Yuriko Osakabe

Yuriko Osakabe

Tokyo Institute of Technology

H-index: 46

Asia-Japan

About Yuriko Osakabe

Yuriko Osakabe, With an exceptional h-index of 46 and a recent h-index of 40 (since 2020), a distinguished researcher at Tokyo Institute of Technology,

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

Disruption of p-coumaroyl-CoA:monolignol transferases in rice drastically alters lignin composition

DNA-and selectable-marker-free genome-editing system using zygotes from recalcitrant maize inbred B73

SULTR2; 1 Adjusts the Bolting Timing by Transporting Sulfate from Rosette Leaves to the Primary Stem

Type ID CRISPR System-Mediated Genome Editing in Plants

Lignocellulose molecular assembly and deconstruction properties of lignin-altered rice mutants

Technique for modifying target nucleotide sequence using crispr-type id system

The trans-zeatin-type side-chain modification of cytokinins controls rice growth

Release of chimeras and efficient selection of editing mutants by CRISPR/Cas9-mediated gene editing in apple

Yuriko Osakabe Information

University

Position

___

Citations(all)

13946

Citations(since 2020)

7788

Cited By

9199

hIndex(all)

46

hIndex(since 2020)

40

i10Index(all)

69

i10Index(since 2020)

62

Email

University Profile Page

Tokyo Institute of Technology

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Top articles of Yuriko Osakabe

Title

Journal

Author(s)

Publication Date

Disruption of p-coumaroyl-CoA:monolignol transferases in rice drastically alters lignin composition

Plant Physiology

Lydia Pui Ying Lam

Yuki Tobimatsu

Shiro Suzuki

Takuto Tanaka

Senri Yamamoto

...

2024/2

DNA-and selectable-marker-free genome-editing system using zygotes from recalcitrant maize inbred B73

Plant and Cell Physiology

Hajime Yamada

Norio Kato

Masako Ichikawa

Keiko Mannen

Takatoshi Kiba

...

2024/1/30

SULTR2; 1 Adjusts the Bolting Timing by Transporting Sulfate from Rosette Leaves to the Primary Stem

Plant And Cell Physiology

Khamsalath Soudthedlath

Toshiki Nakamura

Tsukasa Ushiwatari

Jutarou Fukazawa

Keishi Osakabe

...

2024/3/1

Type ID CRISPR System-Mediated Genome Editing in Plants

Naoki Wada

Keishi Osakabe

Yuriko Osakabe

2023/3/31

Lignocellulose molecular assembly and deconstruction properties of lignin-altered rice mutants

Plant Physiology

Andri Fadillah Martin

Yuki Tobimatsu

Pui Ying Lam

Naoyuki Matsumoto

Takuto Tanaka

...

2023/1/1

Technique for modifying target nucleotide sequence using crispr-type id system

2023/11/23

The trans-zeatin-type side-chain modification of cytokinins controls rice growth

Plant physiology

Takatoshi Kiba

Kahori Mizutani

Aimi Nakahara

Yumiko Takebayashi

Mikiko Kojima

...

2023/7

Release of chimeras and efficient selection of editing mutants by CRISPR/Cas9-mediated gene editing in apple

Scientia Horticulturae

Furong Li

Natsumi Kawato

Haruka Sato

Yasuyuki Kawaharada

Mitsuki Henmi

...

2023/6/1

The histidine phosphotransfer AHP4 plays a negative role in Arabidopsis plant response to drought

The Plant Journal

CV Ha and MG Mostofa..... LSP

2022

The evaluation of CRISPR-Cas9-mediated editing efficiency using endogenous promoters in tetraploid blueberry

XXXI International Horticultural Congress (IHC2022): International Symposium on Breeding and Effective Use of Biotechnology and 1362

M Omori

H Yamane

K Osakabe

Y Osakabe

R Tao

2022/8/14

CRISPR/Cas9 Tools for Multiplex Genome Editing in Crops

Naoki Wada

Tomoko Miyaji

Chihiro Abe-Hara

Keishi Osakabe

Yuriko Osakabe

2022/8/2

Plant Genome Editing

Naoki Wada

Yuriko Osakabe

Keishi Osakabe

2022/12/12

Expanding the plant genome editing toolbox with recently developed CRISPR–Cas systems

Naoki Wada

Keishi Osakabe

Yuriko Osakabe

2022/4/1

Genome editing in plants

Naoki Wada

Keishi Osakabe

Yuriko Osakabe

2022/12/1

Genome-edited rice deficient in two 4-COUMARATE:COENZYME A LIGASE genes displays diverse lignin alterations

Plant Physiology

Osama Ahmed Afifi

Yuki Tobimatsu

Pui Ying Lam

Andri Fadillah Martin

Takuji Miyamoto

...

2022/12/1

Author Correction: Genome editing in plants using CRISPR type ID nuclease

Communications Biology

Osakabe Keishi

Wada Naoki

Miyaji Tomoko

Murakami Emi

Marui Kazuya

...

2021

Genome editing in mammalian cells using the CRISPR type ID nuclease

Nucleic acids research

Keishi Osakabe

Naoki Wada

Emi Murakami

Naoyuki Miyashita

Yuriko Osakabe

2021/6/21

Effects of the sliaa9 mutation on shoot elongation growth of tomato cultivars

Frontiers in Plant Science

Chihiro Abe-Hara

Kohji Yamada

Naoki Wada

Risa Ueta

Ryosuke Hashimoto

...

2021/5/20

Targeted mutagenesis of CENTRORADIALIS using CRISPR/Cas9 system through the improvement of genetic transformation efficiency of tetraploid highbush …

The Journal of Horticultural Science and Biotechnology

Masafumi Omori

Hisayo Yamane

Keishi Osakabe

Yuriko Osakabe

Ryutaro Tao

2021/3/4

Chikako Nishitani, Keishi Osakabe, and

The Apple Genome

Yuriko Osakabe

2021

See List of Professors in Yuriko Osakabe University(Tokyo Institute of Technology)

Co-Authors

H-index: 126
Kazuki Saito

Kazuki Saito

Chiba University

H-index: 105
Hitoshi Sakakibara

Hitoshi Sakakibara

Nagoya University

H-index: 76
Shinjiro Yamaguchi

Shinjiro Yamaguchi

Kyoto University

H-index: 59
Hiroshi Ezura

Hiroshi Ezura

University of Tsukuba

H-index: 55
Masaharu Mizutani

Masaharu Mizutani

Kobe University

H-index: 48
Toshiya Muranaka

Toshiya Muranaka

Osaka University

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