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Genotyping Single Nucleotide Polymorphisms in the Mitochondrial Genome by Pyrosequencing
Published on: February 10, 2023
Mitochondrial DNA polymorphisms in Phytophthora infestans: new haplotypes are identified and re-defined by PCR
Zhi-Hui Yang1, Ming-Xing Qi, Yu-Xuan Qin
1College of Plant Protection, Agricultural University of Hebei, Baoding 071001, China.
Abstract:
Polymorphisms of mitochondrial DNA (mt-DNA) are particularly useful for monitoring specific pathogen populations like Phytophthora infestans. Basically type I and II of P. infestans mt-DNA were categorized by means of polymorphism lengths caused by an ~2 kb insertion, which can be detected via restriction enzyme digestion. In addition genome sequencing of haplotype Ib has been used as a simple Polymerase Chain Reaction-Restriction Fragment Length Polymorphism (PCR-RFLP) method to indirectly identify type I and II alterations through EcoR I restriction enzyme DNA fragment patterns of the genomic P4 area. However, with the common method, wrong mt-DNA typing occurs due to an EcoR I recognition site mutation in the P4 genomic area. Genome sequencing of the four haplotypes (Ia, Ib, IIa, and IIb) allowed us to thoroughly examine mt-DNA polymorphisms and we indentified two hypervariable regions (HVRs) named HVRi and HVRii. The HVRi length polymorphism caused by a 2 kb insertion/deletion was utilized to identify mt-DNA types I and II, while another length polymorphism in the HVRii region is caused by a variable number of tandem repeats (n = 1, 2, or 3) of a 36 bp sized DNA stretch and was further used to determine mt-DNA sub-types, which were described as R(n = 1, 2, or 3). Finally, the P. infestans mt-DNA haplotypes were re-defined as IR(1) or IIR(2) according to PCR derived HVRi and HVRii length polymorphisms. Twenty-three isolates were chosen to verify the feasibility of our new approach for identifying mt-DNA haplotypes and a total of five haplotypes (IR(1), IR(2), IR(3), IIR(2) and IIR(3)) were identified. Additionally, we found that six isolates determined as type I by our method were mistakenly identified as type II by the PCR-RFLP technique. In conclusion, we propose a simple and rapid PCR method for identification of mt-DNA haplotypes based on sequence analyses of the mitochondrial P. infestans genome.
Insights
This study introduces a new PCR method for accurate Phytophthora infestans mitochondrial DNA (mt-DNA) typing. The method identifies five haplotypes, correcting errors from previous PCR-RFLP techniques.
Area of Science:
- * Molecular Biology
- * Plant Pathology
- * Genomics
Background:
- * Mitochondrial DNA (mt-DNA) polymorphisms are crucial for tracking pathogen populations like Phytophthora infestans.
- * Existing methods using Polymerase Chain Reaction-Restriction Fragment Length Polymorphism (PCR-RFLP) for mt-DNA typing can lead to misidentification due to mutations.
Purpose of the Study:
- * To develop a more accurate and rapid method for identifying Phytophthora infestans mt-DNA haplotypes.
- * To re-evaluate and refine the classification of mt-DNA types and sub-types in Phytophthora infestans.
Main Methods:
- * Genome sequencing of four Phytophthora infestans haplotypes (Ia, Ib, IIa, IIb) to identify hypervariable regions (HVRs).
- * Analysis of length polymorphisms in HVRi (2 kb insertion/deletion) and HVRii (variable number of tandem repeats) for mt-DNA typing.
- * Development of a Polymerase Chain Reaction (PCR) based method utilizing these HVR polymorphisms.
Main Results:
- * Two hypervariable regions, HVRi and HVRii, were identified in the Phytophthora infestans mitochondrial genome.
- * A new classification system redefined haplotypes as IR(n) and IIR(n) based on HVRi and HVRii length polymorphisms.
- * The new PCR method successfully identified five haplotypes (IR(1), IR(2), IR(3), IIR(2), IIR(3)) in 23 isolates.
- * Six isolates previously misidentified as type II by PCR-RFLP were correctly identified as type I using the new method.
Conclusions:
- * A simple, rapid, and accurate PCR method for identifying Phytophthora infestans mt-DNA haplotypes has been established.
- * This new method overcomes limitations of previous PCR-RFLP techniques, improving pathogen monitoring.
- * The findings provide a refined tool for molecular epidemiology and population studies of Phytophthora infestans.

