Reconstruction of metabolic pathways, protein expression, and homeostasis machineries across maize bundle sheath and mesophyll chloroplasts: large-scale quantitative proteomics using the first maize genome assembly.
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Setaria viridis: a model for C4 photosynthesisThe path from C3 to C4 photosynthesisMultistep assembly of chloroplast NADH dehydrogenase-like subcomplex A requires several nucleus-encoded proteins, including CRR41 and CRR42, in ArabidopsisMaize proteomics: an insight into the biology of an important cereal cropABC1K atypical kinases in plants: filling the organellar kinase voidTransit peptide elements mediate selective protein targeting to two different types of chloroplasts in the single-cell C4 species Bienertia sinuspersiciHigh light-dependent phosphorylation of photosystem II inner antenna CP29 in monocots is STN7 independent and enhances nonphotochemical quenching.Plastid localization of the key carotenoid enzyme phytoene synthase is altered by isozyme, allelic variation, and activity.Starch biosynthesis in cassava: a genome-based pathway reconstruction and its exploitation in data integration.Freeze-quenched maize mesophyll and bundle sheath separation uncovers bias in previous tissue-specific RNA-Seq data.The antimycin A-sensitive pathway of cyclic electron flow: from 1963 to 2015.Developmental dynamics of Kranz cell transcriptional specificity in maize leaf reveals early onset of C4-related processesC4 cycles: past, present, and future research on C4 photosynthesis.Genome expression profile analysis reveals important transcripts in maize roots responding to the stress of heavy metal Pb.Characterizing regulatory and functional differentiation between maize mesophyll and bundle sheath cells by transcriptomic analysis.Strategies for engineering a two-celled C(4) photosynthetic pathway into rice.Adaptation of maize source leaf metabolism to stress related disturbances in carbon, nitrogen and phosphorus balance.Large-scale label-free quantitative proteomics of the pea aphid-Buchnera symbiosis.Genome-wide identification, evolution and expression analysis of mTERF gene family in maize.How do single cell C4 species form dimorphic chloroplasts?Factors affecting polyhydroxybutyrate accumulation in mesophyll cells of sugarcane and switchgrassIdentification of Photosynthesis-Associated C4 Candidate Genes through Comparative Leaf Gradient Transcriptome in Multiple Lineages of C3 and C4 Species.Dynamics of Chloroplast Translation during Chloroplast Differentiation in MaizeCorrelation of aquaporins and transmembrane solute transporters revealed by genome-wide analysis in developing maize leaf.The purification of the Chlamydomonas reinhardtii chloroplast ClpP complex: additional subunits and structural featuresComparative proteomics of chloroplasts envelopes from bundle sheath and mesophyll chloroplasts reveals novel membrane proteins with a possible role in c4-related metabolite fluxes and developmentC4 photosynthetic machinery: insights from maize chloroplast proteomics.Improvement of photosynthesis in rice (Oryza sativa L.) by inserting the C4 pathway.Exploring mechanisms linked to differentiation and function of dimorphic chloroplasts in the single cell C4 species Bienertia sinuspersici.Differences in photosynthetic responses of NADP-ME type C4 species to high light.Is RAF1 protein from Synechocystis sp. PCC 6803 really needed in the cyanobacterial Rubisco assembly process?Quantitative plant proteomics.Regulatory mechanisms underlying C4 photosynthesis.Plastid proteomics in higher plants: current state and future goals.Carbonic anhydrase and the molecular evolution of C4 photosynthesis.Getting the most out of natural variation in C4 photosynthesis.PPR-SMRs: ancient proteins with enigmatic functions.Cracking the Kranz enigma with systems biology.Dynamic Acclimation to High Light in Arabidopsis thaliana Involves Widespread Reengineering of the Leaf ProteomePloGO: plotting gene ontology annotation and abundance in multi-condition proteomics experiments.
P2860
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P2860
Reconstruction of metabolic pathways, protein expression, and homeostasis machineries across maize bundle sheath and mesophyll chloroplasts: large-scale quantitative proteomics using the first maize genome assembly.
description
2010 nî lūn-bûn
@nan
2010年の論文
@ja
2010年学术文章
@wuu
2010年学术文章
@zh
2010年学术文章
@zh-cn
2010年学术文章
@zh-hans
2010年学术文章
@zh-my
2010年学术文章
@zh-sg
2010年學術文章
@yue
2010年學術文章
@zh-hant
name
Reconstruction of metabolic pa ...... e first maize genome assembly.
@en
Reconstruction of metabolic pa ...... e first maize genome assembly.
@nl
type
label
Reconstruction of metabolic pa ...... e first maize genome assembly.
@en
Reconstruction of metabolic pa ...... e first maize genome assembly.
@nl
prefLabel
Reconstruction of metabolic pa ...... e first maize genome assembly.
@en
Reconstruction of metabolic pa ...... e first maize genome assembly.
@nl
P2093
P2860
P356
P1433
P1476
Reconstruction of metabolic pa ...... e first maize genome assembly.
@en
P2093
Giulia Friso
Klaas J van Wijk
Mingshu Huang
Wojciech Majeran
P2860
P304
P356
10.1104/PP.109.152694
P407
P577
2010-01-20T00:00:00Z