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  5. The origin and morphological character evolution of the paleotropical woody bamboos.

The origin and morphological character evolution of the paleotropical woody bamboos.

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Resource type
Journal article
Creator (person)
Liu, Jing‐Xia
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Guo, Cen
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Ma, Peng‐Fei
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Zhou, Meng‐Yuan
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Luo, Ya‐Huang
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Date published
August 21, 2024
Abstract

The woody bamboos (Bambusoideae) exhibit distinctive biological traits within Poaceae, such as highly lignified culms, rapid shoot growth, monocarpic mass flowering and nutlike or fleshy caryopses. Much of the remarkable morphological diversity across the subfamily exists within a single hexaploid clade, the paleotropical woody bamboos (PWB), making it ideal to investigate the factors underlying morphological evolution in woody bamboos. However, the origin and biogeographical history of PWB remain elusive, as does the effect of environmental factors on the evolution of their morphological characters. We generated a robust and time‐calibrated phylogeny of PWB using single nucleotide polymorphisms retrieved from optimized double digest restriction site associated DNA sequencing, and explored the evolutionary trends of habit, inflorescence, and caryopsis type in relation to environmental factors including climate, soil, and topography. We inferred that the PWB started to diversify across the Oligocene–Miocene boundary and formed four major clades, that is, Melocanninae, Racemobambosinae (comprising Dinochloinae, Greslanlinae, Racemobambosinae and Temburongiinae), Hickeliinae and Bambusinae (comprising Bambusinae plus Holttumochloinae). The ancestor of PWB was reconstructed as having erect habit, indeterminate inflorescence and basic caryopsis. The characters including climbing/scrambling habit, determinate inflorescence, and nucoid/bacoid caryopsis have since undergone multiple changes and reversals during the diversification of PWB. The evolution of all three traits was correlated with, and hence likely influenced by, aspects of climate, topography, and soil, with climate factors most strongly correlated with morphological traits, and soil factors least so. However, topography had more influence than climate or soil on the evolution of erect habit, whereas both factors had greater effect on the evolution of bacoid caryopsis than did soil. Our results provide novel insights into morphological diversity and adaptive evolution in bamboos for future ecological and evolutionary research.

Organisational unit
Science
Project(s)
Priority 4: Accelerated Taxonomy
Funder
Funder nameISNIAwards
National Natural Science Foundation of China, China
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No. 32120103003 - No. 31970355 - No. 32300206
Key Research & Development program of Yunnan Province, China
No. 202103AC100003
Postdoctoral Directional Training Foundation of Yunnan Province, China
Journal title
Journal of Integrative Plant Biology
Article number
jipb.13751
Publisher
John Wiley & Sons Australia, Ltd on behalf of Institute of Botany, Chinese Academy of Sciences
Place of publication
Australia
ISSN
1672-9072
eISSN
1744-7909
Date accepted
July 3, 2024
Official URL
https://doi.org/10.1111/jipb.13751
Rights statement
In Copyright
Licence
CC BY-NC-ND 4.0
DOI
10.1111/jipb.13751
Alternate identifier
jipb.13751
Keywords
Morphological evolution
Bamboos
Bambuseae
Environmental factors
Biogeography
ddRAD-seq
Phylogenomics
Additional information
IF = 9.106 (2023-2024)
Managed by the British Library and supported by the AHRC

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