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

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

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

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

Decoding plant–environment interactions that influence crop agronomic traits

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

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

Title

Journal

Author(s)

Publication Date

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

Journal of Genetics and Genomics

June-Sik Kim

Kotaro Takahagi

Komaki Inoue

Minami Shimizu

Yukiko Uehara-Yamaguchi

...

2023/4/1

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

Plant, cell & environment

Satoshi Okada

Gui J Lei

Naoki Yamaji

Sheng Huang

Jian F Ma

...

2022/11

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

Takashi Hirayama

Keiichi Mochida

2022/12/1

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

Takashi Hirayama

2021/10/5

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

International journal of molecular sciences

Kiyosumi Hori

Daisuke Saisho

Kazufumi Nagata

Yasunori Nonoue

Yukiko Uehara-Yamaguchi

...

2021/1/20

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

Elife

Kurataka Otsuka

Akihito Mamiya

Mineko Konishi

Mamoru Nozaki

Atsuko Kinoshita

...

2021/1/14

Decoding plant–environment interactions that influence crop agronomic traits

Keiichi Mochida

Ryuei Nishii

Takashi Hirayama

2020/8

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

Plant and Cell Physiology

Takashi Hirayama

Daisuke Saisho

Takakazu Matsuura

Satoshi Okada

Kotaro Takahagi

...

2020/8

Exploration of life-course factors influencing phenotypic outcomes in crops

Keiichi Mochida

Alexander E Lipka

Takashi Hirayama

2020/8

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

Plant and Cell Physiology

Mai Kanazawa

Yoko Ikeda

Ryuichi Nishihama

Shohei Yamaoka

Nam-Hee Lee

...

2020/3

The barley pan-genome reveals the hidden legacy of mutation breeding

Nature

Murukarthick Jayakodi

Sudharsan Padmarasu

Georg Haberer

Venkata Suresh Bonthala

Heidrun Gundlach

...

2020/12/10

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

Khew ChoyYuen Khew ChoyYuen

IC Mori

T Matsuura

T Hirayama

JA Harikrishna

...

2020/2/21

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

The Plant Journal

Yusuke Kouzai

Minami Shimizu

Komaki Inoue

Yukiko Uehara‐Yamaguchi

Kotaro Takahagi

...

2020/11

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