Takashi Hirayama

About Takashi Hirayama

Takashi Hirayama, With an exceptional h-index of 50 and a recent h-index of 30 (since 2020), a distinguished researcher at Okayama University, specializes in the field of Plant stress response, Plant hormone response, Singnal transduction.

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

Exome-wide variation in a diverse barley panel reveals genetic associations with ten agronomic traits in Eastern landraces

Plant hormonomics: a key tool for deep physiological phenotyping to improve crop productivity

FE UPTAKE‐INDUCING PEPTIDE1 maintains Fe translocation by controlling Fe deficiency response genes in the vascular tissue of Arabidopsis

PARN-like Proteins regulate gene expression in land plant mitochondria by modulating mRNA polyadenylation

Genetic elucidation for response of flowering time to ambient temperatures in Asian rice cultivars

Temperature-dependent fasciation mutants provide a link between mitochondrial RNA processing and lateral root morphogenesis

Regulation of the poly (A) status of mitochondrial mRNA by poly (A)-specific ribonuclease is conserved among land plants

Hormonal and transcriptional analyses of fruit development and ripening in different varieties of black pepper (Piper nigrum)

Takashi Hirayama Information

University

Position

IPSR .

Citations(all)

13932

Citations(since 2020)

4460

Cited By

11185

hIndex(all)

50

hIndex(since 2020)

30

i10Index(all)

74

i10Index(since 2020)

57

Email

University Profile Page

Google Scholar

Takashi Hirayama Skills & Research Interests

Plant stress response

Plant hormone response

Singnal transduction

Top articles of Takashi Hirayama

Exome-wide variation in a diverse barley panel reveals genetic associations with ten agronomic traits in Eastern landraces

Journal of Genetics and Genomics

2023/4/1

Takashi Hirayama
Takashi Hirayama

H-Index: 28

Plant hormonomics: a key tool for deep physiological phenotyping to improve crop productivity

2022/12/1

Takashi Hirayama
Takashi Hirayama

H-Index: 28

FE UPTAKE‐INDUCING PEPTIDE1 maintains Fe translocation by controlling Fe deficiency response genes in the vascular tissue of Arabidopsis

Plant, cell & environment

2022/11

PARN-like Proteins regulate gene expression in land plant mitochondria by modulating mRNA polyadenylation

2021/10/5

Takashi Hirayama
Takashi Hirayama

H-Index: 28

Genetic elucidation for response of flowering time to ambient temperatures in Asian rice cultivars

International journal of molecular sciences

2021/1/20

Takashi Hirayama
Takashi Hirayama

H-Index: 28

Temperature-dependent fasciation mutants provide a link between mitochondrial RNA processing and lateral root morphogenesis

Elife

2021/1/14

Regulation of the poly (A) status of mitochondrial mRNA by poly (A)-specific ribonuclease is conserved among land plants

Plant and Cell Physiology

2020/3

Ryuichi Nishihama
Ryuichi Nishihama

H-Index: 30

Takashi Hirayama
Takashi Hirayama

H-Index: 28

Hormonal and transcriptional analyses of fruit development and ripening in different varieties of black pepper (Piper nigrum)

2020/2/21

BdWRKY38 is required for the incompatible interaction of Brachypodium distachyon with the necrotrophic fungus Rhizoctonia solani

The Plant Journal

2020/11

Takashi Hirayama
Takashi Hirayama

H-Index: 28

Yoshiteru Noutoshi
Yoshiteru Noutoshi

H-Index: 12

Decoding plant–environment interactions that influence crop agronomic traits

2020/8

Takashi Hirayama
Takashi Hirayama

H-Index: 28

Life-course monitoring of endogenous phytohormone levels under field conditions reveals diversity of physiological states among barley accessions

Plant and Cell Physiology

2020/8

Exploration of life-course factors influencing phenotypic outcomes in crops

2020/8

Takashi Hirayama
Takashi Hirayama

H-Index: 28

See List of Professors in Takashi Hirayama University(Okayama University)