Dae Kwan Ko

Dae Kwan Ko

Michigan State University

H-index: 9

North America-United States

About Dae Kwan Ko

Dae Kwan Ko, With an exceptional h-index of 9 and a recent h-index of 8 (since 2020), a distinguished researcher at Michigan State University, specializes in the field of Network Biology, Plant Systems Biology, Genomics, Plant Biology.

His recent articles reflect a diverse array of research interests and contributions to the field:

Transcriptome analysis revealed that Arabidopsis model plant invokes the activation of heat shock proteins and ER stress response against cesium stress

Dynamics of ER stress-induced gene regulation in plants

Multi-omics Resources for Understanding Gene Regulation in Response to ER Stress in Plants

Defense against phytopathogens relies on efficient antimicrobial protein secretion mediated by the microtubule-binding protein TGNap1

An IRE1-proteasome system signalling cohort controls cell fate determination in unresolved proteotoxic stress of the plant endoplasmic reticulum

Coexpression network construction and visualization from transcriptomes underlying ER stress responses

Transcriptional competition shapes proteotoxic ER stress resolution

Advanced genomics identifies growth effectors for proteotoxic ER stress recovery in Arabidopsis thaliana

Dae Kwan Ko Information

University

Position

___

Citations(all)

400

Citations(since 2020)

346

Cited By

148

hIndex(all)

9

hIndex(since 2020)

8

i10Index(all)

9

i10Index(since 2020)

8

Email

University Profile Page

Google Scholar

Dae Kwan Ko Skills & Research Interests

Network Biology

Plant Systems Biology

Genomics

Plant Biology

Top articles of Dae Kwan Ko

Transcriptome analysis revealed that Arabidopsis model plant invokes the activation of heat shock proteins and ER stress response against cesium stress

Plant Biotechnology Reports

2024/4/4

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

Dynamics of ER stress-induced gene regulation in plants

2024/3/18

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

Multi-omics Resources for Understanding Gene Regulation in Response to ER Stress in Plants

2024/2/28

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

Defense against phytopathogens relies on efficient antimicrobial protein secretion mediated by the microtubule-binding protein TGNap1

Nature Communications

2023/10/11

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

An IRE1-proteasome system signalling cohort controls cell fate determination in unresolved proteotoxic stress of the plant endoplasmic reticulum

Nature plants

2023/8

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

Coexpression network construction and visualization from transcriptomes underlying ER stress responses

2022/11/23

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

Transcriptional competition shapes proteotoxic ER stress resolution

Nature plants

2022/5

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

Advanced genomics identifies growth effectors for proteotoxic ER stress recovery in Arabidopsis thaliana

Communications Biology

2022/1/11

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

Bioenergy Underground: Challenges and opportunities for phenotyping roots and the microbiome for sustainable bioenergy crop production

2022

Amandine Germon
Amandine Germon

H-Index: 7

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

Relevance of the Unfolded Protein Response to Spaceflight-Induced Transcriptional Reprogramming in Arabidopsis

Astrobiology

2021/3/1

Evan Angelos
Evan Angelos

H-Index: 6

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

A temporal hierarchy underpins the transcription factor‐DNA interactome of the maize UPR

The Plant Journal

2021/1

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

First plant cell atlas workshop report

Plant Direct

2020/10

Network‐based approaches for understanding gene regulation and function in plants

2020/10

Dae Kwan Ko
Dae Kwan Ko

H-Index: 6

Functional diversification of ER stress responses in Arabidopsis

2020/2/1

See List of Professors in Dae Kwan Ko University(Michigan State University)

Co-Authors

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