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Spatiotemporal expression control correlates with intragenic scaffold matrix attachment regions (S/MARs) in Arabidopsis thalianaThe complete nucleotide sequences of the five genetically distinct plastid genomes of Oenothera, subsection Oenothera: I. sequence evaluation and plastome evolutionThe Spirodela polyrhiza genome reveals insights into its neotenous reduction fast growth and aquatic lifestyleAegilops tauschii draft genome sequence reveals a gene repertoire for wheat adaptationA physical, genetic and functional sequence assembly of the barley genomeGenome sequencing and analysis of the model grass Brachypodium distachyonThe Sorghum bicolor genome and the diversification of grassesMIPS: curated databases and comprehensive secondary data resources in 2010PlantMarkers--a database of predicted molecular markers from plantsMIPS: analysis and annotation of genome information in 2007MIPSPlantsDB--plant database resource for integrative and comparative plant genome researchBacteria-triggered systemic immunity in barley is associated with WRKY and ETHYLENE RESPONSIVE FACTORs but not with salicylic acid.MicroRNAs coordinately regulate protein complexes.Molecular and immunological characterization of ragweed (Ambrosia artemisiifolia L.) pollen after exposure of the plants to elevated ozone over a whole growing season.How can we deliver the large plant genomes? Strategies and perspectives.RNASeqExpressionBrowser--a web interface to browse and visualize high-throughput expression data.De novo 454 sequencing of barcoded BAC pools for comprehensive gene survey and genome analysis in the complex genome of barleyGene selection from microarray data for cancer classification--a machine learning approach.transPLANT Resources for Triticeae Genomic Data.The complete nucleotide sequences of the 5 genetically distinct plastid genomes of Oenothera, subsection Oenothera: II. A microevolutionary view using bioinformatics and formal genetic dataSnipping polymorphisms from large EST collections in barley (Hordeum vulgare L.).Structure and architecture of the maize genome.Genetic and genomic analysis of legume flowers and seeds.Molecular characterisation of the STRUBBELIG-RECEPTOR FAMILY of genes encoding putative leucine-rich repeat receptor-like kinases in Arabidopsis thaliana.Apollo2Go: a web service adapter for the Apollo genome viewer to enable distributed genome annotationRole of WUSCHEL in regulating stem cell fate in the Arabidopsis shoot meristem.A first genetic map of date palm (Phoenix dactylifera) reveals long-range genome structure conservation in the palms.Extensive and biased intergenomic nonreciprocal DNA exchanges shaped a nascent polyploid genome, Gossypium (cotton)From RNA-seq to large-scale genotyping - genomics resources for rye (Secale cereale L.).Sequence and analysis of the Arabidopsis genome.Impact of natural genetic variation on the transcriptome of autotetraploid Arabidopsis thalianaSelfish supernumerary chromosome reveals its origin as a mosaic of host genome and organellar sequences.Convergent targeting of a common host protein-network by pathogen effectors from three kingdoms of life.A powerful tool for genome analysis in maize: development and evaluation of the high density 600 k SNP genotyping array.The genome sequence of African rice (Oryza glaberrima) and evidence for independent domestication.An improved genome release (version Mt4.0) for the model legume Medicago truncatula.Conserved synteny-based anchoring of the barley genome physical map.Quantitative trait loci-dependent analysis of a gene co-expression network associated with Fusarium head blight resistance in bread wheat (Triticum aestivum L.).Sequence-based analysis of translocations and inversions in bread wheat (Triticum aestivum L.).Uneven chromosome contraction and expansion in the maize genome.
P50
Q21092582-E16DD397-CFC3-4AEC-8513-272F91B55B21Q22065974-26EA71D4-8766-4BCC-8072-28BE18D61D87Q22122095-47D5D362-907A-4C77-A79D-B01EDE27C7BAQ22122140-E2C97C10-6CBE-4A6C-87B3-383CB7D6362DQ22122143-F8C5F489-5461-40D6-A4BF-F7ABEC6F1D8FQ22122196-1DA308D1-B293-4876-A1F7-FF097C91289FQ22122216-E6681D41-7FE1-417C-B743-139785EDB7FBQ24611469-C6403406-FD2F-49BF-A32A-C3549D7368B7Q24795493-9FB39154-A698-4FA2-BDD0-090181174585Q28755645-09613954-AACC-4BA4-8BD9-2FFD39B2F264Q28757515-5B1CC4BA-44C9-4451-8A9A-074B09DFD601Q30317010-975A060F-A2C0-4679-8780-4C032A6767F2Q30504105-4A99A92A-76C1-425D-AE11-6DEF99EBFE14Q30620824-879919B9-C479-488D-8495-ACDDA06B24F2Q30816433-17695A4E-EAE5-497B-A9F1-DEE08C945CEEQ30822023-748666A7-764C-4286-8D49-D43A98F9BCDEQ30906175-ABFE698E-92C3-40E0-BB28-AD8B2AE30B46Q30981694-B2251501-C2D5-4381-80EB-08A7A1CD35AAQ31145411-CFB8EAEE-9F43-4FC7-A4C4-DB95E2047901Q31162105-E3442890-552D-4155-9252-E05B2E08D59DQ33188268-BCD7A1E1-6908-4E8E-AB56-D25D9D0E72B5Q33229027-C8C7A272-2258-4E67-A481-633CC7892612Q33234036-9B0B6691-14AC-4D33-8A88-E5AD4FE0B230Q33280656-6BED41DF-C9B9-4749-BE88-FE0ED48268FBQ33296092-88FBA1E2-4A3A-4439-8843-D7598746E3BFQ33368944-C27A6FFB-2B97-48DE-853C-E33276A87C48Q33622332-C4E2A6E2-F4C3-4500-99F6-49B56F22BDA4Q34016566-9224CCB2-743B-4A01-9E55-085664E01C90Q34032778-BB3EB126-2163-4A3F-95E7-37291521A4B4Q34167998-C0FC40A2-D3E3-4C22-BE36-DB4A6F1EB992Q34199941-2BC58CAD-DB15-4008-AA7B-E8A9B2479494Q34291393-5E1F0C66-65A6-42DE-B48E-AEE5CCA7C19EQ34314145-1E430D9B-099F-4067-93AA-EB09DBD6162BQ34318417-B7AA1318-EA27-4C5E-9CF0-3F04604EBA3CQ34430957-4598DCC0-3EE2-42A4-A68F-BC7A041F8EB8Q34525527-392C5B41-1DA6-48B7-B6A7-0993D1A41CB8Q34787265-34A15F62-9B89-401B-AA6E-AE7A3AA712CDQ35024644-01DEF673-FF73-4963-8997-6937F537999CQ35048343-D4633CB0-C3BC-40EF-AED0-B9CDF35E25A5Q35056712-7A9793DB-69A6-4734-BBA1-22425B136CFD
P50
description
hulumtues
@sq
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Klaus Mayer
@ast
Klaus Mayer
@en
Klaus Mayer
@es
Klaus Mayer
@nl
Klaus Mayer
@sl
type
label
Klaus Mayer
@ast
Klaus Mayer
@en
Klaus Mayer
@es
Klaus Mayer
@nl
Klaus Mayer
@sl
altLabel
Klaus F. X. Mayer
@en
prefLabel
Klaus Mayer
@ast
Klaus Mayer
@en
Klaus Mayer
@es
Klaus Mayer
@nl
Klaus Mayer
@sl
P1053
M-7941-2015
P106
P1153
55674422000
P21
P2456
P31
P3829
P496
0000-0001-6484-1077