xenTro10 methylome studies SRP414632 Track Settings
 
Age-associated DNA methylation changes in Xenopus frogs [Hindlimb Webbing]

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Study title: Age-associated DNA methylation changes in Xenopus frogs
SRA: SRP414632
GEO: not found
Pubmed: not found

Experiment Label Methylation Coverage HMRs HMR size AMRs AMR size PMDs PMD size Conversion Details
SRX18837001 Hindlimb Webbing 0.741 5.5 24365 1310.8 527 880.1 874 11384.4 0.991 title: GSM6892192 Xen-1_OLD1, Xenopus tropicalis, Bisulfite-Seq; {"source_name": "hindlimb webbing", "tissue": "hindlimb webbing", "strain": "Xtr.Tg(eef1a1:GFP)KriegEf1a-GFP", "dev_stage": "OLD", "dob": "3/17/2011"}
SRX18837002 Hindlimb Webbing 0.774 5.6 24983 1256.1 282 845.7 631 12547.5 0.992 title: GSM6892193 Xen-2_OLD2, Xenopus tropicalis, Bisulfite-Seq; {"source_name": "hindlimb webbing", "tissue": "hindlimb webbing", "strain": "Xtr.Tg(eef1a1:GFP)KriegEf1a-GFP", "dev_stage": "OLD", "dob": "3/17/2011"}
SRX18837003 Hindlimb Webbing 0.786 5.4 26208 1322.8 171 894.9 814 13212.4 0.993 title: GSM6892194 Xen-3_OLD3, Xenopus tropicalis, Bisulfite-Seq; {"source_name": "hindlimb webbing", "tissue": "hindlimb webbing", "strain": "Xtr.Tg(eef1a1:GFP)KriegEf1a-GFP", "dev_stage": "OLD", "dob": "3/17/2011"}
SRX18837004 Hindlimb Webbing 0.808 7.4 31845 1194.4 110 933.4 1465 9232.3 0.993 title: GSM6892195 Xen-4_MID1, Xenopus tropicalis, Bisulfite-Seq; {"source_name": "hindlimb webbing", "tissue": "hindlimb webbing", "strain": "no privacy; Xtr.hps6n Grngr", "dev_stage": "MID", "dob": "2/25/2015"}
SRX18837005 Hindlimb Webbing 0.802 7.6 31356 1173.3 289 918.3 1639 8876.1 0.993 title: GSM6892196 Xen-5_MID2, Xenopus tropicalis, Bisulfite-Seq; {"source_name": "hindlimb webbing", "tissue": "hindlimb webbing", "strain": "Xtr.Tg(eef1a1:GFP)KriegEf1a-GFP", "dev_stage": "MID", "dob": "3/20/2015"}
SRX18837006 Hindlimb Webbing 0.791 6.8 34287 1172.2 151 869.9 1138 12463.1 0.993 title: GSM6892197 Xen-6_MID3, Xenopus tropicalis, Bisulfite-Seq; {"source_name": "hindlimb webbing", "tissue": "hindlimb webbing", "strain": "Xtr.Tg(eef1a1:GFP)KriegEf1a-GFP", "dev_stage": "MID", "dob": "3/20/2015"}
SRX18837007 Hindlimb Webbing 0.803 10.1 36108 1101.6 335 908.9 1458 9414.4 0.993 title: GSM6892198 Xen-7_YOUNG1, Xenopus tropicalis, Bisulfite-Seq; {"source_name": "hindlimb webbing", "tissue": "hindlimb webbing", "strain": "wt Nigerian St.549", "dev_stage": "YOUNG", "dob": "7/30/2019"}
SRX18837008 Hindlimb Webbing 0.803 9.3 35573 1064.6 357 881.4 1459 8990.7 0.993 title: GSM6892199 Xen-8_YOUNG2, Xenopus tropicalis, Bisulfite-Seq; {"source_name": "hindlimb webbing", "tissue": "hindlimb webbing", "strain": "wt Nigerian St.549", "dev_stage": "YOUNG", "dob": "7/3/2019"}
SRX18837009 Hindlimb Webbing 0.810 8.3 32442 1096.3 287 914.5 1618 8740.4 0.993 title: GSM6892200 Xen-9_YOUNG3, Xenopus tropicalis, Bisulfite-Seq; {"source_name": "hindlimb webbing", "tissue": "hindlimb webbing", "strain": "wt Nigerian St.549", "dev_stage": "YOUNG", "dob": "8/29/2019"}

Methods

All analysis was done using a bisulfite sequnecing data analysis pipeline DNMTools developed in the Smith lab at USC.

Mapping reads from bisulfite sequencing: Bisulfite treated reads are mapped to the genomes with the abismal program. Input reads are filtered by their quality, and adapter sequences in the 3' end of reads are trimmed. This is done with cutadapt. Uniquely mapped reads with mismatches/indels below given threshold are retained. For pair-end reads, if the two mates overlap, the overlapping part of the mate with lower quality is discarded. After mapping, we use the format command in dnmtools to merge mates for paired-end reads. We use the dnmtools uniq command to randomly select one from multiple reads mapped exactly to the same location. Without random oligos as UMIs, this is our best indication of PCR duplicates.

Estimating methylation levels: After reads are mapped and filtered, the dnmtools counts command is used to obtain read coverage and estimate methylation levels at individual cytosine sites. We count the number of methylated reads (those containing a C) and the number of unmethylated reads (those containing a T) at each nucleotide in a mapped read that corresponds to a cytosine in the reference genome. The methylation level of that cytosine is estimated as the ratio of methylated to total reads covering that cytosine. For cytosines in the symmetric CpG sequence context, reads from the both strands are collapsed to give a single estimate. Very rarely do the levels differ between strands (typically only if there has been a substitution, as in a somatic mutation), and this approach gives a better estimate.

Bisulfite conversion rate: The bisulfite conversion rate for an experiment is estimated with the dnmtools bsrate command, which computes the fraction of successfully converted nucleotides in reads (those read out as Ts) among all nucleotides in the reads mapped that map over cytosines in the reference genome. This is done either using a spike-in (e.g., lambda), the mitochondrial DNA, or the nuclear genome. In the latter case, only non-CpG sites are used. While this latter approach can be impacted by non-CpG cytosine methylation, in practice it never amounts to much.

Identifying hypomethylated regions (HMRs): In most mammalian cells, the majority of the genome has high methylation, and regions of low methylation are typically the interesting features. (This seems to be true for essentially all healthy differentiated cell types, but not cells of very early embryogenesis, various germ cells and precursors, and placental lineage cells.) These are valleys of low methylation are called hypomethylated regions (HMR) for historical reasons. To identify the HMRs, we use the dnmtools hmr command, which uses a statistical model that accounts for both the methylation level fluctations and the varying amounts of data available at each CpG site.

Partially methylated domains: Partially methylated domains are large genomic regions showing partial methylation observed in immortalized cell lines and cancerous cells. The pmd program is used to identify PMDs.

Allele-specific methylation: Allele-Specific methylated regions refers to regions where the parental allele is differentially methylated compared to the maternal allele. The program allelic is used to compute allele-specific methylation score can be computed for each CpG site by testing the linkage between methylation status of adjacent reads, and the program amrfinder is used to identify regions with allele-specific methylation.

For more detailed description of the methods of each step, please refer to the DNMTools documentation.