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Author 近藤 萬太郞|
Published Date 1927-12-10
Publication Title 農学研究
Volume volume11
Content Type Departmental Bulletin Paper
Author 岡村 保| 久宗 壯|
Published Date 1927-04-23
Publication Title 農学研究
Volume volume10
Content Type Departmental Bulletin Paper
Author 近藤 萬太郎|
Published Date 1926-03-01
Publication Title 農学研究
Volume volume8
Content Type Departmental Bulletin Paper
Author 近藤 萬太郞|
Published Date 1920-07-10
Publication Title 農学講演集
Volume volume2
Content Type Departmental Bulletin Paper
Author 近藤 萬太郞|
Published Date 1918-07-13
Publication Title 農学講演集
Volume volume1
Content Type Departmental Bulletin Paper
Author Toya, Junko| Masuda, Masaharu| Murakami, Kenji|
Published Date 2012-02-01
Publication Title 岡山大学農学部学術報告
Volume volume101
Content Type Departmental Bulletin Paper
Author Nishioka, Soiti|
Published Date 1937-05-31
Publication Title 岡山医学会雑誌
Volume volume49
Issue issue5
Content Type Journal Article
Author Hirata, Y.|
Published Date 1937-03-31
Publication Title 岡山医学会雑誌
Volume volume49
Issue issue3
Content Type Journal Article
Author Tamao, Nobutada|
Published Date 1942-11-30
Publication Title 岡山医学会雑誌
Volume volume54
Issue issue11
Content Type Journal Article
Author Tamao, Nobutada|
Published Date 1942-10-31
Publication Title 岡山医学会雑誌
Volume volume54
Issue issue10
Content Type Journal Article
Author Goto, Tanjuro| Ishii, Mayumi| Fujiwara, Kazuki|
Published Date 2011-02-01
Publication Title 岡山大学農学部学術報告
Volume volume100
Content Type Departmental Bulletin Paper
Author Fujita, Keiko| Suzuki, Tomoko| Hasegawa, Sachiko| Meguro, Akane| Sugiura, Hiroyuki| Toyoda, Kazuhiro| Shiraishi, Tomonori| Sakaguchi, Ei| Nishimura, Tomio| Kunoh, Hitoshi|
Published Date 2010-02-01
Publication Title 岡山大学農学部学術報告
Volume volume99
Issue issue1
Content Type Departmental Bulletin Paper
Author Akamatsu, Osamu|
Published Date 1956
Publication Title 岡山医学会雑誌
Volume volume68
Issue issue10
Content Type Journal Article
Author Taneda, Hidejiro|
Published Date 1959-04-25
Publication Title 岡山医学会雑誌
Volume volume71
Issue issue5-2
Content Type Journal Article
Author Hirota, Naohiko|
Published Date 2009-03-25
Publication Title
Content Type Thesis or Dissertation
Title Alternative トマトの突然変異雄性不稔の部分稔性回復に及ぼす夜温の影響
FullText URL J_J_Soc_Hort_Sci_76_1_41.pdf
Author Masuda, Masaharu| Kato, Kenji| Murakami, Kenji| Nakamura, Hiroshi| Ojiewo Christopher Ochieng| Masinde Peter Wafula|
Keywords male-sterile mutant night temperature partial fertility omato hybrid-seed
Note 園芸学会賞年間優秀論文賞  rights: 本文データは学協会の許諾に基づきCiNiiから複製したものである|
Published Date 2007-03-06
Publication Title 園芸学会雑誌
Volume volume76
Issue issue1
Publisher 園芸学会
Start Page 41
End Page 46
ISSN 0013-7626
NCID AN00025257
Content Type Journal Article
language English
OAI-PMH Set 岡山大学
Copyright Holders 園芸学会
File Version publisher
NAID 110006203470
DOI 10.2503/jjshs.76.41
Author Li, Xiuping| Sasakawa, Hideo|
Published Date 2008-02
Publication Title 岡山大学農学部学術報告
Volume volume97
Issue issue1
Content Type Departmental Bulletin Paper
Title Alternative ライムギ小型染色体を保持する普通系コムギからのライムギ型cDNAのディファレンシャルスクリーニング
FullText URL 006_001_053_064.pdf
Author Murata, Minoru|
Abstract Occurrence of the midget chromosome in a common wheat with rye cytoplasm [(cereale)-Chinese Spring (CS)] indicates that the chromosome carries the essential gene(s) for maintaining the function of rye cytoplasm. To elucidate the interaction between the midget chromosome and rye cytoplasm, in this study, an attempt was made to isolate rye-type cDNAs from a cDNA library of (cereale)-CS by differential screening. Two replica filters from each plate were hybridized with digoxigenin (DIG)-labeled wheat CS cDNAs and with DIG-labeled rye cDNAs,respectively. Out of ca. 20,000 plaques, 27 were hybridized more strongly with rye cDNAs than with CS cDNAs. These clones were classified into six classes (Ⅰ-Ⅵ) by blot hybridization. The majority of the clones (21 out of 27) was belonged to the same class (1), showing rye-type RFLP (restriction fragment length polymorphism). The DNA sequence of clone CrClA in class Ⅰ, was very similar to that of wheat ribulose 1,5-bisphosphate carboxylase,large subnit gene, rbcL(94.5% homology). However, the 3' end of CrClA was shorter than that of wheat rbcL, and terminated at TAA instead of TAG, like the rbcL of Aegilops crassa. In the clone CrC5.4, the first half of the sequence was similar to that of one rice EST clone, the functions of which are not known, and the latter was similar to the reverse sequence of maize 4.5S-23S ribosomal RNA. This suggests that CrC5.4 had been derived from two defferent cDNAs of (cereale)-CS. Three other clones had homology to the chlorophyll a/b binding protein genes (cab) of wheat, maize and tomato, and one to wheat rbcS (ribulose1,5-bisphosphate carboxylase small subnit gene). However, no clear polymorphisms were detected between wheat and rye by using those clones as probes.
Keywords Cytoplasm substitution line Differential screening Midget chromosome Rye Wheat
Publication Title 岡山大学資源生物科学研究所報告
Published Date 1999
Volume volume6
Issue issue1
Start Page 53
End Page 64
ISSN 0916-930X
language English
File Version publisher
Title Alternative ホウレンソウ種子に存在するα-グルコシダーゼの分子多型変化
FullText URL 005_001_001_009.pdf
Author Furui, Satoshi| Sugimoto, Manabu| Suzuki, Yukio|
Abstract Two molecular forms of α-glucosidase were isolated from spinach seeds after storage at 4℃ by CM-cellulose column chromatography and gel filtration. The molecular masses of α-glucosidase A and B were 78 kDa and 82 kDa by SDS-PAGE, and 62 kDa and 70 kDa by gel filtration, respectively. α-Glucosidase A had high activity not only toward maltooligosaccharides but also toward α-glucans. The optimum pH was 4.5-5.5 and about 50% of the activity remained after incubation at 65℃ for 20 min. On the other hand, α-glucosidase B had high activity toward maltooligosaccharides but faint activity toward α-glucans. The optimum pH was 5.0 and no activity was found after incubation at 65℃ for 20 min. The enzymatic and immunological properties of α-glucosidase A and B were similar to those of α-glucosidase. Ⅰor Ⅱ, and α-glucosidase Ⅲ or Ⅳ, isolated from spinach seeds without 4℃ storage, respectively. These findings suggest that the α-glucosidase in spinach seeds is modified to be two molecular forms.
Keywords Spinach α-Glucosidase Multiple molecular forms
Publication Title 岡山大学資源生物科学研究所報告
Published Date 1997
Volume volume5
Issue issue1
Start Page 1
End Page 9
ISSN 0916-930X
language English
File Version publisher