Characteristic profiles of haemolymph proteins during larval development of molting mutants of the silkworm, Bombyx mori

Yutaka Kawaguchi, Yutaka Banno, Katsumi Koga, Hiroshi Doira, Hiroshi Fujii

研究成果: ジャーナルへの寄稿記事

7 引用 (Scopus)

抄録

1. 1. Electrophoresis of the haemolymph from developing larvae of Bombyx mori revealed that the banding patterns of proteins could be grouped into three characteristic types. 2. 2. The young larval type exhibited at the first to the third instars (which are the phase of nutritional growth). 3. 3. The late larval type specific to the fifth instar (which is the phase of reproductive growth). 4. 4. The intermediary type shown at the fourth instar (which is the stage of switchover between the above two phases). 5. 5. The tetramolter mutant M3 lacked the intermediary type (i.e. the feature of the fourth instar) during its development, whereas the different tetramolter mutant rt had a mixture of the late and the intermediate types at its fourth (last) instar. 6. 6. On the other hand, the mutant M5, which is a pentamolter, repeated the intermediary type at its fourth and fifth (penultimate) instars.

元の言語英語
ページ(範囲)361-367
ページ数7
ジャーナルComparative Biochemistry and Physiology -- Part B: Biochemistry and
105
発行部数2
DOI
出版物ステータス出版済み - 1 1 1993

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Molting
Bombyx
Hemolymph
Growth
Electrophoresis
Larva
Proteins

All Science Journal Classification (ASJC) codes

  • Biochemistry
  • Physiology
  • Molecular Biology

これを引用

Characteristic profiles of haemolymph proteins during larval development of molting mutants of the silkworm, Bombyx mori. / Kawaguchi, Yutaka; Banno, Yutaka; Koga, Katsumi; Doira, Hiroshi; Fujii, Hiroshi.

:: Comparative Biochemistry and Physiology -- Part B: Biochemistry and, 巻 105, 番号 2, 01.01.1993, p. 361-367.

研究成果: ジャーナルへの寄稿記事

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abstract = "1. 1. Electrophoresis of the haemolymph from developing larvae of Bombyx mori revealed that the banding patterns of proteins could be grouped into three characteristic types. 2. 2. The young larval type exhibited at the first to the third instars (which are the phase of nutritional growth). 3. 3. The late larval type specific to the fifth instar (which is the phase of reproductive growth). 4. 4. The intermediary type shown at the fourth instar (which is the stage of switchover between the above two phases). 5. 5. The tetramolter mutant M3 lacked the intermediary type (i.e. the feature of the fourth instar) during its development, whereas the different tetramolter mutant rt had a mixture of the late and the intermediate types at its fourth (last) instar. 6. 6. On the other hand, the mutant M5, which is a pentamolter, repeated the intermediary type at its fourth and fifth (penultimate) instars.",
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AU - Doira, Hiroshi

AU - Fujii, Hiroshi

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N2 - 1. 1. Electrophoresis of the haemolymph from developing larvae of Bombyx mori revealed that the banding patterns of proteins could be grouped into three characteristic types. 2. 2. The young larval type exhibited at the first to the third instars (which are the phase of nutritional growth). 3. 3. The late larval type specific to the fifth instar (which is the phase of reproductive growth). 4. 4. The intermediary type shown at the fourth instar (which is the stage of switchover between the above two phases). 5. 5. The tetramolter mutant M3 lacked the intermediary type (i.e. the feature of the fourth instar) during its development, whereas the different tetramolter mutant rt had a mixture of the late and the intermediate types at its fourth (last) instar. 6. 6. On the other hand, the mutant M5, which is a pentamolter, repeated the intermediary type at its fourth and fifth (penultimate) instars.

AB - 1. 1. Electrophoresis of the haemolymph from developing larvae of Bombyx mori revealed that the banding patterns of proteins could be grouped into three characteristic types. 2. 2. The young larval type exhibited at the first to the third instars (which are the phase of nutritional growth). 3. 3. The late larval type specific to the fifth instar (which is the phase of reproductive growth). 4. 4. The intermediary type shown at the fourth instar (which is the stage of switchover between the above two phases). 5. 5. The tetramolter mutant M3 lacked the intermediary type (i.e. the feature of the fourth instar) during its development, whereas the different tetramolter mutant rt had a mixture of the late and the intermediate types at its fourth (last) instar. 6. 6. On the other hand, the mutant M5, which is a pentamolter, repeated the intermediary type at its fourth and fifth (penultimate) instars.

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