Automated ISSR fingerprinting is a cost-effective way to assess genetic diversity and Taxonomic differentiation—a case study on the Encephalartos eugene-maraisii species complex
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Automated ISSR fingerprinting is a cost-effective way to assess genetic diversity and Taxonomic differentiation—a case study on the Encephalartos eugene-maraisii species complex
Murphy, Deanne; Barker, Nigel; Frisby, Arnold Walter
Recent technological advancements in conservation genetics and genomics have resulted in diverse tools for aiding the conservation of species. The precision and resolution of high throughput sequencing technologies provide valuable insights to aid conservation decisions, but these technologies are often financially unfeasible or unavailable in resource constrained countries. Inter-Simple Sequence Repeat (ISSR) markers, when combined with sensitive automated detection systems, provide a simple, cheap means to investigate genetic diversity and discriminate closely related species. Here, we apply this technology to assess genetic diversity and taxonomic delimitation in the Encephalartos eugene-maraisii species complex, a highly threatened, taxonomically dubious group of cycads in South Africa. Our analyses support the taxonomic singularity of E. dyerianus, E. dolomiticus and E. eugene-maraisii. Relationships between E. nubimontanus and E. cupidus remain uncertain. E. middelburgensis samples showed no clustering but had poor amplification success. This study demonstrates the suitability of automated ISSR fingerprinting as a method for plant conservation studies, especially in resource-constrained countries, and we make recommendations as to how this methodology can be effectively implemented.
Description:
SUPPLEMENTARY MATERIAL : TABLE S1: ISSR studies on cycads [153,154,155,156,157,158,159,160]; TABLE S2: Variants within the E. eugene-maraisii complex; TABLE S3: Amplification success of samples; TABLES4: Correlation coefficients; TABLE S5: List of cycad samples; FIGURE S1: Gels primer selection; FIGURE S2: Gels all samples; FIGURE S3: STRUCTURE analysis 100 rfu; FIGURE S4: STRUCTURE analysis 200 rfu; FIGURE S5: STRUCTURE K = 7 plots; FIGURE S6: NJ 100 rfu; FIGURE S7: UPGMA 100 rfu; FIGURE S8: UPGMA 200 rfu; FIGURE S9: NJ 200 rfu; FIGURE S10: Network 100 rfu; FIGURE S11: Network 200 rfu.
DATA AVAILABILITY STATEMENT :
The original contributions presented in the study are included in the article/Supplementary Material, further inquiries can be directed to the corresponding author.