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首页> 外文期刊>Genes & Genetic Systems >Complete nucleotide sequence of the cotton (Gossypium barbadense L.) chloroplast genome with a comparative analysis of sequences among 9 dicot plants.
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Complete nucleotide sequence of the cotton (Gossypium barbadense L.) chloroplast genome with a comparative analysis of sequences among 9 dicot plants.

机译:棉花(棉(Gossypium barbadense L.))叶绿体基因组的完整核苷酸序列,并比较了9个双子叶植物中的序列。

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摘要

Recently, the complete chloroplast genome sequences of many important crop plants were determined, and this can be considered a major step forward toward exploiting the usefulness of chloroplast genetic engineering technology. Economically, cotton is one of the most important crop plants for many countries. To further our understanding of this important crop, we determined the complete nucleotide sequence of the chloroplast genome from cotton (Gossypium barbadense L.). The chloroplast genome of cotton is 160 317 base pairs (bp) in length, and is composed of a large single copy (LSC) of 88 841 bp, a small single copy (SSC) of 20 294 bp, and two identical inverted repeat (IR) regions of 25 591 bp each. The genome contains 114 unique genes, of which 17 genes are duplicated in the IRs. In addition, many open reading frames (ORFs) and hypothetical chloroplast reading frames (ycfs) with unknown functions were deduced. Compared to the chloroplast genomes from 8 other dicot plants, the cotton chloroplast genome showed a high degree of similarity of the overall structure, gene organization, and gene content. Furthermore, the sequences of the genes showed high degrees of identity at the DNA and amino acid levels. The cotton chloroplast genome was somewhat longer than the chloroplast genomes of most of the other dicot plants compared here. However, this elongation of the cotton chloroplast genome was found to be due mainly to expansions of the intergenic regions and introns (non-coding DNA). Moreover, these expansions occurred predominantly in the LSC and SSC regions..
机译:最近,已经确定了许多重要农作物的完整叶绿体基因组序列,这可以认为是朝着利用叶绿体基因工程技术的实用性迈出的重要一步。从经济上讲,棉花是许多国家最重要的农作物之一。为了进一步了解这一重要作物,我们确定了棉花(棉(Gossypium barbadense L.))的叶绿体基因组的完整核苷酸序列。棉花的叶绿体基因组长度为160317个碱基对(bp),由88 841 bp的大单拷贝(LSC),20 294 bp的小单拷贝(SSC)和两个相同的反向重复序列组成( IR)每个25 591 bp的区域。基因组包含114个独特基因,其中17个基因在IR中重复。此外,推导了许多功能未知的开放阅读框(ORF)和假设的叶绿体阅读框(ycfs)。与其他8个双子叶植物的叶绿体基因组相比,棉叶绿体基因组在总体结构,基因组织和基因含量方面具有高度相似性。此外,基因的序列在DNA和氨基酸水平上显示出高度的同一性。与此处相比,棉叶绿体基因组比其他大多数双子叶植物的叶绿体基因组要长一些。然而,发现棉花叶绿体基因组的这种延长主要是由于基因间区域和内含子(非编码DNA)的扩展。此外,这些扩展主要发生在LSC和SSC地区。

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