RRC ID 76749
著者 Inglis PW, Cavalcanti TB, Facco MG, Bakker FT, Graham SA.
タイトル A comprehensive genus-level phylogeny and biogeographical history of the Lythraceae based on whole plastome sequences.
ジャーナル Ann Bot
Abstract BACKGROUND AND AIMS:The Lythraceae are a mainly subtropical to tropical family of the order Myrtales with 28 currently accepted genera and approximately 600 species. There is currently no well-supported phylogenetic and biogeographical hypothesis of the Lythraceae incorporating all currently accepted genera, which we sought to provide.
METHODS:Plastomes of representative species of 18 distinct Lythraceae genera were sequenced and annotated. Together with existing sequences, plastomes of all 28 currently accepted genera in the Lythraceae were brought together for the first time. The plastomes were aligned and a Bayesian phylogenetic hypothesis produced. We then conducted a time-calibrated Bayesian analysis and a biogeographical analysis.
KEY RESULTS:Plastome-based Bayesian and maximum likelihood phylogenetic trees are generally congruent with recent nuclear phylogenomic data and resolve two deeply branching major clades in the Lythraceae. One major clade concentrates shrubby and arboreal South American and African genera that inhabit seasonally dry environments, with larger, often winged seeds, adapted to dispersal by the wind. The second major clade concentrates North American, Asian, African, and several near-cosmopolitan herbaceous, shrubby and arboreal genera, often inhabiting humid or aquatic environments, with smaller seeds possessing structures that facilitate dispersal by water.
CONCLUSIONS:We hypothesize that the Lythraceae dispersed by the early Upper Cretaceous from South American to North American continents, with subsequent expansion in the Upper Cretaceous of a North American lineage through Laurasia to Africa via a boreotropical route. Two later expansions of South American clades to Africa in the Paleocene and Eocene, respectively, are also hypothesised. Transoceanic dispersal in the family is possibly facilitated by adaptations to aquatic environments that are common to many extant genera of the Lythraceae, where long-distance dispersal and vicariance may be invoked to explain several remarkable disjunct distributions in Lythraceae clades.
公開日 2023-7-13
DOI 10.1093/aob/mcad091
PII 7223657
解説 J-OBIS data were referenced. BiodiC-J data were referenced.
PMID 37439499
PMC PMC10583215
MeSH Africa Bayes Theorem Lythraceae* Phylogeny Phylogeography
IF 4.005
リソース情報
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