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在成熟番茄果实中叶绿体转化为有色体的过程中,质体的组成性转录和稳定 RNA 的积累。

Constitutive Transcription and Stable RNA Accumulation in Plastids during the Conversion of Chloroplasts to Chromoplasts in Ripening Tomato Fruits.

机构信息

Departamento de Ciencias Biológicas, Area Biología Molecular, Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Suipacha 531 (2000) Rosario, Argentina.

出版信息

Plant Physiol. 1992 Nov;100(3):1103-13. doi: 10.1104/pp.100.3.1103.

Abstract

The size distribution of plastid transcripts during chromoplast differentiation in ripening tomato (Lycopersicon esculentum L.) fruits was determined using northern blot analysis. Hybridization of total cellular RNA from leaves and fruits with several tobacco chloroplast DNA probes showed distinct transcript patterns in chloroplasts and chromoplasts. We also compared transcriptional rates by probing immobilized DNA fragments of small size (representing about 85% of the plastid genome) with run-on transcripts from tomato plastids. The relative rates of transcription of the various DNA regions were very similar in chloro- and chromoplasts. Parallel determination of the steady-state levels of plastid RNA showed no strict correlation between synthesis rate and RNA accumulation. Differences in the relative abundance of transcripts between chloro- and chromoplasts were not very pronounced and were limited to a small number of genes. The results indicate that the conversion of chloroplasts to chromoplasts at the onset of tomato fruit ripening proceeds with no important variations in the relative transcription rates and with only moderate changes in the relative stability of plastid-encoded transcripts.

摘要

使用 Northern 印迹分析确定了成熟番茄(Lycopersicon esculentum L.)果实中质体转录物在类囊体分化过程中的大小分布。用几种烟草叶绿体 DNA 探针杂交来自叶片和果实的总细胞 RNA,显示叶绿体和有色体中有明显的转录模式。我们还通过与来自番茄质体的运行转录物探测小尺寸(代表约 85%的质体基因组)的固定化 DNA 片段比较转录率。各种 DNA 区域的转录相对速率在叶绿体和有色体中非常相似。质体 RNA 稳态水平的平行测定表明,合成速率与 RNA 积累之间没有严格的相关性。叶绿体和有色体之间转录物相对丰度的差异不很明显,仅限于少数基因。结果表明,在番茄果实成熟开始时,叶绿体向有色体的转化,在相对转录率上没有重要的变化,并且质体编码转录物的相对稳定性只有适度的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/020b/1075752/9e8843958844/plntphys00711-0034-a.jpg

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