, 105-112
2.171Citations (PDF)
81Disruption of Ethylene Responses by Turnip mosaic virus Mediates Suppression of Plant Defense against the Green Peach Aphid Vector
Plant Physiology, 2015, 169, 209-218
5.5183Citations (PDF)
82The Tyrosine Aminomutase TAM1 Is Required for β-Tyrosine Biosynthesis in Rice
Plant Cell, 2015, 27, 1265-1278
7.646Citations (PDF)
83Accumulation of 5-hydroxynorvaline in maize (Zea mays) leaves is induced by insect feeding and abiotic stress5.151Citations (PDF)
84Alteration of plant primary metabolism in response to insect herbivory
Plant Physiology, 2015, , pp.01405.2015
5.5228Citations (PDF)
85Dynamic maize responses to aphid feeding are revealed by a time series of transcriptomic and metabolomic assays
Plant Physiology, 2015, , pp.01039.2015
5.5155Citations (PDF)
86Maize death acids, 9-lipoxygenase–derived cyclopente(a)nones, display activity as cytotoxic phytoalexins and transcriptional mediators7.5160Citations (PDF)
87Disrupting Buchnera aphidicola, the endosymbiotic bacteria of Myzus persicae, delays host plant acceptance1.037Citations (PDF)
88The raison d'être of chemical ecology
Ecology, 2015, 96, 617-630
3.395Citations (PDF)
89Adaptation to Nicotine Feeding in Myzus persicae
Journal of Chemical Ecology, 2014, 40, 869-877
1.452Citations (PDF)
90Matching the supply of bacterial nutrients to the nutritional demand of the animal host2.456Citations (PDF)
91The NIa‐Pro protein of Turnip mosaic virus improves growth and reproduction of the aphid vector, Myzus persicae (green peach aphid)
Plant Journal, 2014, 77, 653-663
6.1166Citations (PDF)
92Adaptation to nicotine in the facultative tobacco‐feeding hemipteran Bemisia tabaci
Pest Management Science, 2014, 70, 1595-1603
3.535Citations (PDF)
93The catabolic enzyme methionine gamma‐lyase limits methionine accumulation in potato tubers
Plant Biotechnology Journal, 2014, 12, 883-893
8.837Citations (PDF)
94Suppression of Plant Defenses by a Myzus persicae (Green Peach Aphid) Salivary Effector Protein3.3282Citations (PDF)
95The role of protein effectors in plant–aphid interactions7.1157Citations (PDF)
96Comparative analysis of genome sequences from four strains of the Buchnera aphidicola Mp endosymbion of the green peach aphid, Myzus persicae
BMC Genomics, 2013, 14,
3.340Citations (PDF)
97Natural Variation in Maize Aphid Resistance Is Associated with 2,4-Dihydroxy-7-Methoxy-1,4-Benzoxazin-3-One Glucoside Methyltransferase Activity  
Plant Cell, 2013, 25, 2341-2355
7.6306Citations (PDF)
98Near-isogenic lines for measuring phenotypic effects of DIMBOA-Glc methyltransferase activity in maize3.317Citations (PDF)
99Ecological role of transgenerational resistance against biotic threats3.319Citations (PDF)
100Herbivory in the Previous Generation Primes Plants for Enhanced Insect Resistance    
Plant Physiology, 2012, 158, 854-863
5.5457Citations (PDF)
101Natural Variation in Maize Defense against Insect Herbivores1.695Citations (PDF)
102Transgenerational defense induction and epigenetic inheritance in plants6.3378Citations (PDF)
103meta-Tyrosine in Festuca rubra ssp. commutata (Chewings fescue) is synthesized by hydroxylation of phenylalanine
Phytochemistry, 2012, 75, 60-66
3.036Citations (PDF)
104Engineering of benzylglucosinolate in tobacco provides proof‐of‐concept for dead‐end trap crops genetically modified to attract Plutella xylostella (diamondback moth)
Plant Biotechnology Journal, 2012, 10, 435-442
8.853Citations (PDF)
105Insecticide Resistance Mechanisms in the Green Peach Aphid Myzus persicae (Hemiptera: Aphididae) I: A Transcriptomic Survey
PLoS ONE, 2012, 7, e36366
2.3157Citations (PDF)
106Non-protein amino acids in plant defense against insect herbivores: Representative cases and opportunities for further functional analysis
Phytochemistry, 2011, 72, 1531-1537
3.0175Citations (PDF)
107Biosynthesis and Defensive Function of N  Δ-Acetylornithine, a Jasmonate-Induced Arabidopsis Metabolite  
Plant Cell, 2011, 23, 3303-3318
7.687Citations (PDF)
108Non-Volatile Intact Indole Glucosinolates are Host Recognition Cues for Ovipositing Plutella xylostella
Journal of Chemical Ecology, 2010, 35, 1427-1436
1.499Citations (PDF)
109Interdependence of threonine, methionine and isoleucine metabolism in plants: accumulation and transcriptional regulation under abiotic stress
Amino Acids, 2010, 39, 933-947
2.3383Citations (PDF)
110Differential Effects of Indole and Aliphatic Glucosinolates on Lepidopteran Herbivores
Journal of Chemical Ecology, 2010, 36, 905-913
1.4228Citations (PDF)
111Volatile communication in plant–aphid interactions7.166Citations (PDF)
112Pleiotropic physiological consequences of feedback-insensitive phenylalanine biosynthesis in Arabidopsis thaliana
Plant Journal, 2010, 63, 823-835
6.176Citations (PDF)
113Antibiosis against the green peach aphid requires the Arabidopsis thaliana MYZUS PERSICAE-INDUCED LIPASE1 gene
Plant Journal, 2010, 64, 800-811
6.160Citations (PDF)
114Genomic insight into the amino acid relations of the pea aphid, Acyrthosiphon pisum , with its symbiotic bacterium Buchnera aphidicola
Insect Molecular Biology, 2010, 19, 249-258
2.2249Citations (PDF)
115Genomic evidence for complementary purine metabolism in the pea aphid, Acyrthosiphon pisum , and its symbiotic bacterium Buchnera aphidicola
Insect Molecular Biology, 2010, 19, 241-248
2.250Citations (PDF)
116Comparative analysis of detoxification enzymes in Acyrthosiphon pisum and Myzus persicae
Insect Molecular Biology, 2010, 19, 155-164
2.2235Citations (PDF)
117Genome-Enabled Research on the Ecology of Plant-Insect Interactions
Plant Physiology, 2010, 154, 475-478
5.519Citations (PDF)
118Alarm pheromone habituation inMyzus persicaehas fitness consequences and causes extensive gene expression changes7.555Citations (PDF)
119Recent Progress in Deciphering the Biosynthesis of Aspartate-Derived Amino Acids in Plants
Molecular Plant, 2010, 3, 54-65
18.9121Citations (PDF)
120Aspartate-Derived Amino Acid Biosynthesis inArabidopsis thaliana
The Arabidopsis Book, 2009, 7, e0121
1.097Citations (PDF)
121Arabidopsis Methionineγ-Lyase Is Regulated According to Isoleucine Biosynthesis Needs But Plays a Subordinate Role to Threonine Deaminase
Plant Physiology, 2009, 151, 367-378
5.590Citations (PDF)
122Myzus persicae (green peach aphid) salivary components induce defence responses in Arabidopsis thaliana
Plant, Cell and Environment, 2009, 32, 1548-1560
6.5264Citations (PDF)
123Plant Immunity to Insect Herbivores24.42,281Citations (PDF)
124Reduced activity of Arabidopsis thaliana HMT2, a methionine biosynthetic enzyme, increases seed methionine content
Plant Journal, 2008, 54, 310-320
6.157Citations (PDF)
125Identification of indole glucosinolate breakdown products with antifeedant effects on Myzus persicae (green peach aphid)
Plant Journal, 2008, 54, 1015-1026
6.1236Citations (PDF)
126Indole-3-Acetonitrile Production from Indole Glucosinolates Deters Oviposition byPieris rapae     
Plant Physiology, 2008, 146, 916-926
5.5140Citations (PDF)
127Plant Interactions with Arthropod Herbivores: State of the Field
Plant Physiology, 2008, 146, 801-803
5.533Citations (PDF)
128Choice and No-Choice Assays for Testing the Resistance of A. thaliana to Chewing Insects0.33Citations (PDF)
129Testing the Physiological Barriers to Viral Transmission in Aphids Using Microinjection0.34Citations (PDF)
130Testing Nicotine Tolerance in Aphids Using an Artificial Diet Experiment0.33Citations (PDF)
131Indole glucosinolate breakdown and its biological effects
Phytochemistry Reviews, 2008, 8, 101-120
6.2229Citations (PDF)
132Choice and No-Choice Assays for Testing the Resistance of A. thaliana to Chewing Insects0.30Citations (PDF)
133Two Arabidopsis Threonine Aldolases Are Nonredundant and Compete with Threonine Deaminase for a Common Substrate Pool
Plant Cell, 2007, 18, 3564-3575
7.686Citations (PDF)
134Grass roots chemistry: meta -Tyrosine, an herbicidal nonprotein amino acid7.5208Citations (PDF)
135Tandem gene arrays: a challenge for functional genomics
Trends in Plant Science, 2007, 12, 203-210
11.634Citations (PDF)
136Biochemistry and molecular biology of Arabidopsis–aphid interactions
BioEssays, 2007, 29, 871-883
2.1131Citations (PDF)
137Myzus persicae (green peach aphid) feeding on Arabidopsis induces the formation of a deterrent indole glucosinolate
Plant Journal, 2007, 49, 1008-1019
6.1370Citations (PDF)
138TECHNICAL ADVANCE: Indel arrays: an affordable alternative for genotyping
Plant Journal, 2007, 51, 727-737
6.159Citations (PDF)
139Characterization of seed‐specific benzoyloxyglucosinolate mutations in Arabidopsis thaliana
Plant Journal, 2007, 51, 1062-1076
6.199Citations (PDF)
140Genomic resources for Myzus persicae: EST sequencing, SNP identification, and microarray design
BMC Genomics, 2007, 8,
3.3125Citations (PDF)
141Arabidopsis myrosinases TGG1 and TGG2 have redundant function in glucosinolate breakdown and insect defense
Plant Journal, 2006, 46, 549-562
6.1420Citations (PDF)
142Application of a high-throughput HPLC-MS/MS assay toArabidopsismutant screening; evidence that threonine aldolase plays a role in seed nutritional quality
Plant Journal, 2004, 39, 465-475
6.1135Citations (PDF)
143Characterization of the Arabidopsis TU8 Glucosinolate Mutation,an Allele of TERMINAL FLOWER2
Plant Molecular Biology, 2004, 54, 671-682
3.253Citations (PDF)
144Ethylmethanesulfonate Saturation Mutagenesis in Arabidopsis to Determine Frequency of Herbicide Resistance
Plant Physiology, 2003, 131, 139-146
5.5157Citations (PDF)
145Arabidopsis Map-Based Cloning in the Post-Genome Era
Plant Physiology, 2002, 129, 440-450
5.5627Citations (PDF)
146Signals Involved in Arabidopsis Resistance toTrichoplusia ni Caterpillars Induced by Virulent and Avirulent Strains of the Phytopathogen Pseudomonas syringae
Plant Physiology, 2002, 129, 551-564
5.5100Citations (PDF)
147The TASTY Locus on Chromosome 1 of Arabidopsis Affects Feeding of the Insect Herbivore Trichoplusia ni
Plant Physiology, 2001, 126, 890-898
5.5102Citations (PDF)
148Positive Correlation between Virulence of Pseudomonas aeruginosa Mutants in Mice and Insects
Journal of Bacteriology, 2000, 182, 3843-3845
2.9518Citations (PDF)
149Evidence that the pathway of disulfide bond formation in Escherichia coli involves interactions between the cysteines of DsbB and DsbA.7.5142Citations (PDF)
150Two cysteines in each periplasmic domain of the membrane protein DsbB are required for its function in protein disulfide bond formation.
EMBO Journal, 1994, 13, 5121-5127
7.3115Citations (PDF)
151A pathway for disulfide bond formation in vivo.7.5437Citations (PDF)
152Regulatory cascade controls virulence in Vibrio cholerae.7.5472Citations (PDF)
153Identification of the Serratia marcescens hemolysin determinant by cloning into Escherichia coli
Journal of Bacteriology, 1987, 169, 2113-2120
2.967Citations (PDF)
154Independent evolution of ancestral and novel defenses in a genus of toxic plants (Erysimum, Brassicaceae)
ELife, 0, 9,
0.776Citations (PDF)
155Plant Membrane-On-A-Chip: A Platform for Studying Plant Membrane Proteins and Lipids8.02Citations (PDF)
156ZmPP2C45 and ZmBELL4 suppress maize biochemical defense against insect herbivores
New Phytologist, 0, 248, 793-806
8.12Citations (PDF)
157A combination of cry (Cry2Ab) and plant lectin (PTA) genes confers resistance against major sucking and chewing insect pests of cotton2.50Citations (PDF)
158Trade-offs in defense allocation: How soil legacy modulates plant-herbivore-predator dynamics3.20Citations (PDF)
159Persistent field soil legacies of cover crops influence maize quality and resistance to herbivory6.30Citations (PDF)
160Basic Research on Whitefly Molecular Biology: A Foundation for Innovative Pest Management Strategies2.70Citations (PDF)