Item Type | Name |
Concept
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Amino Acid Sequence
|
Concept
|
Base Sequence
|
Concept
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Multigene Family
|
Concept
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Molecular Sequence Data
|
Concept
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Repetitive Sequences, Nucleic Acid
|
Concept
|
Gene Library
|
Concept
|
Genes, Plant
|
Concept
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Sequence Homology, Amino Acid
|
Concept
|
Conserved Sequence
|
Concept
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Gene Expression Regulation, Plant
|
Concept
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Gene Expression Regulation, Developmental
|
Concept
|
Genome, Plant
|
Concept
|
Genes, Duplicate
|
Concept
|
Catalytic Domain
|
Concept
|
Genes, myb
|
Concept
|
Gene Duplication
|
Concept
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Pseudogenes
|
Concept
|
Gene Expression Regulation, Enzymologic
|
Concept
|
Transcriptome
|
Concept
|
Gene-Environment Interaction
|
Concept
|
Quantitative Trait Loci
|
Concept
|
Genes, Reporter
|
Concept
|
Gene Silencing
|
Concept
|
Gene Expression Profiling
|
Concept
|
Gene Ontology
|
Concept
|
Euchromatin
|
Academic Article
|
Complete transcriptome of the soybean root hair cell, a single-cell model, and its alteration in response to Bradyrhizobium japonicum infection.
|
Academic Article
|
An integrated transcriptome atlas of the crop model Glycine max, and its use in comparative analyses in plants.
|
Academic Article
|
Identification of quantitative trait loci controlling gene expression during the innate immunity response of soybean.
|
Academic Article
|
Identification of microRNAs and their mRNA targets during soybean nodule development: functional analysis of the role of miR393j-3p in soybean nodulation.
|
Academic Article
|
Identification and functional characterization of soybean root hair microRNAs expressed in response to Bradyrhizobium japonicum infection.
|
Academic Article
|
Phosphate Deficiency Negatively Affects Early Steps of the Symbiosis between Common Bean and Rhizobia.
|
Academic Article
|
The Arabidopsis LHP1 protein is a component of euchromatin.
|
Academic Article
|
Identification of 118 Arabidopsis transcription factor and 30 ubiquitin-ligase genes responding to chitin, a plant-defense elicitor.
|
Academic Article
|
Transcription profiling of soybean nodulation by Bradyrhizobium japonicum.
|
Academic Article
|
GS52 ecto-apyrase plays a critical role during soybean nodulation.
|
Academic Article
|
Genome sequence of the palaeopolyploid soybean.
|
Academic Article
|
Quantitative phosphoproteomic analysis of soybean root hairs inoculated with Bradyrhizobium japonicum.
|
Academic Article
|
Comprehensive Comparative Genomic and Transcriptomic Analyses of the Legume Genes Controlling the Nodulation Process.
|
Academic Article
|
The GmFWL1 (FW2-2-like) nodulation gene encodes a plasma membrane microdomain-associated protein.
|
Academic Article
|
Single-nucleus RNA and ATAC sequencing reveals the impact of chromatin accessibility on gene expression in Arabidopsis roots at the single-cell level.
|
Academic Article
|
Prediction of novel miRNAs and associated target genes in Glycine max.
|
Academic Article
|
The fate of duplicated genes in a polyploid plant genome.
|
Academic Article
|
A Comparative Epigenomic Analysis of Polyploidy-Derived Genes in Soybean and Common Bean.
|
Academic Article
|
A comparative genomic and transcriptomic analysis at the level of isolated root hair cells reveals new conserved root hair regulatory elements.
|
Academic Article
|
Gene Silencing of Argonaute5 Negatively Affects the Establishment of the Legume-Rhizobia Symbiosis.
|
Academic Article
|
Plant Hormones Differentially Control the Sub-Cellular Localization of Plasma Membrane Microdomains during the Early Stage of Soybean Nodulation.
|
Academic Article
|
Mutations in LIKE HETEROCHROMATIN PROTEIN 1 affect flowering time and plant architecture in Arabidopsis.
|
Academic Article
|
Molecular evolution of lysin motif-type receptor-like kinases in plants.
|
Academic Article
|
Legume transcription factor genes: what makes legumes so special?
|
Academic Article
|
Large-scale analysis of putative soybean regulatory gene expression identifies a Myb gene involved in soybean nodule development.
|
Academic Article
|
A member of the highly conserved FWL (tomato FW2.2-like) gene family is essential for soybean nodule organogenesis.
|
Academic Article
|
Root hair systems biology.
|
Academic Article
|
Evolution of FW2.2-like (FWL) and PLAC8 genes in eukaryotes.
|
Academic Article
|
Enzymatic activity of the soybean ecto-apyrase GS52 is essential for stimulation of nodulation.
|
Academic Article
|
A dual-targeted soybean protein is involved in Bradyrhizobium japonicum infection of soybean root hair and cortical cells.
|
Academic Article
|
14-3-3 proteins SGF14c and SGF14l play critical roles during soybean nodulation.
|
Academic Article
|
miR172 regulates soybean nodulation.
|
Academic Article
|
Decipher the Molecular Response of Plant Single Cell Types to Environmental Stresses.
|
Academic Article
|
Function of plasma membrane microdomain-associated proteins during legume nodulation.
|
Academic Article
|
Plant response to biotic stress: Is there a common epigenetic response during plant-pathogenic and symbiotic interactions?
|
Academic Article
|
Plant Single-Cell Multiomics: Cracking the Molecular Profiles of Plant Cells.
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Academic Article
|
Isolating and cryopreserving pig skin cells for single-cell RNA sequencing study.
|