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The PLASTID DIVISION1 and 2 Components of the Chloroplast Division Machinery Determine the Rate of Chloroplast Division in Land Plant Cell Differentiation[C][W]

机译:叶绿体分裂机械的PLASTID DIVISION1和2组件决定了陆地植物细胞分化中叶绿体分裂的速率[C] [W]

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摘要

In most algae, the chloroplast division rate is held constant to maintain the proper number of chloroplasts per cell. By contrast, land plants evolved cell and chloroplast differentiation systems in which the size and number of chloroplasts change along with their respective cellular function by regulation of the division rate. Here, we show that PLASTID DIVISION (PDV) proteins, land plant–specific components of the division apparatus, determine the rate of chloroplast division. Overexpression of PDV proteins in the angiosperm Arabidopsis thaliana and the moss Physcomitrella patens increased the number but decreased the size of chloroplasts; reduction of PDV levels resulted in the opposite effect. The level of PDV proteins, but not other division components, decreased during leaf development, during which the chloroplast division rate also decreased. Exogenous cytokinins or overexpression of the cytokinin-responsive transcription factor CYTOKININ RESPONSE FACTOR2 increased the chloroplast division rate, where PDV proteins, but not other components of the division apparatus, were upregulated. These results suggest that the integration of PDV proteins into the division machinery enabled land plant cells to change chloroplast size and number in accord with the fate of cell differentiation.
机译:在大多数藻类中,叶绿体分裂速率保持恒定,以保持每个细胞的叶绿体数量正确。相反,陆地植物进化了细胞和叶绿体分化系统,其中叶绿体的大小和数量以及它们各自的细胞功能通过调节分裂速率而改变。在这里,我们表明,PLASTID DIVISION(PDV)蛋白(陆地植物特有的分裂设备)决定了叶绿体分裂的速率。 PDV蛋白在被子植物拟南芥和苔藓小立碗藓中的过表达增加了数量,但减少了叶绿体的大小; PDV水平降低导致相反的效果。在叶片发育过程中,PDV蛋白的水平降低了,但其他分裂成分没有降低,在此期间叶绿体的分裂率也降低了。外源细胞分裂素或细胞分裂素应答转录因子细胞分裂素反应因子2的过表达增加了叶绿体分裂速率,其中PDV蛋白但不是分裂装置的其他组件被上调。这些结果表明,PDV蛋白整合到分裂机制中使陆地植物细胞能够根据细胞分化的命运改变叶绿体的大小和数量。

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