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Mass Spectrometry Imaging of Bio‐oligomer Polydispersity in Plant Tissues by Laser Desorption Ionization from Silicon Nanopost Arrays
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March 2021 |
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Proteoform‐Selective Imaging of Tissues Using Mass Spectrometry**
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May 2022 |
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Analysis of sulfated peptides using positive electrospray ionization tandem mass spectrometry
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January 2001 |
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Top-down mass spectrometry for the analysis of combinatorial post-translational modifications
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June 2012 |
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Unimod: Protein modifications for mass spectrometry
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June 2004 |
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Artifacts to avoid while taking advantage of top-down mass spectrometry based detection of protein S-thiolation
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April 2014 |
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C-terminomics: Targeted analysis of natural and posttranslationally modified protein and peptide C-termini
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December 2014 |
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Identification and Quantification of Proteoforms by Mass Spectrometry
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May 2019 |
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Influence of various on-tissue washing procedures on the entire protein quantity and the quality of matrix-assisted laser desorption/ionization spectra
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March 2013 |
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A Strategy to Locate Cysteine Residues in Proteins by Specific Chemical Cleavage Followed by Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass Spectrometry
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March 1996 |
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Characterization of recombinant soybean leghemoglobin a and apolar distal histidine mutants
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March 1997 |
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Insertion and deletion mutations within the nif region of Rhizobium japonicum
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January 1984 |
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Distinguishing Sulfotyrosine Containing Peptides from their Phosphotyrosine Counterparts Using Mass Spectrometry
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January 2018 |
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Ion-Ion Proton Transfer and Parallel Ion Parking for the Analysis of Mixtures of Intact Proteins on a Modified Orbitrap Mass Analyzer
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August 2019 |
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Cascade control of E. coli glutamine synthetase
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December 1978 |
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Detection and purification of modified leghemoglobins from soybean root nodules
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January 1994 |
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Top-down proteomics for the analysis of proteolytic events - Methods, applications and perspectives
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November 2017 |
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Protein identification strategies in MALDI imaging mass spectrometry: a brief review
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February 2019 |
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Single-cell protein analysis by mass spectrometry
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February 2021 |
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Designed protease-based signaling networks
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June 2022 |
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Optimization of MALDI-TOF mass spectrometry imaging for the visualization and comparison of peptide distributions in dry-cured ham muscle fibers
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June 2019 |
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Structure, expression, and mapping of two nodule-specific genes identified by mining public soybean EST databases
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November 2006 |
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Modifying Chromatin by Histone Tail Clipping
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September 2018 |
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N-terminomics – its past and recent advancements
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February 2021 |
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Tough love: accommodating intracellular bacteria through directed secretion of antimicrobial peptides during the nitrogen-fixing symbiosis
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August 2018 |
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Modulation of plant innate immune signaling by small peptides
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October 2019 |
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Hormone-like peptides and small coding genes in plant stress signaling and development
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October 2019 |
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Proteases in plant root symbiosis
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January 2007 |
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Specific Chemical Cleavage in High Yield at the Amino Peptide Bonds of Cysteine and Cystine Residues
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October 1973 |
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Fatty acylation of proteins: new insights into membrane targeting of myristoylated and palmitoylated proteins
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August 1999 |
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Matrix Sublimation/Recrystallization for Imaging Proteins by Mass Spectrometry at High Spatial Resolution
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July 2011 |
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BRAIN: A Universal Tool for High-Throughput Calculations of the Isotopic Distribution for Mass Spectrometry
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January 2013 |
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Direct Detection of S-Palmitoylation by Mass Spectrometry
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December 2013 |
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Higher Resolution Charge Detection Mass Spectrometry
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August 2020 |
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Deeper Protein Identification Using Field Asymmetric Ion Mobility Spectrometry in Top-Down Proteomics
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April 2021 |
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Enhanced Spatial Mapping of Histone Proteoforms in Human Kidney Through MALDI-MSI by High-Field UHMR-Orbitrap Detection
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September 2022 |
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Design and Performance of a Novel Interface for Combined Matrix-Assisted Laser Desorption Ionization at Elevated Pressure and Electrospray Ionization with Orbitrap Mass Spectrometry
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June 2017 |
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Desorption Electrospray Ionization Mass Spectrometry Imaging of Proteins Directly from Biological Tissue Sections
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May 2018 |
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Multiplexed Charge Detection Mass Spectrometry for High-Throughput Single Ion Analysis of Large Molecules
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May 2019 |
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Proton Transfer Charge Reduction Enables High-Throughput Top-Down Analysis of Large Proteoforms
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November 2019 |
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Comprehensive LESA Mass Spectrometry Imaging of Intact Proteins by Integration of Cylindrical FAIMS
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January 2020 |
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Improving Proteoform Identifications in Complex Systems Through Integration of Bottom-Up and Top-Down Data
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June 2020 |
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Enhancing Open Modification Searches via a Combined Approach Facilitated by Ursgal
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January 2021 |
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PSpecteR: A User-Friendly and Interactive Application for Visualizing Top-Down and Bottom-Up Proteomics Data in R
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March 2021 |
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Enhancing Top-Down Proteomics of Brain Tissue with FAIMS
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April 2021 |
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Protein Analysis by Shotgun/Bottom-up Proteomics
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February 2013 |
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Transient-Mediated Simulations of FTMS Isotopic Distributions and Mass Spectra to Guide Experiment Design and Data Analysis
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August 2020 |
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Spatially Resolved Mass Spectrometry at the Single Cell: Recent Innovations in Proteomics and Metabolomics
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March 2021 |
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Novel Strategies to Address the Challenges in Top-Down Proteomics
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May 2021 |
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A mass-tolerant database search identifies a large proportion of unassigned spectra in shotgun proteomics as modified peptides
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June 2015 |
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MSFragger: ultrafast and comprehensive peptide identification in mass spectrometry–based proteomics
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April 2017 |
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Informed-Proteomics: open-source software package for top-down proteomics
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August 2017 |
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Spatial proteomics: a powerful discovery tool for cell biology
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January 2019 |
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A five-level classification system for proteoform identifications
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August 2019 |
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Multiplexed mass spectrometry of individual ions improves measurement of proteoforms and their complexes
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March 2020 |
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Resolving heterogeneous macromolecular assemblies by Orbitrap-based single-particle charge detection mass spectrometry
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March 2020 |
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Mass spectrometry-based proteomics: existing capabilities and future directions
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January 2012 |
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Combinations of histone post-translational modifications
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February 2021 |
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Bacterial heme synthesis is required for expression of the leghemoglobin holoprotein but not the apoprotein in soybean root nodules.
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December 1987 |
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S-Cysteinylation Is a General Mechanism for Thiol Protection of Bacillus subtilis Proteins after Oxidative Stress
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September 2007 |
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O -Sulfonation of Serine and Threonine: Mass Spectrometric Detection and Characterization of a New Posttranslational Modification in Diverse Proteins Throughout the Eukaryotes
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January 2004 |
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Single-cell Proteomics: Progress and Prospects
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November 2020 |
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Nanoproteomics comes of age
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October 2018 |
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SIRIUS: decomposing isotope patterns for metabolite identification†
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November 2008 |
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TopPIC: a software tool for top-down mass spectrometry-based proteoform identification and characterization
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July 2016 |
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Oxidative post-translational modifications of cysteine residues in plant signal transduction
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March 2015 |
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The Human Proteoform Atlas: a FAIR community resource for experimentally derived proteoforms
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November 2021 |
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Proteome Analysis. Novel Proteins Identified at the Peribacteroid Membrane from Lotus japonicus Root Nodules
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March 2003 |
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Characteristics of Modified Leghemoglobins Isolated from Soybean (Glycine max Merr.) Root Nodules
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April 1994 |
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HCN Regulates Cellular Processes through Posttranslational Modification of Proteins by S-cyanylation
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October 2018 |
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P II signal transduction proteins: nitrogen regulation and beyond
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March 2013 |
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Metabolomic profiling of wild‐type and mutant soybean root nodules using laser‐ablation electrospray ionization mass spectrometry reveals altered metabolism
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June 2020 |
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Root‐secreted peptide OsPEP1 regulates primary root elongation in rice
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May 2021 |
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Beyond mass spectrometry, the next step in proteomics
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January 2020 |
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The Human Proteoform Project: Defining the human proteome
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November 2021 |
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Highly multiplexed, label-free proteoform imaging of tissues by individual ion mass spectrometry
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August 2022 |
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Secreted Peptide Signals Required for Maintenance of Root Stem Cell Niche in Arabidopsis
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August 2010 |
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Proteoforms as the next proteomics currency
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March 2018 |
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The Blood Proteoform Atlas: A reference map of proteoforms in human hematopoietic cells
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January 2022 |
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The Role of Glutathione in Photosynthetic Organisms: Emerging Functions for Glutaredoxins and Glutathionylation
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June 2008 |
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Predicting N-terminal myristoylation sites in plant proteins
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June 2004 |
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Genome-wide survey of soybean papain-like cysteine proteases and their expression analysis in root nodule symbiosis
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November 2020 |
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Plasticity in plastid redox networks: evolution of glutathione-dependent redox cascades and glutathionylation sites
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July 2021 |
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Impact of Plant Peptides on Symbiotic Nodule Development and Functioning
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July 2018 |
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Spatial Mapping of Plant N-Glycosylation Cellular Heterogeneity Inside Soybean Root Nodules Provided Insights Into Legume-Rhizobia Symbiosis
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May 2022 |
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Indispensable Role of Proteases in Plant Innate Immunity
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February 2018 |
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Secretory Peptides as Bullets: Effector Peptides from Pathogens against Antimicrobial Peptides from Soybean
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December 2020 |