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Bakirbas, A.

Publications and source records attributed to Bakirbas, A..

2 recordsLinked to original sources

The small RNA component of Arabidopsis phloem sap and its response to iron deficiency.

In order to discover sRNA that might function during iron deficiency stress, RNA was prepared from phloem exudates of Arabidopsis thaliana. Bioanalyzer results indicate that abundant RNA from phloem is small in size--less than 200 nt. Moreover, typical rRNA bands were not observed. Sequencing of eight independent phloem RNA samples indicated that that tRNA-derived fragments, specifically 5 tRFs and 5 tRNA halves, are highly abundant in phloem sap, comprising about 46% of all reads. In addition, a set of miRNAs that are present in phloem sap was defined, and several miRNA and sRNAs were identified that are differentially expressed during iron deficiency. HighlightPreparation of RNA from Arabidopsis phloem sap revealed that O_LImost of the RNA is small (less than 200 nt) C_LIO_LItRNA fragments (tRFs) are highly abundant C_LIO_LIa set of miRNAs present in phloem sap can be defined C_LI

plant biology↗

CAN OF SPINACH, a novel long non-coding RNA, affects iron deficiency responses in Arabidopsis thaliana

Long non-coding RNAs (lncRNAs) are RNA molecules with functions independent of any protein-coding potential. A whole transcriptome (RNA-seq) study of Arabidopsis shoots under iron sufficient and deficient conditions was carried out to determine the genes that are iron-regulated in the shoots. We identified two previously unannotated transcripts on chromosome 1 that are significantly iron-regulated. We have called this iron-regulated lncRNA, CAN OF SPINACH (COS). cos mutants have altered iron levels in leaves and seeds. Despite the low iron levels in the leaves, cos mutants have higher chlorophyll levels than WT plants. Moreover, cos mutants have abnormal development during iron deficiency. Roots of cos mutants are longer than those of WT plants, when grown on iron deficient medium. In addition, cos mutant plants accumulate singlet oxygen during iron deficiency. The mechanism through which COS affects iron deficiency responses is unclear, but small regions of sequence similarity to several genes involved in iron deficiency responses occur in COS, and small RNAs from these regions have been detected. We hypothesize that COS is required for normal adaptation to iron deficiency conditions.

plant biology↗