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Genome-wide identification of Thellungiella salsuginea microRNAs with putative roles in the salt stress response. | LitMetric

AI Article Synopsis

  • MicroRNAs (miRNAs) are crucial for plant growth and help in adapting to environmental stresses, particularly in the salt-tolerant plant Thellungiella salsuginea (salt cress), which has been little studied in this regard.
  • The researchers sequenced small RNA libraries from T. salsuginea, identifying 109 known miRNAs and 137 novel miRNA candidates, with a significant portion related to salt stress tolerance and target mRNAs involved in key functions such as transcription and defense.
  • The findings suggest that various miRNAs in T. salsuginea respond to salt stress, indicating their potential role in enhancing the plant's ability to cope with high salinity environments.

Article Abstract

Background: MicroRNAs are key regulators of plant growth and development with important roles in environmental adaptation. The microRNAs from the halophyte species Thellungiella salsuginea (salt cress), which exhibits extreme salt stress tolerance, remain to be investigated. The sequenced genome of T. salsuginea and the availability of high-throughput sequencing technology enabled us to discover the conserved and novel miRNAs in this plant species. It is interesting to identify the microRNAs from T. salsuginea genome wide and study their roles in salt stress response.

Results: In this study, two T. salsuginea small RNA libraries were constructed and sequenced using Solexa technology. We identified 109 miRNAs that had previously been reported in other plant species. A total of 137 novel miRNA candidates were identified, among which the miR* sequence of 26 miRNAs was detected. In addition, 143 and 425 target mRNAs were predicted for the previously identified and Thellungiella-specific miRNAs, respectively. A quarter of these putative targets encode transcription factors. Furthermore, numerous signaling factor encoding genes, defense-related genes, and transporter encoding genes were amongst the identified targets, some of which were shown to be important for salt tolerance. Cleavage sites of seven target genes were validated by 5' RACE, and some of the miRNAs were confirmed by qRT-PCR analysis. The expression levels of 26 known miRNAs in the roots and leaves of plants subjected to NaCl treatment were determined by Affymetrix microarray analysis. The expression of most tested miRNA families was up- or down-regulated upon NaCl treatment. Differential response patterns between the leaves and roots were observed for these miRNAs.

Conclusions: Our results indicated that diverse set of miRNAs of T. salsuginea were responsive to salt stress and could play an important role in the salt stress response.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4225614PMC
http://dx.doi.org/10.1186/1471-2229-13-180DOI Listing

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