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dc.contributor.authorMillar, Anthony*
dc.date.accessioned2021-02-12T02:28:10Z
dc.date.available2021-02-12T02:28:10Z
dc.date.issued2020*
dc.date.submitted2020-06-09 16:38:57*
dc.identifier46130*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/58591
dc.description.abstractDiscovered in plants at the turn of the century, microRNAs (miRNAs) have been found to be fundamental to many aspects of plant biology. These small (20–24 nt) regulatory RNAs are derived via processing from longer imperfect double-stranded RNAs. They are then incorporated into silencing complexes, which they guide to (m)RNAs of high sequence complementarity, resulting in gene silencing outcomes, either via RNA degradation and/or translational inhibition. Some miRNAs are ancient, being present in all species of land plants and controlling fundamental processes such as phase change, organ polarity, flowering, and leaf and root development. However, there are many more miRNAs that are much less conserved and with less understood functions. This Special Issue contains seven research papers that span from understanding the function of a single miRNA family to examining how the miRNA profiles alter during abiotic stress or nutrient deficiency. The possibility of circular RNAs in plants acting as miRNA decoys to inhibit miRNA function is investigated, as was the hierarchical roles of miRNA biogenesis factors in the maintenance of phosphate homeostasis. Three reviews cover the potential of miRNAs for agronomic improvement of maize, the role of miRNA-triggered secondary small RNAs in plants, and the potential function of an ancient plant miRNA.*
dc.languageEnglish*
dc.subjectQH301-705.5*
dc.subjectQ1-390*
dc.subjectTX341-641*
dc.subject.classificationthema EDItEUR::P Mathematics and Science::PS Biology, life sciencesen_US
dc.subject.othermicroRNAs*
dc.subject.otherabiotic stress*
dc.subject.otherArabidopsis thaliana*
dc.subject.otherheat stress*
dc.subject.otherphotosynthesis*
dc.subject.othermaize (Zea mays L.)*
dc.subject.otherimmunoprecipitation*
dc.subject.othertapetum*
dc.subject.otherresurrection plants*
dc.subject.otherplastocyanin*
dc.subject.otherdehydration*
dc.subject.otherTripogon loliiformis*
dc.subject.othersecondary siRNA*
dc.subject.otherRT-qPCR*
dc.subject.otherputrescine*
dc.subject.otherDRB2*
dc.subject.otherphosphate (PO4) stress*
dc.subject.otherargonaute*
dc.subject.otherdevelopment*
dc.subject.othermiR399-directed PHO2 expression regulation*
dc.subject.othercircRNA*
dc.subject.otherSolanum lycopersicum*
dc.subject.othercopper deficiency*
dc.subject.othersalt stress*
dc.subject.otherDOUBLE-STRANDED RNA BINDING (DRB) proteins DRB1*
dc.subject.otherP5CS*
dc.subject.otherproline*
dc.subject.otherphasiRNA*
dc.subject.otherdrought stress*
dc.subject.otheragronomic traits*
dc.subject.otherColorado potato beetle*
dc.subject.otherCu-microRNA*
dc.subject.otherplant*
dc.subject.othermiR171*
dc.subject.otherSTTM*
dc.subject.otheraleurone*
dc.subject.otherPHOSPHATE2 (PHO2)*
dc.subject.othervegetative growth*
dc.subject.othernutrient availability*
dc.subject.othermiRNAs*
dc.subject.othernon-coding RNA*
dc.subject.otherpollen*
dc.subject.othertomato*
dc.subject.otherflowering*
dc.subject.othercrop improvement*
dc.subject.othercallose*
dc.subject.othermiRNA target gene expression*
dc.subject.othercircular RNAs*
dc.subject.othermiRNA*
dc.subject.otherprogrammed cell death*
dc.subject.otherDRB4*
dc.subject.othermicroRNA (miRNA)*
dc.subject.othertarget mimicry*
dc.subject.otherMYB transcription factors*
dc.subject.otherpost-transcriptional gene silencing*
dc.subject.otherdesiccation*
dc.subject.othermiR399*
dc.subject.othermiR159*
dc.subject.othercopper protein*
dc.subject.otherdrought*
dc.subject.othermicroRNAs (miRNAs)*
dc.subject.othermicroRNA*
dc.subject.otherGAMYB*
dc.subject.othertasiRNA*
dc.subject.otherphosphorous (P)*
dc.titleThe Role of MicroRNAs in Plants*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03928-731-4*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039287307*
oapen.relation.isbn9783039287314*
oapen.pages174*
oapen.edition1st*


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