AI Article Synopsis

  • The forage crop Guar shows resilience to heat, drought, and mild salinity, making its genetic study crucial for understanding stress tolerance mechanisms.
  • A comprehensive mRNA sequencing using RNA-Seq technology generated around 193.5 million high-quality paired-end reads, leading to the assembly of over 161,000 transcripts and identification of 61,508 putative genes.
  • This transcriptomic data includes extensive functional classifications and profiles, facilitating advanced research into Guar's multi-stress tolerance capabilities.

Article Abstract

The forage crop Guar ( (L.) Taub.) has the ability to endure heat, drought, and mild salinity. A complete image on its genic architecture will promote our understanding about gene expression networks and different tolerance mechanisms at the molecular level. Therefore, whole mRNA sequence approach on the Guar plant was conducted to provide a snapshot of the mRNA information in the cell under salinity, heat, and drought stresses to be integrated with previous transcriptomic studies. RNA-Seq technology was employed to perform a 2 × 100 paired-end sequencing using an Illumina HiSeq 2500 platform for the transcriptome of leaves of under normal, heat, drought, and salinity conditions. Trinity was used to achieve a assembly followed by gene annotation, functional classification, metabolic pathway analysis, and identification of SSR markers. A total of 218.2 million paired-end raw reads (~44 Gbp) were generated. Of those, 193.5M paired-end reads of high quality were used to reconstruct a total of 161,058 transcripts (~266 Mbp) with N50 of 2552 bp and 61,508 putative genes. There were 6463 proteins having >90% full-length coverage against the Swiss-Prot database and 94% complete orthologs against Embryophyta. Approximately, 62.87% of transcripts were blasted, 50.46% mapped, and 43.50% annotated. A total of 4715 InterProScan families, 3441 domains, 74 repeats, and 490 sites were detected. Biological processes, molecular functions, and cellular components comprised 64.12%, 25.42%, and 10.4%, respectively. The transcriptome was associated with 985 enzymes and 156 KEGG pathways. A total of 27,066 SSRs were gained with an average frequency of one SSR/9.825 kb in the assembled transcripts. This resulting data will be helpful for the advanced analysis of Guar to multi-stress tolerance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6800914PMC
http://dx.doi.org/10.1155/2019/7295859DOI Listing

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