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An Efficient Method for the Isolation of Highly Purified RNA from Seeds for Use in Quantitative Transcriptome Analysis
Published on: January 11, 2017
Temporal and genotype-dependent transcriptomic responses to cold treatment and recovery in winter rapeseed (Brassica
Yifan Wang1, Yuanyuan Zhang1, Shiyi Li1
1State Key Laboratory of Aridland Crop Science, College of Agronomy, Gansu Agricultural University, Lanzhou, China.
Abstract:
Winter rapeseed (Brassica rapa L.) is exposed to recurrent low-temperature episodes, yet cultivar differences and reference-genome choice can complicate the interpretation of transcriptomic variation. Here, we reanalyzed 24 growth-point RNA-seq samples from the cold-tolerant cultivar 'Longyou-7' and the cold-sensitive cultivar 'Lenox' under control conditions (CK), after 3 and 24 h at 4 °C, and after 24 h of recovery at 22 °C. Transcriptome analysis was performed using the chromosome-level Longyou-7 reference genome and compared with results obtained using Chiifu v1.5. Functional analyses revealed stage-dependent transcriptional changes involving photosynthesis, lipid metabolism, hormone signaling, circadian regulation, sulfur and amino acid metabolism, and other stress-related processes. Glutathione metabolism was represented among the top-ranked pathways in several within-genotype contrasts, and genotype-specific co-expression networks linked glutathione-related transcription with antioxidant enzyme activities, soluble sugar, and ROS-associated traits. Biochemical measurements further showed stage-dependent changes in GSH and GSSG contents and GST activity, with 'Longyou-7' maintaining a higher GSH/GSSG ratio and higher GST activity than 'Lenox' during cold treatment. qRT-PCR analysis of 22 candidate genes showed overall concordance with RNA-seq (R² = 0.736), and 17 candidates contained conserved GST_N and GST_C domains, including nine Tau and eight Phi GSTs. Relative to Chiifu v1.5, the Longyou-7 reference increased uniquely mapped read rates by 1.28-1.69 percentage points in Longyou-7 samples, whereas differences in 'Lenox' ranged from -0.26 to 0.30 percentage points, while shared DEG responses remained highly concordant between the two reference backgrounds. Together, these results reveal stage-dependent transcriptional and biochemical adjustment during cold treatment and recovery and identify GSH/GST-related genes as candidates for further functional analysis in winter rapeseed.
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