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A synteny conserved TATA binding protein 2-associated long intergenic non-coding RNA influences leaf development and
Byanka Sthefany Espinoza-López1, Jesús Nieto-Hernández1, Ángel Eduardo Quezada Eguía2
1Posgrado en Ciencias en Bioprocesos, Facultad de Ciencias Químicas, Universidad Autónoma de San Luis Potosí, Av. Dr. Salvador Nava Mtz. s/n, 78290, San Luis Potosí, México.
None:
Long non-coding RNAs are molecules with regulatory potential that are involved in many biological processes in plants. Despite their significant role, only a limited number has been studied in detail. Here, we describe at the molecular and bioinformatics levels a TBP2-associated long intergenic non-coding RNA (TALIR) encoded upstream of TATA-binding protein 2 (TBP2) in Arabidopsis thaliana. Downregulation of TALIR leads to plants with reduced leaf and rosette size, as well as decreased lateral root density. The expression of TBP2 in talir mutant lines was higher than in wild-type (WT), affecting the timing of expression of miR396 and GRF2, as well as miR156 and SPL9; these dysregulations may in part contribute to the altered leaf size observed. Transcriptional evidence from the TBP2 locus suggests the presence of a putative TALIR ortholog gene, which is conserved across the Brassicaceae, Eutremeae, and Camelineae tribes at the DNA sequence and synteny levels. Furthermore, TALIR is upregulated upon ABA and NaCl treatments in WT plants, while talir mutants exhibit insensitivity to ABA during germination. Together, these findings expand current knowledge of lncRNAs and provide new insights into the regulation of miR396 and miR156 in the control of leaf growth. Further, the evolutionary conservation of TALIR among tribes within the Brassicaceae family suggests a conserved functional role in this group of plants.
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