Reconsideration of species boundaries and proposed DNA barcodes for Calonectria

Q L Liu1,2,3, J Q Li1,2,3, M J Wingfield3

  • 1China Eucalypt Research Centre (CERC), Chinese Academy of Forestry (CAF), ZhanJiang, 524022, GuangDong Province, China.

Studies in Mycology
|July 29, 2021
PubMed

Insights

This study re-evaluates 169 Calonectria fungal species using extensive DNA sequencing. Phylogenetic analyses clarify species boundaries, reducing synonyms and identifying new species, resulting in 120 accepted Calonectria taxa.

Area of Science:

  • Mycology
  • Plant Pathology
  • Molecular Systematics

Background:

  • Calonectria is a genus of worldwide phytopathogenic fungi with numerous described species.
  • Previous taxonomic studies relied on limited DNA data, necessitating a re-evaluation of species boundaries.
  • Robust phylogenetic analyses are crucial for accurate Calonectria species identification.

Purpose of the Study:

  • To re-evaluate the species boundaries of the genus Calonectria using comprehensive phylogenetic analyses.
  • To establish reliable DNA barcodes for accurate species identification within Calonectria.
  • To provide a revised taxonomy for the genus Calonectria.

Main Methods:

  • Phylogenetic analyses were conducted using DNA sequence data from eight gene regions (act, cmdA, his3, ITS, LSU, rpb2, tef1, tub2).
  • 240 isolates, including ex-types of 128 species, were re-sequenced; data for 44 additional species were downloaded from GenBank.
  • The genus-wide phylogenetic analyses included all 169 described Calonectria species.

Main Results:

  • Phylogenetic analyses led to the synonymization of 51 species, identification of two new species, and validation of Ca. lauri, resulting in 120 accepted species.
  • The genus Calonectria was found to comprise 11 species complexes within the Prolate and Sphaero-Naviculate Groups.
  • A combination of six gene regions (tef1, tub2, cmdA, his3, rpb2, act) proved effective as DNA barcodes for resolving all 120 species and 11 species complexes.

Conclusions:

  • The revised phylogenetic framework clarifies the taxonomy of the genus Calonectria, establishing 120 distinct species.
  • A multi-gene approach using tef1, tub2, cmdA, his3, rpb2, and act is recommended as a robust DNA barcoding strategy for Calonectria.
  • This study provides a foundation for future research on Calonectria, including population genetics and pathogenicity studies.

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