4.6 Article

Single nucleotide polymorphism-mismatch primer development for rapid molecular identification of selected microalgal species

期刊

JOURNAL OF APPLIED PHYCOLOGY
卷 33, 期 3, 页码 1685-1694

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SPRINGER
DOI: 10.1007/s10811-021-02409-z

关键词

Microalgae; Molecular diagnostics; Quality control; Single nucleotide polymorphism

资金

  1. US Department of Energy Office (DOE) of Biomass Program [DE-EE0003046]
  2. DOE RAFT Project [DE-EE0006269]

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This study designed specific primers based on the 18S ribosomal RNA sequences of microalgae, enabling rapid detection of 12 microalgae without the need for cloning and sequencing. The use of SNP-mismatch primer pairs successfully identified C. sorokiniana DOE1412 and Scenedesmus among others, offering a cost-effective and easy alternative for routine monitoring of microalgal cultures.
Microalgae have been a great source for food, cosmetic, pharmacological, and biofuel production. The adoption of effective diagnostic assays for monitoring all stages of algal cultivation has become essential. In addition to microscopy identification, molecular assays can aid greatly in the identification and monitoring of algal species of interest. In this study the 18S ribosomal RNA (rRNA) sequences of 12 microalgal species and/or strains were used to design algal identification primers. Sequence alignment revealed five highly variable regions and multiple unique single nucleotide polymorphisms (SNPs). To design target algae specific primers, a SNP identified as unique to each microalgal species was incorporated into the 3'-terminus of forward and reverse primer pairs, respectively. To further enhance primer specificity, transverse mutation was introduced into each primer at the third base upstream of the respective SNP. The SNP-mismatch primer pairs yield size-specific amplicons, enabling the rapid molecular detection of 12 microalgae by circumventing cloning and sequencing. To verify the primer specificity, two SNP-mismatch primer pairs designed for Chlorella sorokiniana DOE1412 and wildtype species of Scenedesmus were tested in the outdoor reactor run inoculated with C. sorokiniana DOE1412. The primer pairs were able to identify C. sorokiniana DOE1412 as well as the environmental invader Scenedesmus sp. Furthermore, the relative concentration of two microalgae was accessed throughout the entire cultivation run. The use of SNPs primers designed in this study offers a cost-effective, easy to use alternative for routine monitoring of microalgal cultures in laboratories, in scale-ups, and in cultivation reactors, independent of the production platform.

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