Preparation of TA-cloned positive control for diagnostic PCR detection of phytoplasma associated with Cassava phytoplasma disease

  • Karen B. Alviar Institute of Weed Science, Entomology and Plant Pathology (IWEP), College of Agriculture and Food Science University of the Philippines Los Baños Philippines
  • Claire S. Ramos National Institute of Molecular Biology and Biotechnology (BIOTECH) University of the Philippines Los Baños Philippines
Keywords: phytoplasma, 16S rRNA, nested PCR, insect vector, TA cloning

Abstract

Cassava is one of the main foods in the country with more than 15 million Filipinos consuming this crop as staple or supplemental food. It is also a raw material used for feeds, alcohol and other industrial products. However, the Philippine cassava industry faces an emerging disease called Cassava Phytoplasma Disease (CPD). CPD is caused by a bacteria-like organism called phytoplasma. Here, we wanted to confirm phytoplasma infection in cassava showing witches’ broom symptoms typical of CPD. We carried out molecular analysis using polymerase chain reaction (PCR), cloning, restriction enzyme digestion and sequencing methods to identify a cassava phytoplasma strain from an infected cassava plant showing symptoms of CPD. Plant DNA was extracted and used as a template in PCR reaction using universal primers amplifying the 16S rRNA region of phytoplasma. A nested PCR using primer pair R16mF2/R16mR1 in the first amplification followed by R16F2n/R16R2n in the second amplification was performed. PCR products were purified and transformed in a TA cloning vector. Following restriction enzyme digestion for insert verification, plasmid DNA about 1.5 kb in size was sequenced. Blast n search revealed homology with a phytoplasma strain causing sugarcane grassy shoot disease. Plasmid DNA with established sequence identity based on homology to 16S rRNA phytoplasma will serve as our positive control template for future PCR diagnostics of plant or insect samples associated with cassava phytoplasma disease.

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References

[1] Kumar S, Stecher G, Tamura K. 2016. “MEGA7: Molecular Evolutionary Genetics Analysis Version 7.0 for Bigger Datasets.” Molecular Biology and Evolution Jul;33(7):1870-4. doi: 10.1093/molbev/msw054. Epub Mar 22. PMID: 27004904
[2] Beanland, Phyllis G. Weintraub and LeAnn. 2006. “Insect Vectors of Phytoplasmas.” Annual Review of Entomology 51: 91–111.
[3] Marcone, C. 2012. “Advances in Differentiation and Classification of Phytoplasmas.” Annals of Applied Biology 160: 201–3.
[4] Marcone, C. 2002. “Phytoplasma Diseases of Sugarcane.” Sugar Tech 4 (3): 79–85. https://doi.org/10.1007/BF02942687.
[5] Yadav, Amit, Vipool Thorat, Subhash Deokule, Yogesh Shouche, and D. Theerthaprasad. 2017. “New Subgroup 16srxi-f Phytoplasma Strain Associated with Sugarcane Grassy Shoot (SCGS) Disease in India.” International Journal of Systematic and Evolutionary Microbiology 67 (2): 374–78. https://doi.org/10.1099/ijsem.0.001635.

[6] Cueva, Fe M. dela, and Manuela A. Samaco. 2017. “Disease Screening and Post-Entry Quarantine Program for Safe Introduction of Sugarcane Varieties in the Philippines.” Journal of the International Society for Southeast Asian Agricultural Sciences 23 (1): 33–43.
[7] Wang, Xiaoyan, Wen-feng Li, Ying-Kun Huang, R Y Zhang, H L Shan, Z M Luo, Jiong Yin and Ke Shen. 2014. “Identification of Sugarcane White Leaf Phytoplasma in Fields and Quaratine Sugarcane Samples in Yunnan Province, China.” Sugar Tech 17: 85–88.
[8] Bertaccini, A., Bojan Duduk, Samanta Paltrinieri, Nicoletta Contaldo. 2014. “Phytoplasmas and Phytoplasma Diseases: A Severe Threat to Agriculture.” American Journal of Plant Sciences, no. 5: 1763–88.
[9] Demeuse, Katherine L, Ari S Grode, and Zsofia Szendrei. 2016. “Comparing QPCR and Nested PCR Diagnostic Methods for Aster Yellows Phytoplasma in Aster Leafhoppers.” Plant Disease 100 (12): 2513–19. https://doi.org/10.1016/j.hfc.2015.08.007.
Published
2020-12-01
How to Cite
Alviar, K. B., & Claire S. Ramos. (2020). Preparation of TA-cloned positive control for diagnostic PCR detection of phytoplasma associated with Cassava phytoplasma disease. IJRDO - JOURNAL OF BIOLOGICAL SCIENCE, 6(11), 01-08. https://doi.org/10.53555/bs.v6i11.3960