日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Integrated multiomics analysis reveals the molecular mechanism of light intensity-enhanced healing in cotyledon-less splice grafted watermelon

整合多组学分析揭示了光强增强无子叶拼接嫁接西瓜愈合的分子机制

Abouseif, Yehia; Kadeer, Akebaierjiang; Cao, Haishun; Kaleem, Muhammad Mohsin; Notaguchi, Michitaka; Xie, Qifan; Qing, Jun; Bie, Zhilong; Huang, Yuan

Autophagy is induced during plant grafting to promote wound healing.

植物嫁接过程中会诱导自噬,以促进伤口愈合

Kurotani Ken-Ichi, Shinozaki Daiki, Okada Kentaro, Tabata Ryo, Kawakatsu Yaichi, Sugita Ryohei, Utsugi Yuki, Okayasu Koji, Mori Moe, Tanoi Keitaro, Goto Yumi, Sato Mayuko, Toyooka Kiminori, Yoshimoto Kohki, Notaguchi Michitaka

Florigen-producing cells express FPF1-LIKE PROTEIN 1 to accelerate flowering and stem growth in Arabidopsis.

产生成花素的细胞表达 FPF1-LIKE PROTEIN 1,以加速拟南芥的开花和茎生长

Takagi Hiroshi, Lee Nayoung, Hempton Andrew K, Purushwani Savita, Notaguchi Michitaka, Yamauchi Kota, Shirai Kazumasa, Kawakatsu Yaichi, Uehara Susumu, Albers William G, Downing Benjamin L R, Ito Shogo, Suzuki Takamasa, Matsuura Takakazu, Mori Izumi C, Mitsuda Nobutaka, Kurihara Daisuke, Matsushita Tomonao, Song Young Hun, Sato Yoshikatsu, Nomoto Mika, Uchida Naoyuki, Tada Yasuomi, Hanada Kousuke, Cuperus Josh T, Queitsch Christine, Imaizumi Takato

Establishing a comprehensive web-based analysis platform for Nicotiana benthamiana genome and transcriptome

建立基于网络的综合性本氏烟草基因组和转录组分析平台

Kurotani, Ken-Ichi; Hirakawa, Hideki; Shirasawa, Kenta; Tagiri, Koya; Mori, Moe; Ramadan, Abedelaziz; Ichihashi, Yasunori; Suzuki, Takamasa; Tanizawa, Yasuhiro; An, Jiyuan; Winefield, Christopher; Waterhouse, Peter M; Miura, Kenji; Nakamura, Yasukazu; Isobe, Sachiko; Notaguchi, Michitaka

Grafting enhances drought stress tolerance by regulating the proteome and targeted gene regulatory networks in tomato.

嫁接通过调节番茄的蛋白质组和靶向基因调控网络来增强其耐旱性

Mahapatra Pritam Paramguru, Bae Dong Won, Notaguchi Michitaka, Muneer Sowbiya

CsCOI1 regulates plant growth and defense in citrus

CsCOI1调控柑橘的植物生长和防御

Hu, Gang; Liu, Bing; Yang, Kun; Zheng, Wei-Kang; Zhang, Yi; Teng, Cai-Xia; Huang, Duo-Yi; Yan, Ruo-Hao; Notaguchi, Michitaka; Kitagawa, Munenori; Lin, Zong-Cheng; Xu, Qiang

PIN1a-mediated auxin release from rootstock cotyledon contributes to healing in watermelon as revealed by seeds soaking-VIGS and cotyledon grafting

PIN1a介导的砧木子叶生长素释放有助于西瓜的愈合,这已通过种子浸泡-VIGS和子叶嫁接实验得到证实。

Wang, Xiao; Xiong, Mu; Xu, Jianuo; Zhang, Ting; Kadeer, Akebaierjiang; Bie, Zhilong; Notaguchi, Michitaka; Huang, Yuan

A multiplex microfluidic device to detect miRNAs for diagnosis of plant growth status

一种用于检测 miRNA 以诊断植物生长状态的多重微流控装置

Kawakatsu, Yaichi; Hara, Mitsuo; Kurotani, Ken-Ichi; Arima, Akihide; Baba, Yoshinobu; Notaguchi, Michitaka

Defense-related callose synthase PMR4 promotes root hair callose deposition and adaptation to phosphate deficiency in Arabidopsis thaliana

拟南芥中与防御相关的胼胝质合成酶PMR4促进根毛胼胝质沉积和对磷酸盐缺乏的适应

Okada, Kentaro; Yachi, Koei; Nguyen, Tan Anh Nhi; Kanno, Satomi; Yasuda, Shigetaka; Tadai, Haruna; Tateda, Chika; Lee, Tae-Hong; Nguyen, Uyen; Inoue, Kanako; Tsuchida, Natsuki; Ishihara, Taiga; Miyashima, Shunsuke; Hiruma, Kei; Miwa, Kyoko; Maekawa, Takaki; Notaguchi, Michitaka; Saijo, Yusuke

Transcription Factors behind MYB98 Regulation: What Does the Discovery of SaeM Suggest?

MYB98 调控背后的转录因子:SaeM 的发现意味着什么?

Adhikari, Prakash B; Liu, Xiaoyan; Huang, Chen; Mitsuda, Nobutaka; Notaguchi, Michitaka; Kasahara, Ryushiro Dora