Zobrazeno 1 - 10
of 27
pro vyhledávání: '"Susumu YUI"'
Autor:
Kensaku SUZUKI, Junichi KASHIWAGI, Taiken NAKASHIMA, Kiyoshi NAGASUGA, Toshihiro MOCHIZUKI, Tomomi ABIKO, Masami FURUHATA, Youichi OHDAIRA, Masahiro CHIBA, Tosiyuki KIMURA, Shinji YANO, Mitsuki ABE, Akira MATSUDA, Hiroshi SAITO, Masaki SASAGAWA, Motonori TAKAHASHI, Taku NISHIMURA, Shoichiro HAMAMOTO, Takeshi TOKIDA, Masayoshi NISHI, Susumu YUI, Hiroyuki SHIMONO
Publikováno v:
Japanese Journal of Crop Science. 91:291-302
Publikováno v:
Japanese Journal of Crop Science. 90:1-9
Publikováno v:
SC10202005190010
NARO成果DBa
C10202002050010_9791
NARO成果DBa
C10202002050010_9791
Autor:
Eiki Kuroda, Shinji Ichikawa, Youichi Ohdaira, Taiken Nakashima, Satoko Oikawa, Kiyoshi Nagasuga, Susumu Yui, Hiroyuki Shimono, Masayoshi Nishi, Junichi Kashiwagi, Toshiyuki Kimura, Maya Matsunami
Publikováno v:
Japanese Journal of Crop Science. 88:259-267
Publikováno v:
Horticultural Research (Japan). 18:215-226
Publikováno v:
Horticultural Research (Japan). 17:199-210
Publikováno v:
Climate in Biosphere. 17:5-8
Autor:
Susumu Yui, Megumi Hamano, Tsukasa Nunome, Toshiya Yamamoto, Masami Morishita, Sono Kataoka, Hiromichi Yamazaki, Takayoshi Yano, Masanori Honjo
Publikováno v:
Euphytica. 209:291-303
To identify markers closely linked to the everbearing gene in the octoploid cultivated strawberry Fragaria × ananassa, we conducted linkage analysis based on simple sequence repeat (SSR) polymorphisms. We analyzed F1 populations from three crosses:
Autor:
Susumu Yui, Yoshihito Takahata, Yoshinori Tanimura, Shuji Yokoi, Kazuhiro Nishikawa, Shoji Urushibara, Takuya Matsuura, Naoko Kitamoto
Publikováno v:
Euphytica. 214
This article was published with an erroneous version of one of the affiliations. Please find the correct affiliations herewith.
Autor:
Shoji Urushibara, Takuya Matsuura, Susumu Yui, Naoko Kitamoto, Yoshihito Takahata, Yoshinori Tanimura, Shuji Yokoi, Kazuhiro Nishikawa
Publikováno v:
Euphytica. 213
We developed new F1 hybrids of Chinese cabbage (Brassica rapa L. ssp. pekinensis) that allow cultivation earlier in spring without heating by introducing extremely late-bolting alleles at two homologs of the flowering repressor Flowering Locus C (BrF