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NbSiR 沉默对烟草原生质体发育的体内影响。

In vivo effects of NbSiR silencing on chloroplast development in Nicotiana benthamiana.

机构信息

Department of Biology, Yonsei University, Seoul, 120-749, Korea.

出版信息

Plant Mol Biol. 2010 Apr;72(6):569-83. doi: 10.1007/s11103-009-9593-8. Epub 2010 Jan 3.

Abstract

Sulfite reductase (SiR) performs dual functions, acting as a sulfur assimilation enzyme and as a chloroplast (cp-) nucleoid binding protein. In this study, we examined the in vivo effects of SiR deficiency on chloroplast development in Nicotiana benthamiana. Virus-induced gene silencing of NbSiR resulted in leaf yellowing and growth retardation phenotypes, which were not rescued by cysteine supplementation. NbSiR:GFP fusion protein was targeted to chloroplasts and colocalized with cp-nucleoids. Recombinant full-length NbSiR protein and the C-terminal half of NbSiR possessed cp-DNA compaction activities in vitro, and expression of full-length NbSiR in E. coli caused condensation of genomic DNA. NbSiR silencing differentially affected expression of plastid-encoded genes, inhibiting expression of several genes more severely than others. In the later stages, depletion of NbSiR resulted in chloroplast ablation. In NbSiR-silenced plants, enlarged cp-nucleoids containing an increased amount of cp-DNA were observed in the middle of the abnormal chloroplasts, and the cp-DNAs were predominantly of subgenomic sizes based on pulse field gel electrophoresis. The abnormal chloroplasts developed prolamellar body-like cubic lipid structures in the light without accumulating NADPH:protochlorophyllide oxidoreductase proteins. Our results suggest that NbSiR plays a role in cp-nucleoid metabolism, plastid gene expression, and thylakoid membrane development.

摘要

亚硫酸还原酶(SiR)具有双重功能,既是硫同化酶,又是叶绿体(cp-)核基质结合蛋白。在这项研究中,我们研究了 SiR 缺乏对拟南芥叶绿体发育的体内影响。病毒诱导的基因沉默导致 NbSiR 叶片变黄和生长迟缓表型,而半胱氨酸补充并不能挽救这种表型。NbSiR:GFP 融合蛋白定位于叶绿体,并与 cp-核基质共定位。重组全长 NbSiR 蛋白和 NbSiR 的 C 端半部分在体外具有 cp-DNA 紧缩活性,全长 NbSiR 在大肠杆菌中的表达导致基因组 DNA 的浓缩。NbSiR 沉默会导致质体编码基因的表达差异,对一些基因的抑制作用比对其他基因更为严重。在后期,NbSiR 的耗竭导致叶绿体消融。在 NbSiR 沉默的植物中,在异常叶绿体的中间观察到含有更多 cp-DNA 的增大的 cp-核基质,并且根据脉冲场凝胶电泳,cp-DNAs 主要是亚基因组大小。异常叶绿体在光照下形成前质体体样立方脂质结构,而不积累 NADPH:原叶绿素氧化还原酶蛋白。我们的结果表明,NbSiR 在 cp-核基质代谢、质体基因表达和类囊体膜发育中发挥作用。

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