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Chloroplast division in higher plants requires members of two functionally divergent gene families with homology to bacterial ftsZ.

机译:高等植物的叶绿体分裂需要与细菌ftsZ具有同源性的两个功能不同的基因家族的成员。

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摘要

The division of plastids is critical for viability in photosynthetic eukaryotes, but the mechanisms associated with this process are still poorly understood. We previously identified a nuclear gene from Arabidopsis encoding a chloroplast-localized homolog of the bacterial cell division protein FtsZ, an essential cytoskeletal component of the prokaryotic cell division apparatus. Here, we report the identification of a second nuclear-encoded FtsZ-type protein from Arabidopsis that does not contain a chloroplast targeting sequence or other obvious sorting signals and is not imported into isolated chloroplasts, which strongly suggests that it is localized in the cytosol. We further demonstrate using antisense technology that inhibiting expression of either Arabidopsis FtsZ gene (AtFtsZ1-1 or AtFtsZ2-1) in transgenic plants reduces the number of chloroplasts in mature leaf cells from 100 to one, indicating that both genes are essential for division of higher plant chloroplasts but that each plays a distinct role in the process. Analysis of currently available plant FtsZ sequences further suggests that two functionally divergent FtsZ gene families encoding differentially localized products participate in chloroplast division. Our results provide evidence that both chloroplastic and cytosolic forms of FtsZ are involved in chloroplast division in higher plants and imply that important differences exist between chloroplasts and prokaryotes with regard to the roles played by FtsZ proteins in the division process.
机译:质体的分裂对于光合真核生物的生存能力至关重要,但是与这一过程相关的机制仍知之甚少。我们先前从拟南芥中鉴定了一个核基因,该基因编码细菌细胞分裂蛋白FtsZ的叶绿体定位同源物,FtsZ是原核细胞分裂装置的必不可少的细胞骨架成分。在这里,我们报道了从拟南芥中鉴定出的第二个核编码的FtsZ型蛋白,该蛋白不包含叶绿体靶向序列或其他明显的分选信号,并且没有导入分离的叶绿体中,这强烈表明它位于细胞质中。我们进一步证明了使用反义技术抑制转基因植物中拟南芥FtsZ基因(AtFtsZ1-1或AtFtsZ2-1)的表达可使成熟叶片细胞中的叶绿体数量从100减少到1,这表明这两个基因对于高等植物的分裂都是必不可少的植物叶绿体,但它们在此过程中起着独特的作用。对当前可用植物FtsZ序列的分析进一步表明,编码差异定位产物的两个功能不同的FtsZ基因家族参与叶绿体分裂。我们的结果提供了证据,即高等植物的叶绿体分裂既涉及叶绿体形式的FtsZ,也涉及其胞质形式,这暗示着叶绿体和原核生物之间在FtsZ蛋白在分裂过程中所起的作用之间存在重要差异。

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