NUCLEAR CONTROL OF PLASTID AND MITOCHONDRIAL DEVELOPMENT IN HIGHER PLANTS.

P. Leon, A. Arroyo, S. Mackenzie
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引用次数: 174

Abstract

The nucleus must coordinate organelle biogenesis and function on a cell and tissue-specific basis throughout plant development. The vast majority of plastid and mitochondrial proteins and components involved in organelle biogenesis are encoded by nuclear genes. Molecular characterization of nuclear mutants has illuminated chloroplast development and function. Fewer mutants exist that affect mitochondria, but molecular and biochemical approaches have contributed to a greater understanding of this organelle. Similarities between organelles and prokaryotic regulatory molecules have been found, supporting the prokaryotic origin of chloroplasts and mitochondria. A striking characteristic for both mitochondria and chloroplast is that most regulation is posttranscriptional.

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高等植物质体和线粒体发育的核调控。
在整个植物发育过程中,细胞核必须在细胞和组织特异性的基础上协调细胞器的生物发生和功能。绝大多数参与细胞器生物发生的质体和线粒体蛋白和成分都是由核基因编码的。核突变体的分子特征揭示了叶绿体的发育和功能。影响线粒体的突变体较少,但分子和生化方法有助于更好地了解这种细胞器。细胞器和原核调节分子之间的相似性已经被发现,支持叶绿体和线粒体的原核起源。线粒体和叶绿体的一个显著特征是大多数调控都是转录后的。
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CIRCADIAN RHYTHMS IN PLANTS. MOLECULAR ENGINEERING OF C4 PHOTOSYNTHESIS. ISOPRENE EMISSION FROM PLANTS. CHLAMYDOMONAS AS A MODEL ORGANISM. THE PLASTID DIVISION MACHINE.
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