Phylogenetic analysis of Blaberoidea reveals non‐monophyly of taxa and supports the creation of multiple new subfamilies

Author:

Wang Yi‐Shu1,Zhang Jia‐Wei1,Lo Nathan2,Bourguignon Thomas3,Guo Lin1,Li Bian‐Lun1,Che Yan‐Li1,Wang Zong‐Qing14

Affiliation:

1. College of Plant Protection Southwest University Beibei Chongqing 400715 China

2. School of Life and Environmental Sciences University of Sydney Sydney New South Wales 2006 Australia

3. Okinawa Institute of Science and Technology Graduate University Onna‐son 904‐0495 Japan

4. Key Laboratory of Agricultural Biosafety and Green Production of Upper Yangtze River (Ministry of Education) Southwest University Beibei Chongqing 400715 China

Abstract

AbstractThe superfamily Blaberoidea is a highly species‐rich group of cockroaches. High‐level blaberoidean phylogenetics are still under debate owing to variable taxon sampling and incongruence between mitochondrial and nuclear evolution, as well as different methods used in various phylogenetic studies. We here present a phylogenetic analysis of Blaberoidea based on a dataset combining the mitochondrial genome with two nuclear markers from representatives of all recognized families within the superfamily. Our results support the monophyly of Blaberiodea, which includes Ectobiidae s.s. (=Ectobiinae), Pseudophyllodromiidae, Nyctiboridae, Blattellidae s.s. (=Blattellinae) and Blaberidae. Ectobiidae s.s. was recovered as sister to the remaining Blaberoidea in all inferences. Pseudophyllodromiidae was paraphyletic with respect to Anaplectoidea + Malaccina. Blattellidae s.s. excluding Anaplectoidea + Malaccina formed a monophyletic group that was sister to Blaberidae. Based on our results, we propose a revised classification for Blaberoidea: Anaplectoidinae subfam.nov. and Episorineuchora gen.nov., and two new combinations at species level within Pseudophyllodromiidae; Rhabdoblattellinae subfam.nov., Calolamprodinae subfam.nov., Acutirhabdoblatta gen.nov., as well as new combinations for three species within Blaberidae. Ancestral state reconstructions based on four morphological characters allow us to infer that the common ancestor of blaberoid cockroaches is likely to be a species with characteristics similar to those found in Ectobiidae, that is, front femur Type B, arolium present, abdomen with a visible gland and male genital hook on the left side.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Ecology, Evolution, Behavior and Systematics

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