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Tobacco VDL Gene Encodes a Plastid DEAD Box RNA Helicase and Is Involved in Chloroplast Differentiation and Plant Morphogenesis

机译:烟草VDL基因编码质体DEAD Box RNA解旋酶并参与叶绿体分化和植物形态发生

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摘要

The recessive nuclear vdl (for variegated and distorted leaf) mutant of tobacco was obtained by T-DNA insertion and characterized by variegated leaves and abnormal roots and flowers. Affected leaf tissues were white and distorted, lacked palisadic cells, and contained undifferentiated plastids. The variegation was due to phenotypic, rather than genetic, instability. Genomic and cDNA clones were obtained for both the mutant and wild-type VDL alleles. Three transcripts, resulting from alternate intron splicing or polyadenylation, were found for the wild type. The transcripts potentially encode a set of proteins (53, 19, and 15 kD) sharing the same N-terminal region that contains a chloroplast transit peptide capable of importing the green fluorescent protein into chloroplasts. The predicted 53-kD product belongs to the DEAD box RNA helicase family. In the homozygous vdl mutant, T-DNA insertion resulted in accumulation of the shortest transcript and the absence of the RNA helicase–encoding transcript. Genetic transformation of the homozygous mutant by the 53-kD product–encoding cDNA fully restored the wild-type phenotype. These data suggest that a plastid RNA helicase controls early plastid differentiation and plant morphogenesis.
机译:通过T-DNA插入获得了烟草的隐性核vdl(用于杂色和变形的叶片)突变体,其特征在于杂色的叶子和异常的根和花。受影响的叶子组织是白色且扭曲的,缺少苍白细胞,并且含有未分化的质体。这种差异是由于表型而不是遗传上的不稳定性。获得了突变型和野生型VDL等位基因的基因组和cDNA克隆。对于野生型,发现了由内含子剪接或聚腺苷酸交替产生的三个转录本。转录本可能编码一组蛋白质(53、19和15 kD),它们共享相同的N端区域,该区域包含能够将绿色荧光蛋白导入叶绿体的叶绿体转运肽。预测的53 kD产物属于DEAD box RNA解旋酶家族。在纯合的vdl突变体中,T-DNA插入导致最短转录本的积累和RNA解旋酶编码转录本的缺失。 53 kD产物编码cDNA对纯合突变体的遗传转化完全恢复了野生型表型。这些数据表明质体RNA解旋酶控制早期质体分化和植物形态发生。

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