Muscle-specific regulation of tropomyosin gene expression and myofibrillogenesis differs among muscle systems examined at metamorphosis of the gastropod Haliotis rufescens

被引:40
作者
Degnan, BM
Degnan, SM
Morse, DE
机构
[1] UNIV QUEENSLAND, CTR CELLULAR & MOL BIOL, BRISBANE, QLD 4072, AUSTRALIA
[2] UNIV CALIF SANTA BARBARA, CTR MARINE BIOTECHNOL, SANTA BARBARA, CA 93106 USA
[3] UNIV CALIF SANTA BARBARA, DEPT MOL CELLULAR & DEV BIOL, SANTA BARBARA, CA 93106 USA
基金
美国国家卫生研究院; 澳大利亚研究理事会; 美国海洋和大气管理局;
关键词
abalone; competence; in situ hybridization; larva; muscle cell;
D O I
10.1007/s004270050076
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The spatial and temporal association of muscle-specific tropomyosin gene expression, and myofibril assembly and degradation during metamorphosis is analyzed in the gastropod mollusc. Haliotis rufescens. Metamorphosis of tile planktonic larva to the benthic juvenile includes rearrangement and atrophy of specific larval muscles, and biogenesis of the new juvenile muscle system. The major muscle of the larva - the larval retractor muscle - reorganizes at metamorphosis, with two suites of cells having different fates. The ventral cells degenerate, while the dorsal cells become part of the developing juvenile mantle musculature. Prior to these changes in myofibrillar structure, tropomyosin mRNA prevalence declines until undetectable in the ventral cells, while increasing markedly in the dorsal cells. In the foot muscle and right shell muscle, tropomyosin mRNA levels remain relatively stable, even trough myofibril content increases. In a population of median mesoderm cells destined to form de novo the major muscle of the juvenile and adult (the columellar muscle), tropomyosin expression is initiated at 45 h after induction of metamorphosis. Myofibrillar filamentous actin is not detected in these cells until about 7 days later. Given that patterns of tropomyosin mRNA accumulation in relation to myofibril assembly and disassembly differ significantly among the four major muscle systems examined, we suggest that different regulatory mechanisms, probably operating at both transcriptional and post-transcriptional levels, control the biogenesis and atrophy of different larval and postlarval muscles at metamorphosis.
引用
收藏
页码:464 / 471
页数:8
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