Abnormal physiological and molecular mutant phenotypes link chloroplast polynucleotide phosphorylase to the phosphorus deprivation response in Arabidopsis.
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Crystal structure of Caulobacter crescentus polynucleotide phosphorylase reveals a mechanism of RNA substrate channelling and RNA degradosome assembly.Unexpected Diversity of Chloroplast Noncoding RNAs as Revealed by Deep Sequencing of the Arabidopsis TranscriptomePhysiological and comparative proteome analyses reveal low-phosphate tolerance and enhanced photosynthesis in a maize mutant owing to reinforced inorganic phosphate recycling.Complementary proteome and transcriptome profiling in phosphate-deficient Arabidopsis roots reveals multiple levels of gene regulation.Discriminative gene co-expression network analysis uncovers novel modules involved in the formation of phosphate deficiency-induced root hairs in Arabidopsis.Responses of root architecture development to low phosphorus availability: a reviewRarely at rest: RNA helicases and their busy contributions to RNA degradation, regulation and quality control.Chloroplast RNase J compensates for inefficient transcription termination by removal of antisense RNA.Systematic analysis of plant mitochondrial and chloroplast small RNAs suggests organelle-specific mRNA stabilization mechanisms.RNase J participates in a pentatricopeptide repeat protein-mediated 5' end maturation of chloroplast mRNAs.Overaccumulation of the chloroplast antisense RNA AS5 is correlated with decreased abundance of 5S rRNA in vivo and inefficient 5S rRNA maturation in vitro.Organ-specific phosphorus-allocation patterns and transcript profiles linked to phosphorus efficiency in two contrasting wheat genotypes.Strand-specific RNA sequencing uncovers chloroplast ribonuclease functions.Ribonuclease II preserves chloroplast RNA homeostasis by increasing mRNA decay rates, and cooperates with polynucleotide phosphorylase in 3' end maturation.Lipid biosynthesis and protein concentration respond uniquely to phosphate supply during leaf development in highly phosphorus-efficient Hakea prostrata.The function of RH22, a DEAD RNA helicase, in the biogenesis of the 50S ribosomal subunits of Arabidopsis chloroplasts.Mutational analysis of Arabidopsis chloroplast polynucleotide phosphorylase reveals roles for both RNase PH core domains in polyadenylation, RNA 3'-end maturation and intron degradation.
P2860
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P2860
Abnormal physiological and molecular mutant phenotypes link chloroplast polynucleotide phosphorylase to the phosphorus deprivation response in Arabidopsis.
description
2009 nî lūn-bûn
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2009年の論文
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2009年学术文章
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name
Abnormal physiological and mol ...... ation response in Arabidopsis.
@en
Abnormal physiological and mol ...... ation response in Arabidopsis.
@nl
type
label
Abnormal physiological and mol ...... ation response in Arabidopsis.
@en
Abnormal physiological and mol ...... ation response in Arabidopsis.
@nl
prefLabel
Abnormal physiological and mol ...... ation response in Arabidopsis.
@en
Abnormal physiological and mol ...... ation response in Arabidopsis.
@nl
P2093
P2860
P356
P1433
P1476
Abnormal physiological and mol ...... ation response in Arabidopsis.
@en
P2093
Aaron Fait
Chloe Marchive
David B Stern
Joshua Judkins
Shlomit Yehudai-Resheff
Xingshan Jiang
Zhangjun Fei
P2860
P304
P356
10.1104/PP.109.145144
P407
P577
2009-08-26T00:00:00Z