Pannaga Krishnamurthy

About Pannaga Krishnamurthy

Pannaga Krishnamurthy, With an exceptional h-index of 12 and a recent h-index of 11 (since 2020), a distinguished researcher at National University of Singapore, specializes in the field of Plant biology.

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

Arabidopsis class II TPS controls root development and confers salt stress tolerance through enhanced hydrophobic barrier deposition

All-organic transparent plant e-skin for noninvasive phenotyping

High-affinity potassium transporter from a mangrove tree Avicennia officinalis increases salinity tolerance of Arabidopsis thaliana

Nature-inspired synthetic oligourea foldamer channels allow water transport with high salt rejection

Rare alleles from tolerant cultivars are useful for generating salt-tolerant rice

WRKY9 transcription factor regulates cytochrome P450 genes CYP94B3 and CYP86B1, leading to increased root suberin and salt tolerance in Arabidopsis

Functional characterization and expression profiling of glyoxalase III genes in date palm grown under abiotic stresses

Regulation of a Cytochrome P450 Gene CYP94B1 by WRKY33 Transcription Factor Controls Apoplastic Barrier Formation in Roots to Confer Salt Tolerance

Pannaga Krishnamurthy Information

University

Position

Research Fellow

Citations(all)

1162

Citations(since 2020)

708

Cited By

682

hIndex(all)

12

hIndex(since 2020)

11

i10Index(all)

12

i10Index(since 2020)

11

Email

University Profile Page

Google Scholar

Pannaga Krishnamurthy Skills & Research Interests

Plant biology

Top articles of Pannaga Krishnamurthy

Arabidopsis class II TPS controls root development and confers salt stress tolerance through enhanced hydrophobic barrier deposition

Plant Cell Reports

2024/5

Bhushan Vishal
Bhushan Vishal

H-Index: 6

Pannaga Krishnamurthy
Pannaga Krishnamurthy

H-Index: 9

All-organic transparent plant e-skin for noninvasive phenotyping

Science Advances

2024/2/16

High-affinity potassium transporter from a mangrove tree Avicennia officinalis increases salinity tolerance of Arabidopsis thaliana

Plant Science

2023/11/1

Pannaga Krishnamurthy
Pannaga Krishnamurthy

H-Index: 9

Nature-inspired synthetic oligourea foldamer channels allow water transport with high salt rejection

Chem

2023/8/10

Rare alleles from tolerant cultivars are useful for generating salt-tolerant rice

Molecular Plant

2022/12/10

Pannaga Krishnamurthy
Pannaga Krishnamurthy

H-Index: 9

WRKY9 transcription factor regulates cytochrome P450 genes CYP94B3 and CYP86B1, leading to increased root suberin and salt tolerance in Arabidopsis

Physiologia Plantarum

2021/7

Pannaga Krishnamurthy
Pannaga Krishnamurthy

H-Index: 9

Bhushan Vishal
Bhushan Vishal

H-Index: 6

Amrit Bhal
Amrit Bhal

H-Index: 0

Functional characterization and expression profiling of glyoxalase III genes in date palm grown under abiotic stresses

Physiologia Plantarum

2021/6

Pannaga Krishnamurthy
Pannaga Krishnamurthy

H-Index: 9

Regulation of a Cytochrome P450 Gene CYP94B1 by WRKY33 Transcription Factor Controls Apoplastic Barrier Formation in Roots to Confer Salt Tolerance

Plant Physiology

2020/12/1

Pannaga Krishnamurthy
Pannaga Krishnamurthy

H-Index: 9

Bhushan Vishal
Bhushan Vishal

H-Index: 6

Regulation of AtKUP2 expression by bHLH and WRKY transcription factors helps to confer increased salt tolerance to Arabidopsis thaliana plants

Frontiers in Plant Science

2020/8/25

Pannaga Krishnamurthy
Pannaga Krishnamurthy

H-Index: 9

Regulation of CYP94B1 by WRKY33 controls apoplastic barrier formation in the roots leading to salt tolerance

bioRxiv

2020/8/10

Pannaga Krishnamurthy
Pannaga Krishnamurthy

H-Index: 9

Bhushan Vishal
Bhushan Vishal

H-Index: 6

Molecular Characterization of a Date Palm Vascular Highway 1-Interacting Kinase (PdVIK) under Abiotic Stresses

Genes

2020/5/19

See List of Professors in Pannaga Krishnamurthy University(National University of Singapore)

Co-Authors

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