scholarly article | Q13442814 |
P2093 | author name string | Ming Li | |
Feng Gao | |||
Xin Wang | |||
Kun Wang | |||
Yong Zhao | |||
Shaoqing Li | |||
Pingfang Yang | |||
Ming-Kun Yang | |||
P2860 | cites work | Phosphoproteome Analysis of Fission Yeast | Q57973148 |
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ClueGO: a Cytoscape plug-in to decipher functionally grouped gene ontology and pathway annotation networks | Q24570122 | ||
The rice kinase database. A phylogenomic database for the rice kinome | Q24670049 | ||
Transcriptome analysis of haploid male gametophyte development in Arabidopsis | Q24809583 | ||
Dynamics connect substrate recognition to catalysis in protein kinase A | Q27664877 | ||
Global, in vivo, and site-specific phosphorylation dynamics in signaling networks | Q27864128 | ||
Correlation between protein and mRNA abundance in yeast | Q28137554 | ||
A curated compendium of phosphorylation motifs | Q29029867 | ||
A model for random sampling and estimation of relative protein abundance in shotgun proteomics | Q29547316 | ||
ProteomeXchange provides globally coordinated proteomics data submission and dissemination | Q29614806 | ||
Large-scale phosphoprotein analysis in Medicago truncatula roots provides insight into in vivo kinase activity in legumes | Q30484314 | ||
Binding of an arm repeat protein to the kinase domain of the S-locus receptor kinase. | Q32158615 | ||
Proteomic analyses of Oryza sativa mature pollen reveal novel proteins associated with pollen germination and tube growth | Q33237034 | ||
Proteomics identification of differentially expressed proteins associated with pollen germination and tube growth reveals characteristics of germinated Oryza sativa pollen | Q33264878 | ||
Proteomic analysis of tomato (Lycopersicon esculentum) pollen | Q33301886 | ||
Comparative transcriptomics of Arabidopsis sperm cells. | Q33356346 | ||
Genomic expression profiling of mature soybean (Glycine max) pollen | Q33415391 | ||
Correlations between RNA and protein expression profiles in 23 human cell lines | Q33491311 | ||
An abundance of ubiquitously expressed genes revealed by tissue transcriptome sequence data | Q33518463 | ||
Genome-scale analysis and comparison of gene expression profiles in developing and germinated pollen in Oryza sativa | Q33589545 | ||
Signaling in pollen-pistil interactions | Q33707407 | ||
Global Gene Profiling of Laser-Captured Pollen Mother Cells Indicates Molecular Pathways and Gene Subfamilies Involved in Rice Meiosis | Q33722923 | ||
Proteomic analysis of Brassica stigmatic proteins following the self-incompatibility reaction reveals a role for microtubule dynamics during pollen responses | Q34010706 | ||
The origins of protein phosphorylation | Q34126615 | ||
Comprehensive analysis of tobacco pollen transcriptome unveils common pathways in polar cell expansion and underlying heterochronic shift during spermatogenesis | Q34160607 | ||
A membrane-anchored protein kinase involved in Brassica self-incompatibility signaling | Q34303332 | ||
Identification of genes specifically or preferentially expressed in maize silk reveals similarity and diversity in transcript abundance of different dry stigmas | Q34322507 | ||
Comparative proteomic analyses reveal the changes of metabolic features in soybean (Glycine max) pistils upon pollination | Q34411652 | ||
Gametophyte interaction and sexual reproduction: how plants make a zygote | Q34442490 | ||
The mechanisms of pollination and fertilization in plants | Q34762464 | ||
Performance characteristics of a new hybrid quadrupole time-of-flight tandem mass spectrometer (TripleTOF 5600). | Q35110278 | ||
Isolation and characterization of pollen coat proteins of Brassica campestris that interact with S locus-related glycoprotein 1 involved in pollen-stigma adhesion. | Q35122586 | ||
Gametophytic self-incompatibility inhibits pollen tube growth using different mechanisms | Q35601846 | ||
Pollen recognition and rejection during the sporophytic self-incompatibility response: Brassica and beyond | Q35601851 | ||
Species specificity in pollen-pistil interactions | Q35965993 | ||
A multidimensional chromatography technology for in-depth phosphoproteome analysis | Q36804698 | ||
Proteomics of pollen development and germination | Q36980647 | ||
Identification of the pollen self-incompatibility determinant in Papaver rhoeas | Q37234946 | ||
Diverse cell signalling pathways regulate pollen-stigma interactions: the search for consensus | Q37351888 | ||
P³DB 3.0: From plant phosphorylation sites to protein networks | Q37662014 | ||
A large-scale protein phosphorylation analysis reveals novel phosphorylation motifs and phosphoregulatory networks in Arabidopsis | Q38494335 | ||
Characterization of the phosphoproteome of mature Arabidopsis pollen. | Q38496919 | ||
Genome-wide gene expression profiling reveals conserved and novel molecular functions of the stigma in rice | Q38516058 | ||
Gene family analysis of the Arabidopsis pollen transcriptome reveals biological implications for cell growth, division control, and gene expression regulation. | Q38520376 | ||
Large-scale phosphorylation mapping reveals the extent of tyrosine phosphorylation in Arabidopsis. | Q39045929 | ||
Large-scale comparative phosphoproteomics identifies conserved phosphorylation sites in plants. | Q43064151 | ||
Microtubule regulation in mitosis: tubulin phosphorylation by the cyclin-dependent kinase Cdk1. | Q43225285 | ||
Exploiting maximal dependence decomposition to identify conserved motifs from a group of aligned signal sequences | Q43894059 | ||
Developmental transcriptional profiling reveals key insights into Triticeae reproductive development | Q44226367 | ||
α-tubulin is rapidly phosphorylated in response to hyperosmotic stress in rice and Arabidopsis | Q44429768 | ||
Rice expression atlas in reproductive development | Q44536218 | ||
Insights into the relation between mrna and protein expression patterns: II. Experimental observations in Escherichia coli | Q44715781 | ||
Analysis of the Nicotiana tabacum stigma/style transcriptome reveals gene expression differences between wet and dry stigma species | Q45044191 | ||
Whole genome analysis of gene expression reveals coordinated activation of signaling and metabolic pathways during pollen-pistil interactions in Arabidopsis | Q45207332 | ||
Trans-acting small RNA determines dominance relationships in Brassica self-incompatibility | Q45352661 | ||
Enabling proteomic studies with RNA-Seq: The proteome of tomato pollen as a test case | Q46083279 | ||
Increasing phosphoproteome coverage and identification of phosphorylation motifs through combination of different HPLC fractionation methods | Q46431514 | ||
Site-specific phosphorylation profiling of Arabidopsis proteins by mass spectrometry and peptide chip analysis | Q46629791 | ||
PCP-A1, a defensin-like Brassica pollen coat protein that binds the S locus glycoprotein, is the product of gametophytic gene expression | Q47674096 | ||
Large-scale Arabidopsis phosphoproteome profiling reveals novel chloroplast kinase substrates and phosphorylation networks | Q47985845 | ||
An aquaporin-like gene required for the Brassica self-incompatibility response | Q48048696 | ||
Cellular pathways regulating responses to compatible and self-incompatible pollen in Brassica and Arabidopsis stigmas intersect at Exo70A1, a putative component of the exocyst complex. | Q48067705 | ||
Endocytosis and endosomal regulation of the S-receptor kinase during the self-incompatibility response in Brassica oleracea | Q48069062 | ||
An F-box gene linked to the self-incompatibility (S) locus of Antirrhinum is expressed specifically in pollen and tapetum | Q48291704 | ||
The S-locus receptor kinase is inhibited by thioredoxins and activated by pollen coat proteins. | Q48376903 | ||
Differential display proteomic analysis of Picea meyeri pollen germination and pollen-tube growth after inhibition of actin polymerization by latrunculin B. | Q50478871 | ||
The brassica MIP-MOD gene encodes a functional water channel that is expressed in the stigma epidermis. | Q50717733 | ||
Isobaric tags for relative and absolute quantification- based comparative proteomics reveals the features of plasma membrane-associated proteomes of pollen grains and pollen tubes from Lilium davidii. | Q51894982 | ||
A dynamic gene expression atlas covering the entire life cycle of rice. | Q51920590 | ||
The pollen organelle membrane proteome reveals highly spatial-temporal dynamics during germination and tube growth of lily pollen. | Q51925268 | ||
The ARC1 E3 ligase gene is frequently deleted in self-compatible Brassicaceae species and has a conserved role in Arabidopsis lyrata self-pollen rejection. | Q54468186 | ||
A rice kinase-protein interaction map | Q57088355 | ||
P433 | issue | 20 | |
P304 | page(s) | 2319-2334 | |
P577 | publication date | 2014-09-08 | |
P1433 | published in | Proteomics | Q15614164 |
P1476 | title | Analysis of phosphoproteome in rice pistil | |
P478 | volume | 14 |
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