Clade-specific responses regulate phenological patterns in Neotropical Myrtaceae

•Ecological factors drive Myrteae phenology in Atlantic forest.•Conservative flowering was found in the Gomidesia group.•Taxa grouped by embryo shape diverge in the fruiting time.•Seed germination requirement affect fruiting phenology.•Clades with conservative phenology should guide conservation ini...

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Published inPerspectives in plant ecology, evolution and systematics Vol. 17; no. 6; pp. 476 - 490
Main Authors Staggemeier, Vanessa G., Diniz-Filho, José Alexandre F., Zipparro, Valesca B., Gressler, Eliana, de Castro, Everaldo Rodrigo, Mazine, Fiorella, da Costa, Itayguara Ribeiro, Lucas, Eve, Morellato, Leonor Patrícia C.
Format Journal Article
LanguageEnglish
Published Elsevier GmbH 01.12.2015
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Abstract •Ecological factors drive Myrteae phenology in Atlantic forest.•Conservative flowering was found in the Gomidesia group.•Taxa grouped by embryo shape diverge in the fruiting time.•Seed germination requirement affect fruiting phenology.•Clades with conservative phenology should guide conservation initiatives. Understanding plant reproduction from an eco-phylogenetic perspective is essential because it allows us to predict how phenology could change in response to climatic changes. Unfortunately, reproductive patterns have been poorly explored in contemporary phylogenetic context until now. Closely related species are expected to reproduce in a similar ecological niche if phylogeny constrains the time of flowering and fruiting. In contrast, if climate determines phenology regardless of species affinities, species would randomly reproduce along favourable temporal axes. In this study, we used a clade of Neotropical Myrtaceae to test the influence of phylogenetic signal (PS) in phenology. Myrtaceae is the eighth largest angiosperm plant family in the world and the most speciose in the Atlantic rainforest. We reconstructed phylogenetic relationships among 57 Myrteae species plus an outgroup and quantified PS across three Atlantic rainforest communities: Saibadela, Cardoso and Picinguaba. Ecological factors were the main drivers of plant phenology. However, PS in plant reproduction was detected for flowering in Cardoso, suggesting a clade-specific response because flowering was conservative in the Gomidesia group. Fruiting in Saibadela also exhibited PS with phenological divergence between taxa with similar embryo shape and conservative fruiting time inside these groups, indicating that seed germination requirement can affect fruiting phenology. We suggest that investigation of PS in phenology should consider phylogenetic non-stationarity because evolutionary rates and ecological patterns are variable across taxa and often variable in short time scales. The identification of clades with conservative phenology, indicates the taxa most sensitive to climate change that can guide future conservation initiatives.
AbstractList •Ecological factors drive Myrteae phenology in Atlantic forest.•Conservative flowering was found in the Gomidesia group.•Taxa grouped by embryo shape diverge in the fruiting time.•Seed germination requirement affect fruiting phenology.•Clades with conservative phenology should guide conservation initiatives. Understanding plant reproduction from an eco-phylogenetic perspective is essential because it allows us to predict how phenology could change in response to climatic changes. Unfortunately, reproductive patterns have been poorly explored in contemporary phylogenetic context until now. Closely related species are expected to reproduce in a similar ecological niche if phylogeny constrains the time of flowering and fruiting. In contrast, if climate determines phenology regardless of species affinities, species would randomly reproduce along favourable temporal axes. In this study, we used a clade of Neotropical Myrtaceae to test the influence of phylogenetic signal (PS) in phenology. Myrtaceae is the eighth largest angiosperm plant family in the world and the most speciose in the Atlantic rainforest. We reconstructed phylogenetic relationships among 57 Myrteae species plus an outgroup and quantified PS across three Atlantic rainforest communities: Saibadela, Cardoso and Picinguaba. Ecological factors were the main drivers of plant phenology. However, PS in plant reproduction was detected for flowering in Cardoso, suggesting a clade-specific response because flowering was conservative in the Gomidesia group. Fruiting in Saibadela also exhibited PS with phenological divergence between taxa with similar embryo shape and conservative fruiting time inside these groups, indicating that seed germination requirement can affect fruiting phenology. We suggest that investigation of PS in phenology should consider phylogenetic non-stationarity because evolutionary rates and ecological patterns are variable across taxa and often variable in short time scales. The identification of clades with conservative phenology, indicates the taxa most sensitive to climate change that can guide future conservation initiatives.
Understanding plant reproduction from an eco-phylogenetic perspective is essential because it allows us to predict how phenology could change in response to climatic changes. Unfortunately, reproductive patterns have been poorly explored in contemporary phylogenetic context until now. Closely related species are expected to reproduce in a similar ecological niche if phylogeny constrains the time of flowering and fruiting. In contrast, if climate determines phenology regardless of species affinities, species would randomly reproduce along favourable temporal axes. In this study, we used a clade of Neotropical Myrtaceae to test the influence of phylogenetic signal (PS) in phenology. Myrtaceae is the eighth largest angiosperm plant family in the world and the most speciose in the Atlantic rainforest. We reconstructed phylogenetic relationships among 57 Myrteae species plus an outgroup and quantified PS across three Atlantic rainforest communities: Saibadela, Cardoso and Picinguaba. Ecological factors were the main drivers of plant phenology. However, PS in plant reproduction was detected for flowering in Cardoso, suggesting a clade-specific response because flowering was conservative in the Gomidesia group. Fruiting in Saibadela also exhibited PS with phenological divergence between taxa with similar embryo shape and conservative fruiting time inside these groups, indicating that seed germination requirement can affect fruiting phenology. We suggest that investigation of PS in phenology should consider phylogenetic non-stationarity because evolutionary rates and ecological patterns are variable across taxa and often variable in short time scales. The identification of clades with conservative phenology, indicates the taxa most sensitive to climate change that can guide future conservation initiatives.
Author Mazine, Fiorella
Zipparro, Valesca B.
Staggemeier, Vanessa G.
de Castro, Everaldo Rodrigo
Morellato, Leonor Patrícia C.
Lucas, Eve
Diniz-Filho, José Alexandre F.
Gressler, Eliana
da Costa, Itayguara Ribeiro
Author_xml – sequence: 1
  givenname: Vanessa G.
  orcidid: 0000-0003-4911-9574
  surname: Staggemeier
  fullname: Staggemeier, Vanessa G.
  email: v.staggemeier@gmail.com
  organization: Departamento de Ecologia, ICB, Universidade Federal de Goiás, C.P. 131, 74001-970, Goiânia, GO, Brazil
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  givenname: José Alexandre F.
  surname: Diniz-Filho
  fullname: Diniz-Filho, José Alexandre F.
  organization: Departamento de Ecologia, ICB, Universidade Federal de Goiás, C.P. 131, 74001-970, Goiânia, GO, Brazil
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  givenname: Valesca B.
  surname: Zipparro
  fullname: Zipparro, Valesca B.
  organization: Departamento de Botânica, Laboratório de Fenologia, Grupo de Fenologia e Dispersão de Sementes, UNESP – Univ Estadual Paulista UNESP, CP 199, 13.506-900, Rio Claro, SP, Brazil
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  givenname: Eliana
  surname: Gressler
  fullname: Gressler, Eliana
  organization: Departamento de Botânica, Laboratório de Fenologia, Grupo de Fenologia e Dispersão de Sementes, UNESP – Univ Estadual Paulista UNESP, CP 199, 13.506-900, Rio Claro, SP, Brazil
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  givenname: Everaldo Rodrigo
  surname: de Castro
  fullname: de Castro, Everaldo Rodrigo
  organization: Instituto Federal de Educação, Ciência e Tecnologia de São Paulo (IFSP), 14781-502 Barretos, SP, Brazil
– sequence: 6
  givenname: Fiorella
  surname: Mazine
  fullname: Mazine, Fiorella
  organization: Universidade Federal de São Carlos, Campus Sorocaba, Rod. SP-264, Km 110, 18052-780, Brazil
– sequence: 7
  givenname: Itayguara Ribeiro
  surname: da Costa
  fullname: da Costa, Itayguara Ribeiro
  organization: Departamento de Biologia, Universidade Federal do Ceará, Campus do Pici, 60455-760, Brazil
– sequence: 8
  givenname: Eve
  surname: Lucas
  fullname: Lucas, Eve
  organization: Herbarium, Royal Botanic Gardens, Kew, Richmond, Surrey TW9 3DS, United Kingdom
– sequence: 9
  givenname: Leonor Patrícia C.
  surname: Morellato
  fullname: Morellato, Leonor Patrícia C.
  organization: Departamento de Botânica, Laboratório de Fenologia, Grupo de Fenologia e Dispersão de Sementes, UNESP – Univ Estadual Paulista UNESP, CP 199, 13.506-900, Rio Claro, SP, Brazil
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Phylogenetic signal
Evolutionary models
K-statistic
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Flowering
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Snippet •Ecological factors drive Myrteae phenology in Atlantic forest.•Conservative flowering was found in the Gomidesia group.•Taxa grouped by embryo shape diverge...
Understanding plant reproduction from an eco-phylogenetic perspective is essential because it allows us to predict how phenology could change in response to...
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SubjectTerms climate change
Evolutionary models
Flowering
Fruiting
K-statistic
Myrtaceae
niches
phenology
Phylogenetic eigenvector regression
Phylogenetic signal
phylogeny
plant reproduction
rain forests
Resource availability
seed germination
tropics
Title Clade-specific responses regulate phenological patterns in Neotropical Myrtaceae
URI https://dx.doi.org/10.1016/j.ppees.2015.07.004
https://www.proquest.com/docview/2000144593
Volume 17
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