Featured Publications
Genomic basis and evolutionary potential for extreme drought adaptation in Arabidopsis thaliana
Nat Ecol Evol (2018), 2(2) 352-358.
Genomic estimation of complex traits reveals ancient maize adaptation to temperate North America
Science (2017), 357(6350) 512-515.
1,135 Genomes Reveal the Global Pattern of Polymorphism in Arabidopsis thaliana
Cell (2016), 166(2) 481-91.
Species-wide Genetic Incompatibility Analysis Identifies Immune Genes as Hot Spots of Deleterious Epistasis
Cell (2014), 159(6) 1341-51.
2023
Cycles of satellite and evolution in Arabidopsis centromeres
Wlodzimierz, P.*, Rabanal, F. A.*, Burns, R.*, Naish, M., Primetis, E., Scott, A., Mandáková, T., Gorringe, N., Tock, A. J., Holland, D., Fritschi, K., Habring, A., Lanz, C., Patel, C., Schlegel, T., Collenberg, M., Mielke, M., Nordborg, M., Roux, F., Shirsekar, G., Alonso-Blanco, C., Lysak, M. A., Novikova, P., Bousios, A., Weigel, D., and Henderson, I. R.
Nature (2023), 618, 557-565
Synergistic action of the Arabidopsis spliceosome components PRP39a and SmD1b in promoting posttranscriptional transgene silencing
Bazin, J., Elvira-Matelot, E., Blein, T., Jauvion, V., Bouteiller, N., Cao, J., Crespi, M. D., Vaucheret, H.
The Plant Cell (2023), 35(6), 1917-1935
Transposon dynamics in the emerging oilseed crop Thlaspi arvense
Contreras-Garrido, A., Galanti, D., Movilli, A., Becker, C., Bossdorf, O., Drost, H.-G., Weigel, D.
bioRxiv (2023), 542068
Structural variation and DNA methylation shape the centromere-proximal meiotic crossover landscape in Arabidopsis
Fernandes, J. B. Naish, M., Lian, Q., Burns, R., Tock, A. J., Rabanal, F. A., Wlodzimierz, P., Habring, A., Nicholas, R. E., Weigel, D., Mercier, R., and Henderson, I. R.
bioRxiv (2023), 544545
Building pangenome graphs
Garrison, E., Guarracino, A., Heumos, S., Villani, F., Bao, Z., Tattini, L., Hagmann, J., Vorbrugg, S., Marco-Sola, S., Kubica, C., Ashbrook, D. G., Thorell, K., Rusholme-Pilcher, R. L., Liti, G., Rudbeck, E., Nahnsen, S., Yang, Z., Moses, M. N., Nobrega, F. L., Wu, Y., Chen, H., de Ligt, J., Sudmant, P. H., Soranzo, N., Colonna, V., Williams, R. W., and Prins, P.
bioRxiv (2023), 535718
Standing genetic variation fuels rapid evolution of herbicide resistance in blackgrass
Kersten, S., Chang, J., Huber, C. D., Voichek, Y., Lanz, C., Hagmaier, T., Lang, P., Lutz, U., Hirschberg, I., Lerchl, J., Porri, A., Van de Peer, Y., Schmid, K., Weigel, D., and Rabanal, F. A.
Proc. Natl. Acad. Sci. USA (2023), 120(16):e2206808120
The genetic and physiological basis of Arabidopsis thaliana tolerance to Pseudomonas viridiflava
Duque-Jaramillo, A., Ulmer, U., Alseekh, S., Bezrukov, I., Fernie, A., Skirycz, A., Karasov, T., Weigel, D.
bioRxiv (2023), 533268
Uncovering gene-family founder events during major evolutionary transitions in animals, plants and fungi using GenEra
Barrera-Redondo, J., Lotharukpong, J. S., Drost, H. G., and Coelho, S. M.
Genome Biol (2023), Vol. 24(1), 54
PICLN modulates alternative splicing and light/temperature responses in plants
Mateos, J., Sanchez, S., Legris, M., Esteve-Bruna, D., Torchio, J., Petrillo, E., Goretti, D., Blanco-Touriñán, N., Seymour, D., Schmid, M., Weigel, D., Alabadí, D., & Yanofsky, M.
Plant Physiol. (2023), 191(2), 1036-1051
The immune receptor SNC1 monitors helper NLRs targeted by a bacterial effector
Wang, M., Chen, J., Wu, R., Guo, H., Chen, Y., Li, Z., Wei, L., Liu, C., He, S., Du, M., Guo, Y., Peng, Y.-L., Jones, J. D. G., Weigel, D., Huang, J., and Zhu, W.
bioRxiv (2023), 533910
Sensitive clustering of protein sequences at tree-of-life scale using DIAMOND DeepClust
Buchfink, B., Ashkenazy, H., Reuter, K., Kennedy, J. A., Drost, H.-D.
bioRxiv (2023), 520048
PlantACT! – how to tackle the climate crisis
Arce, A. L., Mencia, R., Cambiagno, D.A., Lang, P. L., Liu, C., Burbano, H. A., Weigel, D., Manavella, P. A.
Trends Plant Sci (2023),
Polymorphic Inverted Repeats near coding genes impact chromatin topology and phenotypic traits in Arabidopsis thaliana
Hirt, H., Al-Babili, S., Almeida-Trapp, M., Antoine, M., Aranda, M., Bartels, D., …, Weigel, D. et al
Cell Rep (2023), 42(1) 112029.
Sensitive inference of alignment-safe intervals from biodiverse protein sequence clusters using EMERALD
Grigorjew, A., Gynter, A., Dias, F., Buchfink, B., Drost, H.-G., Tomescu, A. I.
bioRxiv (2023), 520048
2022
miR472 deficiency enhances Arabidopsis thaliana defence without reducing seed production
Vasseur, F., Baldrich, P., Jiménez-Góngora,T. Villar-Martin, L., Weigel, D., and Rubio-Somoza, I.
bioRxiv (2022), 520224
Contrasting patterns of microbial dominance in the Arabidopsis thaliana phyllosphere
Lundberg, D., Jove, de Pedro Jové, Roger, Pramoj Na Ayutthaya, P., Karasov, T. L., Shalev, O., Poersch, K., Ding, W., Bollmann-Giolai, A., Bezrukov, I., Weigel, D.
Proc Natl Acad Sci USA (2022), 119(52) e2211881119
Canalization of genome-wide transcriptional activity in Arabidopsis thaliana accessions by MET1-dependent CG methylation
Srikant, T., Yuan, W., Berendzen, K. W., Contreras-Garrido, A., Drost, H.-G., Schwab, R., Weigel, D.
Genome Biol (2022), 23(1) 263
The Arabidopsis TIR–NBS-LRR protein CSA1 guards BAK1-BIR3 homeostasis and mediates convergence of pattern- and effector-induced immune responses
Schulze, S., Yu, L, Hua, C., Zhang, L, Kolb, D., Weber, H, Ehinger, A., Saile, S. C., Stahl, M., Franz-Wachtel, M., Li, L., El Kasmi, F., Nürnberger, T., Cevik, V., Kemmerling, B.
Cell Host Microbe (2022), 30(12) 1717-1731
Conservation of antiviral systems across domains of life reveals novel immune mechanisms in humans
Cury, J., Mordret, E., Hernandez Trejo, V., Tesson, F., Ofir, G., Poirier, E. Z., Bernheim, A.
bioRxiv (2022), 520048
Rapid weed adaptation and range expansion in response to agriculture over the past two centuries
Kreiner, J. M., Latorre, S. M., Burbano, H. M., Stinchcombe, J. R., Otto, S. P., Weigel, D., Wright, S. I.
Science (2022), 378 (6624) 1079-1085
Pushing the limits of HiFi assemblies reveals centromere diversity between two Arabidopsis thaliana genomes
Rabanal, F. A., Graff M., Lanz, C., Fritschi, K., Llaca, V., Lang, M., Carbonell-Bejerano, P., Henderson, I., Weigel, D.
Nucleic Acids Res (2022), 50(1) 12309-12327
Predictable and stable epimutations induced during clonal plant propagation with embryonic transcription factor
Wibowo, A. T., Antunez-Sanchez, J., Dawson, A., Price, J., Meehan, C., Wrightsman, T., Collenberg, M., Bezrukov, I., Becker, C., Benhamed, M., Weigel, D., Gutierrez-Marcos, J.
PLoS Genet (2022), 18(11) e1010479
MethylScore, a pipeline for accurate and context-aware identification of differentially methylated regions from population-scale plant whole-genome bisulfite sequencing data
Hüther, P., Hagmann, J., Nunn, A., Kakoulidou, I., Pisupati, R., Langenberger, D., Weigel, D., Johannes, F., Schultheiss, S. J., and Becker, C.
Quant Plant Biol (2022), 3 e19.
Leveraging orthology within maize and Arabidopsis QTL to identify genes affecting natural variation in gravitropism
Proc Natl Acad Sci U S A (2022), 119(40) e2212199119.
, , , , , , , , , andThe improved genome of the nematode Parapristionchus giblindavisi provides insights into lineage-specific gene family evolution
G3 (Bethesda) (2022), 12(10).
, , , , andRapid weed adaptation and range expansion in response to agriculture over the last two centuries
bioRxiv (2022), 2022.02.25.482047.
, , , , , andReport of mutation biases mirroring selection in Arabidopsis thaliana unlikely to be entirely due to variant calling errors
bioRxiv (2022), 2022.08.21.504682.
, , , , andPlant genetic effects on microbial hubs impact host fitness in repeated field trials
Proc Natl Acad Sci U S A (2022), 119(30) e2201285119.
, , , , , , , , , , , , , , , , , , , , andSpatially resolved host-bacteria-fungi interactomes via spatial metatranscriptomics
bioRxiv (2022), 2022.07.18.496977.
, , , , , andCanalization of genome-wide transcriptional activity in Arabidopsis thaliana accessions by MET1-dependent CG methylation
bioRxiv (2022), 2022.07.14.500095.
, , , , , andUncovering gene-family founder events during major evolutionary transitions in animals, plants and fungi using GenEra
bioRxiv (2022), 2022.07.07.498977.
, , andPolymorphic Inverted Repeats near coding genes impact chromatin topology and phenotypic traits in Arabidopsis thaliana
bioRxiv (2022), 2022.07.05.498814.
, , , , , , andChromosome-level Thlaspi arvense genome provides new tools for translational research and for a newly domesticated cash cover crop of the cooler climates
Plant Biotechnol J (2022), 20(5) 944-963.
, , , , , , , , , , , , , , , , , , , , , , , andDeep haplotype analyses of target-site resistance locus ACCase in blackgrass enabled by pool-based amplicon sequencing
bioRxiv (2022), 2022.06.22.496946.
, , , , , andPICLN modulates alternative splicing and ensures adaptation to light and temperature changes in plants
bioRxiv (2022), 2022.06.14.496170.
, , , , , , , , , , , andCommensal Pseudomonas protect Arabidopsis thaliana from a coexisting pathogen via multiple lineage-dependent mechanisms
ISME J (2022), 16(5) 1235-1244.
, , andCharacterization of the Different Levels of Variation in 45S rRNA Genes
Methods Mol Biol (2022), 2484 363-379.
Drought selection on Arabidopsis populations and their microbiomes
bioRxiv (2022), 2022.04.08.487684.
, , , , , andCommensal Pseudomonas strains facilitate protective response against pathogens in the host plant
Nat Ecol Evol (2022), 6(4) 383-396.
, , , , andPredictable and stable epimutations induced during clonal propagation with embryonic transcription factors
bioRxiv (2022), 2022.03.15.484412.
, , , , , , , , , , andRapid phenotypic differentiation and local adaptation in Japanese knotweed s.l. (Reynoutria japonica and R. x bohemica, Polygonaceae) invading novel habitats
bioRxiv (2022), 2022.03.07.483296.
, andPervasive Under-Dominance in Gene Expression as Unifying Principle of Biomass Heterosis in Arabidopsis
bioRxiv (2022), 2022.03.03.482808.
, , , , , andPushing the limits of HiFi assemblies reveals centromere diversity between two Arabidopsis thaliana genomes
bioRxiv (2022), 2022.02.15.480579.
, , , , , , , andMonitoring rapid evolution of plant populations at scale with Pool-Sequencing
bioRxiv (2022), 2022.02.02.477408.
, , , , , , , , , , , , andMutation bias reflects natural selection in Arabidopsis thaliana
Nature (2022), 602(7895) 101-105.
, , , , , , , , , , , , , , andPetabase-scale sequence alignment catalyses viral discovery
Nature (2022), 602(7895) 142-147.
, , , , , , , , , , , , , andRapid genomic convergent evolution in experimental populations of Trinidadian guppies (Poecilia reticulata)
Evol Lett (2022), 6(2) 149-161.
, , , , , , andRepeated origins, widespread gene flow, and allelic interactions of target-site herbicide resistance mutations
Elife (2022), 11.
, , , , , and2021
Standing genetic variation fuels rapid evolution of herbicide resistance in blackgrass
bioRxiv (2021), 2021.12.14.472587.
Reduced gamete viability associated to somatic genome rearrangements increases fruit set sensitivity to the environment in Tempranillo Blanco grapevine cultivar
Sci Hort. (2021), 290(110497).
, , , , andMultiple Sources of Introduction of North American Arabidopsis thaliana From Across Eurasia
Mol Biol Evol (2021), 38(12) 5328-5344.
, , , , , , , , andIt Is Just a Matter of Time: Balancing Homologous Recombination and Non-homologous End Joining at the rDNA Locus During Meiosis
Front Plant Sci (2021), 12 773052.
, , , andExtensive gene duplication in Arabidopsis revealed by pseudo-heterozygosity
bioRxiv (2021), 2021.11.15.468652.
, , , andGrafting vigour is associated with DNA de-methylation in eggplant
Hortic Res (2021), 8(1) 241.
, , , , , , , , andvcf2gwas-python API for comprehensive GWAS analysis using GEMMA
Bioinformatics (2021), 38(3) 839-840.
, andThe EDS1-PAD4-ADR1 node mediates Arabidopsis pattern-triggered immunity
Nature (2021), 598(7881) 495-499.
, , , , , , , , , , , , , , , , , , , , , , , , andnoisyR: enhancing biological signal in sequencing datasets by characterizing random technical noise
Nucleic Acids Res (2021), 49(14) e83.
, , , , , andThe Underlying Nature of Epigenetic Variation: Origin Establishment, and Regulatory Function of Plant Epialleles
Int Journal of Mol Sciences (IJMS) (2021), 22(16) 8618.
andHost-associated microbe PCR (hamPCR) enables convenient measurement of both microbial load and community composition
Elife (2021), 10 e66186.
, , , , , andeLife and medicine: Rigorous review and editorial oversight of clinical preprints
eLife (2021), 10 e67528.
, , , , andIs aromatic terpenoid composition of grapes in Northwestern Iberian wine cultivars related to variation in VviDXS1 gene?
J. Berry Res (2021), 11(2) 187-200.
, , , , , andvcf2gwas – Python API for comprehensive GWAS analysis using GEMMA
bioRxiv (2021), 2021.06.01.446586.
, andPopulation structure and evolution of resistance to acetolactate synthase (ALS)-inhibitors in Amaranthus tuberculatus in Italy
Pest Manag Sci (2021), 77(6) 2971-2980.
, , , , andPlant NLR diversity: the known unknowns of pan-NLRomes
Plant Cell (2021), 33(4) 814-831.
andDrainage-structuring of ancestral variation and a common functional pathway shape limited genomic convergence in natural high- and low-predation guppies
PLoS Genet (2021), 17(5) e1009566.
, , , , andRepeated origins, gene flow, and allelic interactions of herbicide resistance mutations in a widespread agricultural weed
bioRxiv (2021), 2021.05.10.443516.
, , , , , andGenetic variation, environment and demography intersect to shape Arabidopsis defense metabolite variation across Europe
Elife (2021), 10.
, , , , , , , , andGenetic variation and association analyses identify genes linked to fruit set-related traits in grapevine
Plant Sci (2021), 306 110875.
, , , , , , , andA Predictive Approach to Infer the Activity and Natural Variation of Retrotransposon Families in Plants
Methods Mol Biol (2021), 2250 1-14.
andThe genetic architecture and genome-wide signatures of glyphosate resistance in Amaranthus tuberculatus
Mol Ecol (2021), 30(21) 5373-5389.
, , , andContrasting patterns of microbial dominance in the Arabidopsis thaliana phyllosphere
bioRxiv (2021), 2021.04.06.438366.
, , , , , , , , andProtective host-dependent antagonism among Pseudomonas in the Arabidopsis phyllosphere
bioRxiv (2021), 2021.04.08.438928.
, , , andWhole genome resequencing and custom genotyping unveil clonal lineages in ‘Malbec’ grapevines (Vitis vinifera L.)
Sci Rep (2021), 11(1) 7775.
, , , , , , , , , , andSensitive protein alignments at tree-of-life scale using DIAMOND
Nat Methods (2021), 18(4) 366-368.
, andGenetic Mapping by Sequencing More Precisely Detects Loci Responsible for Anaerobic Germination Tolerance in Rice
Plants (Basel) (2021), 10(4).
, , , , , , , andGenotyping-by-sequencing-based identification of Arabidopsis pattern recognition receptor RLP32 recognizing proteobacterial translation initiation factor IF1
bioRxiv (2021), 2021.03.04.433884.
, , , , , , , , , , andHASTY modulates miRNA biogenesis by linking pri-miRNA transcription and processing
Mol Plant (2021), 14(3) 426-439.
, , , , , , , andMale-specific Y-chromosomal regions in waterhemp (Amaranthus tuberculatus) and Palmer amaranth (Amaranthus palmeri)
New Phytol (2021), 229(6) 3522-3533.
, , andChallenges of viticulture adaptation to global change: tackling the issue from the roots
Aus. J. of Grape Wine Res (2021), 27 8-25.
, , , , , , , , , , , , , andGenomic rearrangements generate hypervariable mini-chromosomes in host-specific isolates of the blast fungus
PLoS Genet (2021), 17(2) e1009386.
, , , , , , , andRapid genomic convergent evolution in experimental populations of Trinidadian guppies (Poecilia reticulata)
bioRxiv (2021), 2021.02.10.430609.
, , , , , , andThe population genomics of adaptive loss of function
Heredity (Edinb) (2021), 126(3) 383-395.
, , andHow Stress Facilitates Phenotypic Innovation Through Epigenetic Diversity
Front Plant Sci (2021), 11 606800.
andSmall peptides modulate the immune function of the ion channel-like protein ACD6 in Arabidopsis thaliana
bioRxiv (2021), 2021.01.25.428077.
, , , , , , , , , , , , , , andHomozygosity at its Limit: Inbreeding Depression in Wild Arabidopsis arenosa Populations
bioRxiv (2021), 2021.01.24.427284.
, , , , , , , andA Truncated Singleton NLR Causes Hybrid Necrosis in Arabidopsis thaliana
Mol Biol Evol (2021), 38(2) 557-574.
, , , , , , , andFine-scale Population Structure of North American Arabidopsis thaliana Reveals Multiple Sources of Introduction from Across Eurasia
bioRxiv (2021), 2021.01.22.427575.
, , , , , , , , andnoisyR: Enhancing biological signal in sequencing datasets by characterising random technical noise
bioRxiv (2021), 2021.01.17.427026.
, , , , , andCRISPR-finder: A high throughput and cost-effective method to identify successfully edited Arabidopsis thaliana individuals
Quant. Plant Biol (2021), 2:e1 1-7.
, , and2020
A gibberellin methyltransferase modulates the timing of floral transition at the Arabidopsis shoot meristem
Physiol Plant (2020), 170(4) 474-487.
, , , andImplementing a “publish, then review” model of publishing
Elife (2020), 9.
, , , , andDraft genomes of Amaranthus tuberculatus, Amaranthus hybridus and Amaranthus palmeri
Genome Biol Evol (2020), 12(11) 1988-1993.
, , , , , , , , , , , , andThe trehalose 6-phosphate pathway impacts vegetative phase change in Arabidopsis thaliana
Plant J (2020), 104(3) 768-780.
, , , , , , andA new role for histone demethylases in the maintenance of plant genome integrity
Elife (2020), 9.
, , , , , , , , , , , , , , , , andDrainage-structuring of ancestral variation and a common functional pathway shape limited genomic convergence in natural high- and low-predation guppies
bioRxiv (2020), 2020.10.14.339333.
, , , , andARADEEPOPSIS, an Automated Workflow for Top-View Plant Phenomics using Semantic Segmentation of Leaf States
Plant Cell (2020), 32(12) 3674-3688.
, , , andImproved reference genome uncovers novel sex-linked regions in the guppy (Poecilia reticulata)
Genome Biol Evol (2020), 12(10) 1789-1805.
, , , , , , , , , , , andHybridization ddRAD-sequencing for population genomics of non-model plants using highly degraded historical specimen DNA
Mol Ecol Resour (2020), 20(5) 1228-1247.
, , , , , , andDifferential loss of effector genes in three recently expanded pandemic clonal lineages of the rice blast fungus
BMC Biol (2020), 18(1) 88.
, , , , andNon-additive polygenic models improve predictions of fitness traits in three eukaryote model species
bioRxiv (2020), 2020.07.14.194407.
, andCRISPR-finder: A high throughput and cost effective method for identifying successfully edited A. thaliana individuals
bioRxiv (2020), 2020.06.25.171538.
, , andLTRpred: de novo annotation of intact retrotransposons
Journal of Open Source Software (2020), 5(50) 2170.
Mutation bias shapes gene evolution in Arabidopsis thaliana
bioRxiv (2020), 2020.06.17.156752.
, , , , , , andWhat natural variation can teach us about resistance durability
Curr Opin Plant Biol (2020), 56 89-98.
, , andMeasuring both microbial load and diversity with a single amplicon sequencing library
bioRxiv (2020), 2020.05.19.103937.
, , , , , andConvergent Loss of an EDS1/PAD4 Signaling Pathway in Several Plant Lineages Reveals Co-evolved Components of Plant Immunity and Drought Response
Plant Cell (2020), 32(7) 2158-2177.
, , , , , andCombining whole-genome shotgun sequencing and rRNA gene amplicon analyses to improve detection of microbe-microbe interaction networks in plant leaves
ISME J (2020), 14 2116-2130.
, , , , , , andIdentifying genetic variants underlying phenotypic variation in plants without complete genomes
Nat Genet (2020), 52(5) 534-540.
andAn Algorithm to Build a Multi-genome Reference
bioRxiv (2020), 2020.04.11.036871.
, andBlue Native Polyacrylamide Gel Electrophoresis (BN-PAGE) for the Analysis of Protein Oligomers in Plants
Curr Protoc Plant Biol (2020), 5(2) e20107.
, , andThe Earth BioGenome project: Opportunities and Challenges for Plant Genomics and Conservation
Plant J (2020), 102(2) 222-229.
, , andTropical Trees as Time Capsules of Anthropogenic Activity
Trends Plant Sci (2020), 25(4) 369-380.
, , , , , andPublishing in the time of COVID-19
Elife (2020), 9.
, , andAtypical Resistance Protein RPW8/HR Triggers Oligomerization of the NLR Immune Receptor RPP7 and Autoimmunity
Cell Host Microbe (2020), 27(3) 405-417.
, , andMuseum phylogenomics of extinct Oryctes beetles from the Mascarene Islands
bioRxiv (2020), 2020.02.19.954339.
, , , , , , andTrait plasticity and covariance along a continuous soil moisture gradient
bioRxiv (2020), 2020.02.17.952853.
, andRecently expanded clonal lineages of the rice blast fungus display distinct patterns of presence/absence of effector genes
bioRxiv (2020), 2020.01.09.900308.
, , , , andRecently expanded clonal lineages of the rice blast fungus display distinct patterns of presence/absence of effector genes
bioRxiv (2020), 2020.01.09.900308.
, , , , andAraPheno and the AraGWAS Catalog 2020: a major database update including RNA-Seq and knockout mutation data for Arabidopsis thaliana
Nucleic Acids Res (2020), 48(D1) D1063-D1068.
, , , , , , , , andA singleton NLR of recent origin causes hybrid necrosis in Arabidopsis thaliana
bioRxiv (2020), 2020.05.18.101451.
, , , , , , , andTERMINAL FLOWER1 Functions as a Mobile Transcriptional Cofactor in the Shoot Apical Meristem
Plant Physiol (2020), 182(4) 2081-2095.
, , , , , and2019
An Ultra High-Density Arabidopsis thaliana Crossover Map That Refines the Influences of Structural Variation and Epigenetic Features
Genetics (2019), 213(3) 771-787.
, , , , andThe relationship between microbial biomass and disease in the Arabidopsis thaliana phyllosphere
bioRxiv (2019), 828814.
, , , , , , , , , , andCombining whole genome shotgun sequencing and rDNA amplicon analyses to improve detection of microbe-microbe interaction networks in plant leaves
bioRxiv (2019), 823492.
, , , , , , andFinding genetic variants in plants without complete genomes
bioRxiv (2019), 818096.
andThe BIR2/BIR3-interacting Phospholipase D gamma 1 negatively regulates immunity in Arabidopsis
bioRxiv (2019), 815282.
, , , , , , , , , andMultiple modes of convergent adaptation in the spread of glyphosate-resistant Amaranthus tuberculatus
Proc Natl Acad Sci U S A (2019), 116(42) 21076-21084.
, , , , , , , , , , andCRISPR-based tools for targeted transcriptional and epigenetic regulation in plants
PLoS One (2019), 14(9) e0222778.
, , andPosition-dependent effects of cytosine methylation on FWA expression in Arabidopsis thaliana
bioRxiv (2019), 774281.
Natural selection on the Arabidopsis thaliana genome in present and future climates
Nature (2019), 573(7772) 126-129.
, , , , andRST1 and RIPR connect the cytosolic RNA exosome to the Ski complex in Arabidopsis
Nat Commun (2019), 10(1) 3871.
, , , , , , , , , , , , , , andA Species-Wide Inventory of NLR Genes and Alleles in Arabidopsis thaliana
Cell (2019), 178(5) 1260-1272 e14.
, , , , , , , , andRPW8/HR repeats control NLR activation in Arabidopsis thaliana
PLoS Genet (2019), 15(7) e1008313.
, , , , , , , , , , , andThe origins and adaptation of European potatoes reconstructed from historical genomes
Nat Ecol Evol (2019), 3(7) 1093-1101.
, , , , , , andOligomerization of NLR immune receptor RPP7 triggered by atypical resistance protein RPW8/HR as ligand
bioRxiv (2019), 682807.
, , andNCP activates chloroplast transcription by controlling phytochrome-dependent dual nuclear and plastidial switches
Nat Commun (2019), 10(1) 2630.
Phytochrome activates the plastid-encoded RNA polymerase for chloroplast biogenesis via nucleus-to-plastid signaling
Nat Commun (2019), 10(1) 2629.
, , , , , andAll in the Family: The First Whole-genome Survey of NLR Genes
Plant Cell (2019), 31(6) 1212-1213.
Arabidopsis FLL2 promotes liquid-liquid phase separation of polyadenylation complexes
Nature (2019), 569(7755) 265-269.
, , , , , , , , , andChemical genetic identification of a lectin receptor kinase that transduces immune responses and interferes with abscisic acid signaling
Plant Journal (2019), 98(3) 492-510.
, , , , , , , , , andFT Modulates Genome-Wide DNA-Binding of the bZIP Transcription Factor FD
Plant Physiol (2019), 180(1) 367-380.
, , andRPW8/HR Repeats Control NLR Activation in A. thaliana
bioRxiv (2019), 559864.
, , , , , , , , , , , andNonlinear phenotypic variation uncovers the emergence of heterosis in Arabidopsis thaliana
PLoS Biol (2019), 17(4) e3000214.
, , , , andAlternative use of miRNA-biogenesis co-factors in plants at low temperatures
Development (2019), 146(5).
, , , , , andTransmission ratio distortion is frequent in Arabidopsis thaliana controlled crosses
Heredity (Edinb) (2019), 122(3) 294-304.
, , , andComparing Arabidopsis receptor kinase and receptor protein-mediated immune signaling reveals BIK1-dependent differences
New Phytol (2019), 221(4) 2080-2095.
, , , , , , , , , , , , , , , , andLong-term balancing selection drives evolution of immunity genes in Capsella
Elife (2019), 8.
, , , , , , andFine-Grained Analysis of Spontaneous Mutation Spectrum and Frequency in Arabidopsis thaliana
Genetics (2019), 211(2) 703-714.
, , , , , andThe Arabidopsis thaliana pan-NLRome
bioRxiv (2019), 537001.
, , , , , , , , andFlax latitudinal adaptation at LuTFL1 altered architecture and promoted fiber production
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Interaction of LEAFY, AGAMOUS and TERMINAL FLOWER1 in maintaining floral meristem identity in Arabidopsis
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Quantitative trait loci controlling light and hormone response in two accessions of Arabidopsis thaliana
, , , , , , , , , and Genetics (2002), 160(2) 683-96.
Signaling in plants by intercellular RNA and protein movement
Genes Dev (2002), 16(2) 151-8.
Stem cells that make stems
Nature (2002), 415(6873) 751-4.
The extent of linkage disequilibrium in Arabidopsis thaliana
Nat Genet (2002), 30(2) 190-3.
2001
A molecular link between stem cell regulation and floral patterning in Arabidopsis
, , , , , and Cell (2001), 105(6) 793-803.
A role for flavin monooxygenase-like enzymes in auxin biosynthesis
Science (2001), 291(5502) 306-9.
Arabidopsis genome: life without notch
and Curr Biol (2001), 11(3) R112-4.
Evolution of floral meristem identity genes. Analysis of Lolium temulentum genes related to APETALA1 and LEAFY of Arabidopsis
, , , , and Plant Physiol (2001), 125(4) 1788-801.
Functional divergence of the TFL1-like gene family in Arabidopsis revealed by characterization of a novel homologue
, , , , , , , and Genes Cells (2001), 6(4) 327-36.
GAMYB-like genes, flowering, and gibberellin signaling in Arabidopsis
Plant Physiol (2001), 127(4) 1682-93.
Natural variation in light sensitivity of Arabidopsis
Nat Genet (2001), 29(4) 441-6.
NFL1, a Nicotiana tabacum LEAFY-like gene, controls meristem initiation and floral structure
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Plant development: from cell fate to organ formation
and Plant Cell (2001), 13(2) 221-7.
Transcriptional networks controlling plant development
and Plant Physiol (2001), 125(1) 109-11.
2000
Activation tagging in Arabidopsis
Plant Physiol (2000), 122(4) 1003-13.
Cell-cell signaling and movement by the floral transcription factors LEAFY and APETALA1
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Integration of floral inductive signals in Arabidopsis
Nature (2000), 404(6780) 889-92.
National Science Foundation-Sponsored Workshop Report: “The 2010 Project” functional genomics and the virtual plant. A blueprint for understanding how plants are built and how to improve them
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Natural variation in phytochrome signaling
Semin Cell Dev Biol (2000), 11(6) 523-30.
Regulation of auxin response by the protein kinase PINOID
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Transformation of Medicago truncatula via infiltration of seedlings or flowering plants with Agrobacterium
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Transformation of rice with the Arabidopsis floral regulator LEAFY causes early heading
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1999
Activation of a floral homeotic gene in Arabidopsis
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Activation tagging of the floral inducer FT
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Independent regulation of flowering by phytochrome B and gibberellins in Arabidopsis
and Plant Physiol (1999), 120(4) 1025-32.
Redundant enhancers mediate transcriptional repression of AGAMOUS by APETALA2
Dev Biol (1999), 216(1) 260-4.
The Arabidopsis flowering-time gene LUMINIDEPENDENS is expressed primarily in regions of cell proliferation and encodes a nuclear protein that regulates LEAFY expression
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The Arabidopsis thaliana MERISTEM LAYER 1 promoter specifies epidermal expression in meristems and young primordia
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1998
A genetic framework for floral patterning
Nature (1998), 395(6702) 561-6.
Flowering-time genes modulate the response to LEAFY activity
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From floral induction to floral shape
Curr Opin Plant Biol (1998), 1(1) 55-9.
Genetic ablation of flowers in transgenic Arabidopsis
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Gibberellins promote flowering of arabidopsis by activating the LEAFY promoter
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Patterning the floral meristem
Semin Cell Dev Biol (1998), 9(2) 221-6.
Plant development: the making of a leaf
and Curr Biol (1998), 8(18) R643-5.
1997
A LEAFY co-regulator encoded by UNUSUAL FLORAL ORGANS
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Floral determination and expression of floral regulatory genes in Arabidopsis
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Flower development: repressing reproduction
Curr Biol (1997), 7(6) R373-5.
LEAFY expression and flower initiation in Arabidopsis
Development (1997), 124(19) 3835-44.
Modulating the timing of flowering
Curr Opin Biotechnol (1997), 8(2) 195-9.
1996
Cell-cell interactions: taking cues from the neighbors
and Curr Biol (1996), 6(1) 10-2.
Sizing Up the Floral Meristem
and Plant Physiol (1996), 112(1) 5-10.
1995
A developmental switch sufficient for flower initiation in diverse plants
Nature (1995), 377(6549) 495-500.
The APETALA2 domain is related to a novel type of DNA binding domain
Plant Cell (1995), 7(4) 388-9.
The genetics of flower development: from floral induction to ovule morphogenesis
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1994
Plant development. The SECrets of Arabidopsis embryogenesis
Curr Biol (1994), 4(11) 1040-2.
Sp1/egr-like zinc-finger protein required for endoderm specification and germ-layer formation in Drosophila
Nature (1994), 369(6482) 664-8.
The ABCs of floral homeotic genes
and Cell (1994), 78(2) 203-9.
1993
Activation of floral homeotic genes in Arabidopsis
Science (1993), 261(5129) 1723-6.
Patterning the Arabidopsis embryo
Curr Biol (1993), 3(7) 443-5.
1992
LEAFY controls floral meristem identity in Arabidopsis
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Organogenesis in Drosophila melanogaster: embryonic salivary gland determination is controlled by homeotic and dorsoventral patterning genes
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SUPERMAN, a regulator of floral homeotic genes in Arabidopsis
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1991
A genetic and molecular model for flower development in Arabidopsis thaliana
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Floral patterning
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1990
Regulation of Kruppel expression in the anlage of the Malpighian tubules in the Drosophila embryo
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Regulatory elements controlling expression of the Drosophila homeotic gene fork head
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The fork head domain: a novel DNA binding motif of eukaryotic transcription factors?
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Two gap genes mediate maternal terminal pattern information in Drosophila
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1989
Novel homeotic genes in Drosophila melanogaster
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The homeotic gene fork head encodes a nuclear protein and is expressed in the terminal regions of the Drosophila embryo
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[Pattern formation in Drosophila]
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1988
Functional interactions of neurogenic genes of Drosophila melanogaster
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1987
EGF homologous sequences encoded in the genome of Drosophila melanogaster, and their relation to neurogenic genes
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EMBO J (1987), 6(3) 761-6.
The Drosophila homolog of the mouse mammary oncogene int-1 is identical to the segment polarity gene wingless
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Cell (1987), 50(4) 649-57.