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DNA barcoding - A new device in phycologist's toolbox

机译:DNA条形码 - 一种植物学家工具箱的新装置

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Up to now only a fraction of all living organisms in the world has been identified. Organisms are identified using morphological characteristics, which is laborious and requires specialized knowledge. Barcoding DNA helps to solve the limitations of traditional species identification. The nucleotide sequence obtained using specific primers is presented in the form of a strip resembling a bar code which allows comparing and distinguishing species. The standard sequence used for the barcoding of almost all animal groups is derived from the mitochondrial cytochrome c oxidase gene (Cox1). For fungi Cox1 and ITS (internal transcribed spacers) were proposed as barcodes. In contrast, the world of plants does not have a single standard sequence for identifying species. The ideal marker should consist of a highly variable region enabling species discrimination, and be flanked by highly conserved regions allowing universal primer design for the DNA barcodes standardization. This paper describes the markers used to identify eukaryotic photosynthetic organisms, their properties, advantages and disadvantages, and the proposed standard DNA barcodes. This work focuses on microalgae and macroalgae, which are of great ecological importance and are widely used in food, pharmaceutical or energy industries where they fast, correct and reliable identification is crucial. (C) 2019 European Regional Centre for Ecohydrology of the Polish Academy of Sciences. Published by Elsevier B.V. All rights reserved.
机译:现在,世界上只有一小部分世界上所有生物体。使用形态特征来确定生物,这是费力的,需要专门的知识。条形码DNA有助于解决传统物种鉴定的局限性。使用特异性引物获得的核苷酸序列以类似于条形码的条带的形式提出,该条形码允许比较和区分物种。用于几乎所有动物基团的条形码的标准序列来自线粒体细胞色素C氧化酶基因(COX1)。对于真菌COX1及其(内部转录的间隔物)被提出为条形码。相比之下,植物世界没有单一标准序列来识别物种。理想标记应由高度可变区域组成,使得物种辨别,并且由高度保守的区域侧翼,允许对DNA条形码标准化的通用引物设计。本文介绍了用于鉴定真核光合生物,其性质,优点和缺点的标记,以及所提出的标准DNA条形码。这项工作侧重于微藻和大草原,这具有很大的生态重要性,并且广泛用于食品,制药或能源行业,在那里它们快速,正确和可靠的识别至关重要。 (c)2019年欧洲区域地区生态学研究中心的波兰科学院。 elsevier b.v出版。保留所有权利。

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