lncRNAs involved in the Shade Avoidance Syndrome (SAS) in Arabidopsis thaliana.
Creators
- 1. Unidad de Genómica Avanzada, Cinvestav, Irapuato, 36824, Guanajuato, México.
- 2. Laboratorio de Ciencias Agrogenómicas, Escuela Nacional de Estudios Superiores Unidad León, Universidad Nacional Autónoma de México, León, 37684, Guanajuato, México.
- 3. National Autonomous University of Mexico
- 4. Laboratorio Nacional PlanTECC, Escuela Nacional de Estudios Superiores Unidad León, Universidad Nacional Autónoma de México, León, Guanajuato, 37684, México.
- 5. Unidad de Genómica Avanzada, Cinvestav, Irapuato, 36824, Guanajuato, México. stewart.gillmor@cinvestav.mx.
- 6. School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, NSW, 2052, Australia. s.fernandez_valverde@unsw.edu.au.
- 7. University of New South Wales
- 8. UNSW RNA Institute, The University of New South Wales, Sydney, NSW, 2052, Australia. s.fernandez_valverde@unsw.edu.au.
- 9. Evolution & Ecology Research Centre, The University of New South Wales, Sydney, NSW, 2052, Australia. s.fernandez_valverde@unsw.edu.au.
Description
Plant long non-coding RNAs (lncRNAs) have important regulatory roles in responses to various biotic and abiotic stresses, including light quality. However, no lncRNAs have been specifically linked to the Shade Avoidance Response (SAS).
To better understand the involvement of lncRNAs in shade avoidance, we examined RNA-seq libraries for lncRNAs with the potential to function in the neighbor proximity phenomenon in Arabidopsis thaliana (A. thaliana). Using transcriptomes generated from seedlings exposed to high and low red/far-red (R/FR) light conditions, we identified 13 lncRNA genes differentially expressed in cotyledons and 138 in hypocotyls. To infer possible functions for these lncRNAs, we used a 'guilt-by-association' approach to identify genes co-expressed with lncRNAs in a weighted gene co-expression network. Of 34 co-expression modules, 10 showed biological functions related to differential growth. We identified three potential lncRNAs co-regulated with genes related to SAS. T-DNA insertions in two of these lncRNAs were correlated with morphological differences in seedling responses to increased FR light, supporting our strategy for computational identification of lncRNAs involved in SAS.
Using a computational approach, we identified multiple lncRNAs in Arabidopsis involved in SAS. T-DNA insertions caused altered phenotypes under low R/FR light, suggesting functional roles in shade avoidance. Further experiments are needed to determine the specific mechanisms of these lncRNAs in SAS.
© 2024. The Author(s).
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Publication Details
Journal article
Journal:
BMC genomics
Publisher:
Springer Science and Business Media LLC
ISSN:
14712164
Volume:
25
Pages:
802
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References
Heo JB, Sung S. Vernalization-mediated epigenetic silencing by a long intronic n...
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Zhao X, Li J, Lian B, Gu H, Li Y, Qi Y. Global identification of Arabidopsis lnc...
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Chen M, Wang C, Bao H, Chen H, Wang Y. Genome-wide identification and characteri...
Read more
Ariel F, Jegu T, Latrasse D, Romero-Barrios N, Christ A, Benhamed M, et al. Nonc...
Read more
Wang Y, Luo X, Sun F, Hu J, Zha X, Su W, et al. Overexpressing lncRNA LAIR incre...
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Consejo Nacional de Ciencia y Tecnología