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抗生素对叶绿体和核基因表达的多种影响。

Multiple effects of antibiotics on chloroplast and nuclear gene expression.

作者信息

Mulo Paula, Pursiheimo Saijaliisa, Hou Cai-Xia, Tyystjärvi Taina, Aro Eva-Mari

机构信息

Plant Physiology and Molecular Biology, Department of Biology, University of Turku, FIN-20014 Turku, Finland.

Plant Physiology and Molecular Biology, Department of Biology, University of Turku, FIN-20014 Turku, Finland. Corresponding author; email:

出版信息

Funct Plant Biol. 2003 Jan;30(11):1097-1103. doi: 10.1071/FP03149.

Abstract

Antibiotics are widely used to monitor signalling cascades within a plant cell, for example between the nucleus and chloroplasts, and to study the function of the photosynthetic machinery. In the present study, we attempted to test various antibiotics with respect to their expected modes of function and also to monitor their possible side effects on metabolic processes in mature leaves of pea (Pisum sativum L.). Streptomycin, despite its reported prokaryotic nature, prevented translation not only in the chloroplast, but also in the cytosol. Application of puromycin, an inhibitor of protein synthesis in both the pro- and eukaryotes, resulted in severe photoinhibition of photosystem II upon illumination, yet had no effect on plastid translation, thus implying a severe side effect on plastid metabolism. Prokaryotic-type translation inhibitors lincomycin, spectinomycin and erythromycin blocked translation in the chloroplast without any direct effects on cytoplasmic protein synthesis. More detailed studies with lincomycin, however, revealed a strong modulation of the expression of nuclear-encoded genes by slowing down the transcription rate of photosynthesis-related Lhcb and RbcS genes, and furthermore, lincomycin clearly decreased the phosphorylation level of the LHCII proteins.

摘要

抗生素被广泛用于监测植物细胞内的信号级联反应,例如细胞核与叶绿体之间的信号级联反应,以及研究光合机制的功能。在本研究中,我们试图根据各种抗生素预期的功能模式对其进行测试,并监测它们对豌豆(Pisum sativum L.)成熟叶片代谢过程可能产生的副作用。链霉素尽管据报道具有原核生物的特性,但它不仅阻止叶绿体中的翻译,也阻止细胞质中的翻译。嘌呤霉素是原核生物和真核生物中蛋白质合成的抑制剂,光照时它对光系统II产生严重的光抑制作用,但对质体翻译没有影响,因此表明它对质体代谢有严重的副作用。原核生物类型的翻译抑制剂林可霉素、壮观霉素和红霉素阻断叶绿体中的翻译,而对细胞质蛋白质合成没有任何直接影响。然而,对林可霉素进行更详细的研究发现,它通过减缓光合作用相关的Lhcb和RbcS基因的转录速率,对核编码基因的表达有强烈的调节作用,此外,林可霉素明显降低了LHCII蛋白的磷酸化水平。

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