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黑松叶绿体DNA保留了一个缺乏rRNA基因的残余反向重复序列:trnQ、trnK、psbA、trnI和trnH的核苷酸序列以及rps16的缺失。

Chloroplast DNA of black pine retains a residual inverted repeat lacking rRNA genes: nucleotide sequences of trnQ, trnK, psbA, trnI and trnH and the absence of rps16.

作者信息

Tsudzuki J, Nakashima K, Tsudzuki T, Hiratsuka J, Shibata M, Wakasugi T, Sugiura M

机构信息

Sugiyama Jogakuen University, Nagoya, Japan.

出版信息

Mol Gen Genet. 1992 Mar;232(2):206-14. doi: 10.1007/BF00279998.

Abstract

A physical map of black pine (Pinus thunbergii) chloroplast DNA (120 kb) was constructed and two separate portions of its nucleotide sequence were determined. One portion contains trnQ-UUG, ORF510, ORF83, trnK-UUU (ORF515 in the trnK intron), ORF22, psbA, trnI-CAU (on the opposing strand) and trnH-GUG, in that order. Sequence analysis of another portion revealed the presence of a 495 bp inverted repeat containing trnI-CAU and the 3' end of psbA but lacking rRNA genes. The position of trnI-CAU is unique because most chloroplast DNAs have no gene between psbA and trnH (trnI-CAU is usually located further downstream). Black pine chloroplast DNA lacks rps16, which has been found between trnQ and trnK in angiosperm chloroplast DNAs, but possesses ORF510 instead. This ORF is highly homologous to ORF513 found in the corresponding region of liverwort chloroplast DNA and ORF563 located downstream from trnT in Chlamydomonas moewusii chloroplast DNA. A possible pathway for the evolution of black pine chloroplast DNA is discussed.

摘要

构建了黑松(Pinus thunbergii)叶绿体DNA(120 kb)的物理图谱,并测定了其核苷酸序列的两个独立部分。其中一部分依次包含trnQ-UUG、ORF510、ORF83、trnK-UUU(trnK内含子中的ORF515)、ORF22、psbA、trnI-CAU(位于互补链上)和trnH-GUG。另一部分的序列分析显示存在一个495 bp的反向重复序列,其中包含trnI-CAU和psbA的3'端,但缺乏rRNA基因。trnI-CAU的位置独特,因为大多数叶绿体DNA在psbA和trnH之间没有基因(trnI-CAU通常位于更下游)。黑松叶绿体DNA缺乏rps16,而在被子植物叶绿体DNA中rps16位于trnQ和trnK之间,但具有ORF510取而代之。该ORF与地钱叶绿体DNA相应区域中发现的ORF513以及莱茵衣藻叶绿体DNA中trnT下游的ORF563高度同源。讨论了黑松叶绿体DNA可能的进化途径。

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