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Phytoplasma-specific PCR primers based on sequences of the 16S-23S rRNA spacer region.

机译:基于16S-23S rRNA间隔区的序列的植物浆体特异性PCR引物。

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摘要

In order to develop a diagnostic tool to identify phytoplasmas and classify them according to their phylogenetic group, we took advantage of the sequence diversity of the 16S-23S intergenic spacer regions (SRs) of phytoplasmas. Ten PCR primers were developed from the SR sequences and were shown to amplify in a group-specific fashion. For some groups of phytoplasmas, such as elm yellows, ash yellows, and pear decline, the SR primer was paired with a specific primer from within the 16S rRNA gene. Each of these primer pairs was specific for a specific phytoplasma group, and they did not produce PCR products of the correct size from any other phytoplasma group. One primer was designed to anneal within the conserved tRNA(Ile) and, when paired with a universal primer, amplified all phytoplasmas tested. None of the primers produced PCR amplification products of the correct size from healthy plant DNA. These primers can serve as effective tools for identifying particular phytoplasmas in field samples.
机译:为了开发一种诊断工具,以鉴定植物原质并根据其系统发育分类对其进行分类,我们利用了植物原质的16S-23S基因间隔区(SR)的序列多样性。从SR序列中开发了十个PCR引物,并显示它们以组特异性方式扩增。对于某些植物质原体,例如榆黄色,灰黄色和梨色下降,SR引物与16S rRNA基因中的特定引物配对。这些引物对中的每一个都对特​​定的植物原质组具有特异性,并且它们没有从任何其他植物原质组中产生正确大小的PCR产物。一种引物被设计为在保守的tRNA(Ile)内退火,并与通用引物配对时,扩增了所有被检测的植物原质。没有一个引物从健康的植物DNA产生正确大小的PCR扩增产物。这些引物可以用作鉴定田间样品中特定植物质体的有效工具。

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