Zobrazeno 1 - 10
of 76
pro vyhledávání: '"Shin-ichi Ayabe"'
Autor:
Masayuki, Shimamura, Takashi, Kumaki, Shun, Hashimoto, Kazuhiko, Saeki, Shin-Ichi, Ayabe, Atsushi, Higashitani, Tomoyoshi, Akashi, Shusei, Sato, Toshio, Aoki
Publikováno v:
Microbes and environments. 37(1)
In legume-rhizobia symbiosis, partner recognition and the initiation of symbiosis processes require the mutual exchange of chemical signals. Chemicals, generally (iso)flavonoids, in the root exudates of the host plant induce the expression of nod gen
Autor:
Mitsumi Nakatsukasa-Akune, Kenji Yamashita, Yoshikazu Shimoda, Toshiki Uchiumi, Mikiko Abe, Toshio Aoki, Ayumi Kamizawa, Shin-ichi Ayabe, Shiro Higashi, Akihiro Suzuki
Publikováno v:
Molecular Plant-Microbe Interactions, Vol 18, Iss 10, Pp 1069-1080 (2005)
TrEnodDR1 (Trifolium repens early nodulin downregulation 1) encodes a coat protein of White clover cryptic virus 1. Its expression in white clover was down-regulated at the time when root nodules formed. We surmised that its artificial expression wou
Externí odkaz:
https://doaj.org/article/267a3e139ef44a489b5152c8c192e811
Autor:
Shoichiro Akao, Masayoshi Kawaguchi, Toshio Aoki, Tomoyoshi Akashi, Shin-ichi Ayabe, Haruko Imaizumi-Anraku
Publikováno v:
Journal of Plant Research. 134:353-353
The original article has been updated.
Autor:
Tomoyoshi Akashi, Toru Nakayama, Toshiyuki Waki, Seiji Takahashi, Toshio Aoki, Konstantin Denessiouk, Dong Chan Yoo, Ryo Mameda, Naoto Fujino, Reiko Motohashi, Shin-ichi Ayabe, Satoshi Yamashita
Publikováno v:
Biochemical and Biophysical Research Communications. 469:546-551
Metabolic enzymes, including those involved in flavonoid biosynthesis, are proposed to form weakly bound, ordered protein complexes, called "metabolons". Some hypothetical models of flavonoid biosynthetic metabolons have been proposed, in which metab
Publikováno v:
Plant Biotechnology. 31:61-66
Several genes of model and crop species that function in plant adaptation to acid soils have recently been characterized, but little is known about the molecular basis of the stress tolerance of woody plants. In the present study, using cell suspensi
Autor:
Ryoji Takahashi, Norimoto Shimada, Shin-ichi Ayabe, Toshio Aoki, Kyoko Toda, Kalaiselvi Senthil, Haruko Kuroiwa, Masaaki Sakuta, Yasumasa Miyazaki, Setsuko Shimada
Publikováno v:
Planta. 236:79-89
We previously isolated a soybean (Glycine max (L.) Merr.) flavonoid 3'-hydroxylase (F3'H) gene (sf3'h1) corresponding to the T locus, which controls pubescence and seed coat color, from two near-isogenic lines (NILs), To7B (TT) and To7G (tt). The T a
Autor:
Norimoto Shimada, Toshio Aoki, Rieko Iwasaka, Masaaki Sakuta, Kazuko Yoshida, Shin-ichi Ayabe
Publikováno v:
Journal of Plant Research. 123:801-805
In the genome of the model legume Lotus japonicus, dihydroflavonol 4-reductase (DFR), which is the first committed enzyme of the anthocyanin and proanthocyanidin (PA) pathways, is encoded as a tandemly arrayed five-gene family. Expression analysis re
Publikováno v:
Plant Physiology. 149:683-693
Glyceollins are soybean (Glycine max) phytoalexins possessing pterocarpanoid skeletons with cyclic ether decoration originating from a C5 prenyl moiety. Enzymes involved in glyceollin biosynthesis have been thoroughly characterized during the early e
Autor:
Norimoto Shimada, Mami Yamazaki, Shin-ichi Ayabe, Kazuki Saito, Yasutaka Nishiyama, Karin Springob, Masahisa Shibata, Masahiko Kitayama, Toshio Aoki
Publikováno v:
FEBS Journal. 275:3494-3502
Differential screening by PCR-select subtraction was carried out for cDNAs from leaves of red and green perilla, two chemovarietal forms of Perilla frutescens regarding anthocyanin accumulation. One hundred and twenty cDNA fragments were selected as
Autor:
Catherine C. Wasmann, Hans D. VanEtten, Hiroshi Uchiyama, Yuji Sawada, Shin-ichi Ayabe, Tomoyoshi Akashi
Publikováno v:
Phytochemistry. 67:2525-2530
S-adenosyl-l-methionine: 2-hydroxyisoflavanone 4'-O-methyltransferase (HI4'OMT) methylates 2,7, 4'-trihydroxyisoflavanone to produce formononetin, an essential intermediate in the synthesis of isoflavonoids with methoxy or methylenedioxy groups at ca