scholarly article | Q13442814 |
P50 | author | Dirk Inzé | Q2539349 |
Edoardo Bertolini | Q56056815 | ||
Luca Gianfranceschi | Q75236138 | ||
P2093 | author name string | Erica Mica | |
Mario Enrico Pè | |||
Wim Verelst | |||
Viviana Piccolo | |||
David Stephen Horner | |||
P2860 | cites work | Retracted: Small RNA duplexes function as mobile silencing signals between plant cells | Q50555663 |
The more and smaller cells mutants of Arabidopsis thaliana identify novel roles for SQUAMOSA PROMOTER BINDING PROTEIN-LIKE genes in the control of heteroblasty. | Q51826195 | ||
Evolution and diverse roles of the CUP-SHAPED COTYLEDON genes in Arabidopsis leaf development | Q51890721 | ||
PHO2, microRNA399, and PHR1 define a phosphate-signaling pathway in plants | Q53624117 | ||
Small Silencing RNAs in Plants Are Mobile and Direct Epigenetic Modification in Recipient Cells | Q56926901 | ||
pho2, a phosphate overaccumulator, is caused by a nonsense mutation in a microRNA399 target gene | Q63641826 | ||
Cell cycling and cell enlargement in developing leaves of Arabidopsis | Q73141903 | ||
Molecular evolution of the rice miR395 gene family | Q81103691 | ||
Specification of leaf polarity in Arabidopsis via the trans-acting siRNA pathway | Q83304554 | ||
Differential expression analysis for sequence count data | Q21184103 | ||
Bioconductor: open software development for computational biology and bioinformatics | Q21194861 | ||
The tomato genome sequence provides insights into fleshy fruit evolution | Q22122151 | ||
Genome sequencing and analysis of the model grass Brachypodium distachyon | Q22122196 | ||
MUSCLE: multiple sequence alignment with high accuracy and high throughput | Q24613456 | ||
Antiviral immunity directed by small RNAs | Q24656063 | ||
Classification of real and pseudo microRNA precursors using local structure-sequence features and support vector machine. | Q25256879 | ||
SOAP2: an improved ultrafast tool for short read alignment | Q28247469 | ||
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Modulation of floral development by a gibberellin-regulated microRNA | Q28269394 | ||
Food security: the challenge of feeding 9 billion people | Q28271670 | ||
Facile means for quantifying microRNA expression by real-time PCR | Q28277903 | ||
ggbio: an R package for extending the grammar of graphics for genomic data | Q28658419 | ||
Clusters and superclusters of phased small RNAs in the developing inflorescence of rice | Q28752065 | ||
High-throughput sequencing of Arabidopsis microRNAs: evidence for frequent birth and death of MIRNA genes | Q28763700 | ||
Improvement of phylogenies after removing divergent and ambiguously aligned blocks from protein sequence alignments | Q29547572 | ||
Control of leaf morphogenesis by microRNAs | Q29618435 | ||
The CUP-SHAPED COTYLEDON3 gene is required for boundary and shoot meristem formation in Arabidopsis | Q33338525 | ||
The TORNADO1 and TORNADO2 genes function in several patterning processes during early leaf development in Arabidopsis thaliana. | Q33342191 | ||
Control of cell proliferation in Arabidopsis thaliana by microRNA miR396. | Q33348386 | ||
TCP transcription factors regulate the activities of ASYMMETRIC LEAVES1 and miR164, as well as the auxin response, during differentiation of leaves in Arabidopsis | Q33350190 | ||
Leaf size control: complex coordination of cell division and expansion | Q33353158 | ||
Genome-wide identification, organization and phylogenetic analysis of Dicer-like, Argonaute and RNA-dependent RNA Polymerase gene families and their expression analysis during reproductive development and stress in rice | Q33372983 | ||
Regulation of small RNA accumulation in the maize shoot apex | Q33396968 | ||
Deep sequencing of Brachypodium small RNAs at the global genome level identifies microRNAs involved in cold stress response | Q33505863 | ||
Implementation of a de novo genome-wide computational approach for updating Brachypodium miRNAs. | Q33836387 | ||
microRNA172 down-regulates glossy15 to promote vegetative phase change in maize | Q33879100 | ||
Stars and symbiosis: microRNA- and microRNA*-mediated transcript cleavage involved in arbuscular mycorrhizal symbiosis | Q33899783 | ||
DRB4-dependent TAS3 trans-acting siRNAs control leaf morphology through AGO7. | Q33995683 | ||
Expression analysis suggests potential roles of microRNAs for phosphate and arbuscular mycorrhizal signaling in Solanum lycopersicum | Q34088455 | ||
22-Nucleotide RNAs trigger secondary siRNA biogenesis in plants | Q34093679 | ||
Massive analysis of rice small RNAs: mechanistic implications of regulated microRNAs and variants for differential target RNA cleavage | Q34096555 | ||
Breeding technologies to increase crop production in a changing world. | Q34098317 | ||
Genome-wide identification and analysis of drought-responsive microRNAs in Oryza sativa | Q34132584 | ||
MiR398 and plant stress responses | Q34178602 | ||
Dehydration stress-responsive miRNA in Brachypodium distachyon: evident by genome-wide screening of microRNAs expression. | Q34236411 | ||
Regulation of Leaf Morphology by MicroRNA394 and its Target LEAF CURLING RESPONSIVENESS | Q34276777 | ||
Sorting of small RNAs into Arabidopsis argonaute complexes is directed by the 5' terminal nucleotide | Q34308999 | ||
microRNAs associated with drought response in the bioenergy crop sugarcane (Saccharum spp.). | Q34447357 | ||
Posttranscriptional induction of two Cu/Zn superoxide dismutase genes in Arabidopsis is mediated by downregulation of miR398 and important for oxidative stress tolerance | Q34550260 | ||
Overexpressing a NAM, ATAF, and CUC (NAC) transcription factor enhances drought resistance and salt tolerance in rice | Q34559402 | ||
Conserved microRNAs and their targets in model grass species Brachypodium distachyon | Q34609681 | ||
Experimental design, preprocessing, normalization and differential expression analysis of small RNA sequencing experiments. | Q34662492 | ||
psRNATarget: a plant small RNA target analysis server | Q35075585 | ||
Cis-regulatory code of stress-responsive transcription in Arabidopsis thaliana | Q35202846 | ||
Cell identity regulators link development and stress responses in the Arabidopsis root | Q35477030 | ||
Tetraspanin Proteins Mediate Cellular Penetration, Invasion, and Fusion Events and Define a Novel Type of Membrane Microdomain | Q35564822 | ||
The short-term growth response to salt of the developing barley leaf | Q36412195 | ||
Post-transcriptional small RNA pathways in plants: mechanisms and regulations | Q36442928 | ||
Arabidopsis endogenous small RNAs: highways and byways | Q36558862 | ||
Gene networks involved in drought stress response and tolerance | Q36639430 | ||
Regulatory metabolic networks in drought stress responses | Q36806060 | ||
SeqMap: mapping massive amount of oligonucleotides to the genome | Q36924070 | ||
Characterization and expression profiles of miRNAs in rice seeds | Q37108418 | ||
Evolution of plant microRNAs and their targets | Q37172685 | ||
Sliced microRNA targets and precise loop-first processing of MIR319 hairpins revealed by analysis of the Physcomitrella patens degradome | Q37426596 | ||
Small RNAs and their roles in plant development. | Q37470177 | ||
Regulation and functional specialization of small RNA-target nodes during plant development | Q37584392 | ||
TCP genes: a family snapshot ten years later | Q37645120 | ||
Co-ordination of developmental processes by small RNAs during leaf development | Q37680543 | ||
The many roles of small RNAs in leaf development. | Q37695613 | ||
MicroRNAs with macro-effects on plant stress responses | Q37732592 | ||
Research on plant abiotic stress responses in the post-genome era: past, present and future | Q37735378 | ||
The biosynthetic pathways and biological scopes of plant small RNAs. | Q37738993 | ||
MicroRNA networks and developmental plasticity in plants | Q37861927 | ||
Genetic control of plant organ growth | Q37868646 | ||
Diverse Small Non-coding RNAs in RNA Interference Pathways | Q37900235 | ||
The Arabidopsis NFYA5 transcription factor is regulated transcriptionally and posttranscriptionally to promote drought resistance. | Q38288532 | ||
Global expression profiling of rice microRNAs by one-tube stem-loop reverse transcription quantitative PCR revealed important roles of microRNAs in abiotic stress responses | Q39455181 | ||
Developmental stage specificity and the role of mitochondrial metabolism in the response of Arabidopsis leaves to prolonged mild osmotic stress | Q39469811 | ||
Molecular and physiological analysis of growth-limiting drought stress in Brachypodium distachyon leaves | Q39546662 | ||
Over-expression of microRNA169 confers enhanced drought tolerance to tomato | Q39627449 | ||
Identification of drought-induced microRNAs in rice | Q39628436 | ||
Brachypodium as a model for the grasses: today and the future | Q39727015 | ||
MicroRNAs as master regulators of the plant NB-LRR defense gene family via the production of phased, trans-acting siRNAs. | Q39923825 | ||
Pattern formation via small RNA mobility. | Q41789044 | ||
Further analysis of XBAT32, an Arabidopsis RING E3 ligase, involved in ethylene biosynthesis | Q41827432 | ||
The UEA sRNA workbench: a suite of tools for analysing and visualizing next generation sequencing microRNA and small RNA datasets | Q42111154 | ||
Two small regulatory RNAs establish opposing fates of a developmental axis | Q42877245 | ||
The microRNA159-regulated GAMYB-like genes inhibit growth and promote programmed cell death in Arabidopsis. | Q42941277 | ||
A loop-to-base processing mechanism underlies the biogenesis of plant microRNAs miR319 and miR159. | Q42958295 | ||
Arabidopsis RING E3 ligase XBAT32 regulates lateral root production through its role in ethylene biosynthesis | Q43050611 | ||
DNA methylation mediated by a microRNA pathway | Q43104318 | ||
Quantitative trait loci affecting delta13C and response to differential water availibility in Arabidopsis thaliana | Q44558958 | ||
Novel and mechanical stress-responsive MicroRNAs in Populus trichocarpa that are absent from Arabidopsis | Q44862854 | ||
Long-distance signals regulating stomatal conductance and leaf growth in tomato (Lycopersicon esculentum) plants subjected to partial root-zone drying | Q45018126 | ||
Novel microRNAs uncovered by deep sequencing of small RNA transcriptomes in bread wheat (Triticum aestivum L.) and Brachypodium distachyon (L.) Beauv | Q45327445 | ||
Criteria for annotation of plant MicroRNAs | Q45753629 | ||
Identification and characterization of a novel miR159 target not related to MYB in tomato | Q46132839 | ||
Pause-and-stop: the effects of osmotic stress on cell proliferation during early leaf development in Arabidopsis and a role for ethylene signaling in cell cycle arrest | Q46269588 | ||
Construction of MicroRNA- and MicroRNA*-mediated regulatory networks in plants | Q46308472 | ||
Genome-wide analysis of the UDP-glucose dehydrogenase gene family in Arabidopsis, a key enzyme for matrix polysaccharides in cell walls | Q46868176 | ||
Novel characteristics of UDP-glucose dehydrogenase activities in maize: non-involvement of alcohol dehydrogenases in cell wall polysaccharide biosynthesis | Q46923836 | ||
The AtGRF family of putative transcription factors is involved in leaf and cotyledon growth in Arabidopsis | Q48228437 | ||
A local maximum in gibberellin levels regulates maize leaf growth by spatial control of cell division | Q49168780 | ||
P433 | issue | 2 | |
P921 | main subject | drought | Q43059 |
microRNA | Q310899 | ||
Brachypodium distachyon | Q2352209 | ||
leaf growth | Q121709490 | ||
P304 | page(s) | 423-443 | |
P577 | publication date | 2012-12-21 | |
P1433 | published in | Molecular Plant | Q10896805 |
P1476 | title | Addressing the role of microRNAs in reprogramming leaf growth during drought stress in Brachypodium distachyon | |
P478 | volume | 6 |
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Q36182462 | High-Throughput Sequencing Reveals H2O2 Stress-Associated MicroRNAs and a Potential Regulatory Network in Brachypodium distachyon Seedlings |
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