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Rosaceae, Brassicaceae and pollen beetles: exploring relationships and evolution in an anthophilous beetle lineage (Nitidulidae, Meligethes-complex of genera) using an integrative approach
by
Scaramuzzi, Andrea
, Cline, Andrew Richard
, Paradisi, Simone
, Audisio, Paolo
, Sabatelli, Simone
, Mancini, Emiliano
, Liu, Meike
, Huang, Min
, Badano, Davide
in
ancestry
/ Animal Physiology
/ Applied Ecology
/ Beetles
/ Behavior
/ Biodiversity
/ Biological research
/ Biology, Experimental
/ Biomedical and Life Sciences
/ Brassicaceae
/ Brassicogethes
/ China
/ Coleoptera
/ Cruciferae
/ Diseases and pests
/ Evolution
/ Flowers
/ Fruits
/ Genetic aspects
/ Host plants
/ Host-shift
/ Langhian age
/ Larvae
/ Life Sciences
/ Meligethes
/ Miocene
/ mitochondria
/ Mitochondrial DNA
/ monophyly
/ Morphology
/ Natural history
/ Nucleotide sequence
/ nucleotide sequences
/ Palaearctic region
/ Palearctic region
/ Phylogenetics
/ Phylogeny
/ Plant-pathogen relationships
/ Pleistocene
/ Pollen
/ Pollen beetles
/ Rosaceae
/ Rosoideae
/ Rubus
/ Species
/ Sutures
/ Zoology
2021
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Rosaceae, Brassicaceae and pollen beetles: exploring relationships and evolution in an anthophilous beetle lineage (Nitidulidae, Meligethes-complex of genera) using an integrative approach
by
Scaramuzzi, Andrea
, Cline, Andrew Richard
, Paradisi, Simone
, Audisio, Paolo
, Sabatelli, Simone
, Mancini, Emiliano
, Liu, Meike
, Huang, Min
, Badano, Davide
in
ancestry
/ Animal Physiology
/ Applied Ecology
/ Beetles
/ Behavior
/ Biodiversity
/ Biological research
/ Biology, Experimental
/ Biomedical and Life Sciences
/ Brassicaceae
/ Brassicogethes
/ China
/ Coleoptera
/ Cruciferae
/ Diseases and pests
/ Evolution
/ Flowers
/ Fruits
/ Genetic aspects
/ Host plants
/ Host-shift
/ Langhian age
/ Larvae
/ Life Sciences
/ Meligethes
/ Miocene
/ mitochondria
/ Mitochondrial DNA
/ monophyly
/ Morphology
/ Natural history
/ Nucleotide sequence
/ nucleotide sequences
/ Palaearctic region
/ Palearctic region
/ Phylogenetics
/ Phylogeny
/ Plant-pathogen relationships
/ Pleistocene
/ Pollen
/ Pollen beetles
/ Rosaceae
/ Rosoideae
/ Rubus
/ Species
/ Sutures
/ Zoology
2021
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Rosaceae, Brassicaceae and pollen beetles: exploring relationships and evolution in an anthophilous beetle lineage (Nitidulidae, Meligethes-complex of genera) using an integrative approach
by
Scaramuzzi, Andrea
, Cline, Andrew Richard
, Paradisi, Simone
, Audisio, Paolo
, Sabatelli, Simone
, Mancini, Emiliano
, Liu, Meike
, Huang, Min
, Badano, Davide
in
ancestry
/ Animal Physiology
/ Applied Ecology
/ Beetles
/ Behavior
/ Biodiversity
/ Biological research
/ Biology, Experimental
/ Biomedical and Life Sciences
/ Brassicaceae
/ Brassicogethes
/ China
/ Coleoptera
/ Cruciferae
/ Diseases and pests
/ Evolution
/ Flowers
/ Fruits
/ Genetic aspects
/ Host plants
/ Host-shift
/ Langhian age
/ Larvae
/ Life Sciences
/ Meligethes
/ Miocene
/ mitochondria
/ Mitochondrial DNA
/ monophyly
/ Morphology
/ Natural history
/ Nucleotide sequence
/ nucleotide sequences
/ Palaearctic region
/ Palearctic region
/ Phylogenetics
/ Phylogeny
/ Plant-pathogen relationships
/ Pleistocene
/ Pollen
/ Pollen beetles
/ Rosaceae
/ Rosoideae
/ Rubus
/ Species
/ Sutures
/ Zoology
2021
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Rosaceae, Brassicaceae and pollen beetles: exploring relationships and evolution in an anthophilous beetle lineage (Nitidulidae, Meligethes-complex of genera) using an integrative approach
Journal Article
Rosaceae, Brassicaceae and pollen beetles: exploring relationships and evolution in an anthophilous beetle lineage (Nitidulidae, Meligethes-complex of genera) using an integrative approach
2021
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Overview
Background
Meligethes
are pollen-beetles associated with flowers of Rosaceae as larvae. This genus currently consists of 63 known species in two subgenera,
Meligethes
and
Odonthogethes,
predominantly occurring in the eastern Palaearctic. We analyzed 74 morphological and ecological characters (169 states) of all species, as well as of 11 outgroup species from 7 Meligethinae genera (including
Brassicogethes
), to investigate their phylogeny. We also conducted a parallel molecular analysis on 9
Meligethes
, 9
Odonthogethes
, 3
Brassicogethes
and 2
Meligethinus
species based on DNA sequence data from mitochondrial (COI, 16S) and nuclear (CAD) genes.
Results
Morphological phylogenetic reconstructions supported the monophyly of the whole genus and clades corresponding to purported subgenera
Meligethes
s.str. and
Odonthogethes.
Main species-groups were mostly confirmed, however some unresolved polytomies remained. Molecular data placed members of
Brassicogethes
(including 42 mostly W Palearctic species associated with Brassicaceae) as sister to
Odonthogethes,
with this clade being sister to
Meligethes
s.str. This phylogenetic scenario suggests that monophyletic
Meligethes
s.str.,
Odonthogethes
and
Brassicogethes
should be regarded alternatively as three subgenera of a monophyletic
Meligethes
, or three genera in a monophyletic genus-complex, with mutually monophyletic
Brassicogethes
and
Odonthogethes
. Molecular analyses estimated the origin of this lineage at ca. 14–15 Mya from a common stem including
Meligethinus
.
Conclusions
We hypothesize that the ancestor of
Meligethes
specialized on Rosaceae in the Middle Miocene (likely in Langhian Age) and subsequently radiated during Late Miocene and Plio-Pleistocene maintaining a trophic niche on this plant family. This radiation was primarily due to geographic isolation in E Asiatic mountain systems. Combined evidence from morphology, ancestral state parsimony reconstruction of host-plant associations and molecular evidence suggested that Rosoideae (
Rosa
spp.) represented the ancestral hosts of
Meligethes
s.str., followed by an independent shift of ancestral
Odonthogethes
(ca. 9–15 Mya) on
Rubus
(Rosoideae) and members of Rosaceae Spiraeoideae. Other ancestral
Odonthogethes
probably shifted again on the unrelated plant family Brassicaceae (maybe 8–14 Mya in S China), allowing a rapid westward radiation of the
Brassicogethes
clade.
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