[HTML][HTML] Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey, A Riddihough… - Genome biology, 2020 - Springer
Background Zebrafish can faithfully regenerate injured fins through the formation of a
blastema, a mass of proliferative cells that can grow and develop into the lost body part. After …

[PDF][PDF] Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey, A Riddihough… - 2020 - scholar.archive.org
Background: Zebrafish can faithfully regenerate injured fins through the formation of a
blastema, a mass of proliferative cells that can grow and develop into the lost body part. After …

Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey… - Genome …, 2020 - search.proquest.com
Background Zebrafish can faithfully regenerate injured fins through the formation of a
blastema, a mass of proliferative cells that can grow and develop into the lost body part. After …

[HTML][HTML] Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey… - Genome …, 2020 - genomebiology.biomedcentral.com
Zebrafish can faithfully regenerate injured fins through the formation of a blastema, a mass
of proliferative cells that can grow and develop into the lost body part. After amputation …

[引用][C] Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey… - Genome Biology …, 2020 - jglobal.jst.go.jp
Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA
methylation and dynamic chromatin accessibility | Article Information | J-GLOBAL Art J-GLOBAL …

Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey, A Riddihough… - Genome …, 2020 - go.gale.com
Background Zebrafish can faithfully regenerate injured fins through the formation of a
blastema, a mass of proliferative cells that can grow and develop into the lost body part. After …

Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey, A Riddihough… - Genome …, 2020 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: sec>< jats: title> Background</jats: title>< jats: p>
Zebrafish can faithfully regenerate injured fins through the formation of a blastema, a mass …

Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey, A Riddihough… - Genome …, 2020 - profiles.wustl.edu
Background: Zebrafish can faithfully regenerate injured fins through the formation of a
blastema, a mass of proliferative cells that can grow and develop into the lost body part. After …

Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey… - Genome …, 2020 - pubmed.ncbi.nlm.nih.gov
Background Zebrafish can faithfully regenerate injured fins through the formation of a
blastema, a mass of proliferative cells that can grow and develop into the lost body part. After …

[引用][C] Regenerating zebrafish fin epigenome is characterized by stable lineage-specific DNA methylation and dynamic chromatin accessibility

HJ Lee, Y Hou, Y Chen, ZZ Dailey, A Riddihough… - 2020