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全寄生开花植物菟丝子质体基因组中光合基因的组织与序列

Organization and sequence of photosynthetic genes from the plastid genome of the holoparasitic flowering plant Cuscuta reflexa.

作者信息

Haberhausen G, Valentin K, Zetsche K

机构信息

Institut für Pflanzenphysiologie, Justus Liebig Universität, Giessen, FRG.

出版信息

Mol Gen Genet. 1992 Mar;232(1):154-61. doi: 10.1007/BF00299148.

Abstract

We have cloned and sequenced an area of about 6 kb of the plastid DNA (ptDNA) from the holoparasitic plant Cuscuta reflexa. This region contains (in the following order) genes for the cytochrome b6 f-complex subunit V (petG), tRNA(Val) (trnV), tRNA(Met) (trnM), the epsilon- and beta-subunit of the chloroplast ATP-synthase (atpE and atpB) and the large subunit of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco; rbcL). In addition we identified other photosynthesis-related genes (atpA, petB, psaA, psbA, psbB, psbC, and psbD) in C. reflexa by heterologous hybridization. The gene arrangement of the sequenced area is, except for the petG gene, the same as in ptDNAs of other higher plants (e.g. Nicotiana tabacum). Sequence homologies between the Cuscuta genes and corresponding genes from higher plants are in the range of 90%. The only significant difference is that the rbcL gene of C. reflexa encodes a polypeptide which is 18-23 amino acids longer than in other higher plants. This is remarkable since C. reflexa has lost its ability to grow photoautotrophically. The transcript level of the rbcL gene, however, is strongly reduced as compared to tobacco. These findings are compatible with results from Western blotting analysis, where no Rubisco large subunit was detectable, and with the lack of Rubisco activity in crude extracts of C. reflexa.

摘要

我们已经克隆并测序了全寄生植物菟丝子质体DNA(ptDNA)约6 kb的区域。该区域按以下顺序包含细胞色素b6 f复合体亚基V(petG)、tRNA(Val)(trnV)、tRNA(Met)(trnM)、叶绿体ATP合酶的ε和β亚基(atpE和atpB)以及1,5-二磷酸核酮糖羧化酶/加氧酶(Rubisco;rbcL)的大亚基的基因。此外,我们通过异源杂交在菟丝子中鉴定出了其他与光合作用相关的基因(atpA、petB、psaA、psbA、psbB、psbC和psbD)。除petG基因外,测序区域的基因排列与其他高等植物(如烟草)的ptDNA相同。菟丝子基因与高等植物相应基因之间的序列同源性在90%左右。唯一显著的差异是,菟丝子的rbcL基因编码的多肽比其他高等植物的长18 - 23个氨基酸。这很值得注意,因为菟丝子已经失去了光自养生长的能力。然而,与烟草相比,rbcL基因的转录水平大幅降低。这些发现与蛋白质免疫印迹分析结果一致,在该分析中未检测到Rubisco大亚基,也与菟丝子粗提物中缺乏Rubisco活性一致。

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