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Transcriptome analysis of roots, fruits and leaves of pepper about the cadmium absorption and transportation
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创建时间:
2018-09-27
相关数据集
Additional file 1: of Genome-wide analysis of long non-coding RNAs affecting roots development at an early stage in the rice response to cadmium stress
Table S1. Differentially expressed lncRNAs in response to Cd stress in root libraries. The log2(foldchange) value is positive and native mean that the gene is up-regulated and down-regulated in the CK
NIAID Data Ecosystem80
Additional file 3 of Comparative transcriptome analysis between two different cadmium-accumulating genotypes of soybean (Glycine max) in response to cadmium stress
Supplementary Material 3.
Figshare2024-08-15 更新60
Additional file 11: of Comparative transcriptome analysis revealed key factors for differential cadmium transport and retention in roots of two contrasting peanut cultivars
Table S9. The analysis of DEGs in FCd/SCd with an FPKM value ≥10 in at least one of four cDNA libraries and |log2 (FCd/SCd)| ≥ 3. (XLSX 41 kb)
NIAID Data Ecosystem60
Brassica napus Raw sequence reads. Brassica napus
MicroRNAs (miRNAs) have important roles in regulating stress-response genes in plants. However, identification of miRNAs and the corresponding target genes that are induced in response to cadmium (Cd)
NIAID Data Ecosystem60
Additional file 9: Dataset 3. of Co-expression network analysis of the transcriptomes of rice roots exposed to various cadmium stresses reveals universal cadmium-responsive genes
Four DEGs datasets (MCd1 vs ck0, MCdD vs ck0, Cd24h vs ck24h, Cd1h vs ck1h) output by limma package. (XLS 1903Â kb)
Figshare2017-11-08 更新60



