@ARTICLE{TreeBASE2Ref20264,
author = {Lars Nauheimer and Peter Charles Boyce and Susanne S Renner},
title = {Giant taro and its relatives: A phylogeny of the large genus Alocasia (Araceae) sheds light on miocene floristic exchange in the malesian region },
year = {2011},
keywords = {Ancestral area reconstruction; Colocasia; Miocene climatic optimum; molecular clock; Wallacea, Sundaland },
doi = {10.1016/j.ympev.2011.12.011},
url = {http://},
pmid = {},
journal = {Molecular Phylogenetics and Evolution},
volume = {},
number = {},
pages = {},
abstract = {Alocasia comprises over 113 species of rainforest understorey plants in Southeast Asia, the Malesian region, and Australia. Several species, including giant taro, A. macrorrhizos, and Chinese taro, A. cucullata, are important food plants or ornamentals. We investigated the biogeography of this genus using plastid and nuclear DNA sequences (5200 nucleotides) from 78 accessions representing 71 species, plus 25 species representing 16 genera of the Pistia clade to which Alocasia belongs. Divergence times were inferred under strict and relaxed clock models, and ancestral areas with Bayesian and maximum likelihood approaches. Alocasia is monophyletic and sister to Colocasia gigantea from the SE Asian mainland, whereas the type species of Colocasia groups with Steudnera and Remusatia, requiring taxonomic realignments. Nuclear and plastid trees show topological conflict, with the nuclear trees reflecting morphological similarities, the plastid trees species? geographic proximity, suggesting chloroplast capture. The ancestor of Alocasia diverged from its mainland sister group c. 24 million years ago, and Borneo then played a central role in the expansion of Alocasia: 11?13 of 18?19 inferred dispersal events originated on Borneo. The Philippines were reached from Borneo 4?5 times in the Late Miocene and Early Pliocene, and the Asian mainland 6?7 times in the Pliocene. Domesticated giant taro originated on the Philippines, Chinese taro on the Asian mainland.}
}
Matrices for Study 12182

Citation title:
"Giant taro and its relatives: A phylogeny of the large genus Alocasia (Araceae) sheds light on miocene floristic exchange in the malesian region ".

Study name:
"Giant taro and its relatives: A phylogeny of the large genus Alocasia (Araceae) sheds light on miocene floristic exchange in the malesian region ".

This study is part of submission 12182
(Status: Published).
Matrices
| ID |
Matrix Title |
Description |
Data type |
NTAX |
NCHAR |
Taxa |
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M57893
|
Fig. S10B Saccharata RPB2 alignment |
|
Nucleic Acid |
32 |
627 |
View Taxa
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|
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|
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M57868
|
Fig. S4B Lasiodiplodia RPB2 alignment |
|
Nucleic Acid |
112 |
520 |
View Taxa
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M57880
|
Fig. S6C Neofusicoccum parvum complex TEF1 alignment |
|
Nucleic Acid |
71 |
281 |
View Taxa
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|
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M57813
|
Fig. 2. Diplodia ITS TEF1 TUB2 alignment |
|
Nucleic Acid |
180 |
1291 |
View Taxa
|
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M57892
|
Fig. S10A Saccharata ITS alignment |
|
Nucleic Acid |
41 |
550 |
View Taxa
|
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M57871
|
Fig. S4D Lasiodiplodia TUB2 alignment |
|
Nucleic Acid |
130 |
402 |
View Taxa
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M57885
|
Fig. S7C Neoscytalidium TUB2 alignment |
|
Nucleic Acid |
65 |
358 |
View Taxa
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M57818
|
Fig. 7 Neoscytalidium ITS TEF1 TUB2 alignment |
|
Nucleic Acid |
66 |
1133 |
View Taxa
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M57819
|
Fig. 8 Phaeobotryon ITS LSU TEF1 alignment |
|
Nucleic Acid |
54 |
1726 |
View Taxa
|
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M57866
|
Fig. S4A Lasiodiplodia ITS alignment |
|
Nucleic Acid |
147 |
368 |
View Taxa
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M57812
|
Fig. 1. Botryosphaeria ITS TEF1 TUB2 alignment |
|
Nucleic Acid |
51 |
1206 |
View Taxa
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M57877
|
Fig. S6A Neofusicoccum parvum complex ITS alignment |
|
Nucleic Acid |
75 |
481 |
View Taxa
|
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M57823
|
Fig. S1B Botryosphaeria TEF1 alignment |
|
Nucleic Acid |
50 |
263 |
View Taxa
|
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M57824
|
Fig. S1C Botryosphaeria TUB2 alignment |
|
Nucleic Acid |
44 |
387 |
View Taxa
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M57887
|
Fig. S8B Phaeobotryon LSU alignment |
|
Nucleic Acid |
44 |
556 |
View Taxa
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M57815
|
Fig. 4 Lasiodiplodia ITS TEF1 TUB2 RPB2 alignment |
|
Nucleic Acid |
148 |
1612 |
View Taxa
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M57889
|
Fig. S9A Pseudofusicoccum ITS alignment |
|
Nucleic Acid |
30 |
493 |
View Taxa
|
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M57891
|
Fig. S9C Pseudofusicoccum TUB2 alignment |
|
Nucleic Acid |
23 |
427 |
View Taxa
|
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M57888
|
Fig. S8C Phaeobotryon TEF1 alignment |
|
Nucleic Acid |
45 |
339 |
View Taxa
|
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|
|
|
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M57886
|
Fig. S8A Phaeobotryon ITS alignment |
|
Nucleic Acid |
54 |
500 |
View Taxa
|
|
|
|
|
|
M57864
|
Fig. S3B Dothiorella TEF1 alignment |
|
Nucleic Acid |
121 |
269 |
View Taxa
|
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M57876
|
Fig. S5D Neofusicoccum TUB2 alignment |
|
Nucleic Acid |
203 |
381 |
View Taxa
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M57820
|
Fig. 9 Pseudofusicoccum TEF1 TUB2 ITS alignment |
|
Nucleic Acid |
30 |
1256 |
View Taxa
|
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M57872
|
Fig. S5A Neofusicoccum ITS alignment |
|
Nucleic Acid |
208 |
510 |
View Taxa
|
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|
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|
|
M57881
|
Fig. S6D Neofusicoccum parvum complex TUB2 alignment |
|
Nucleic Acid |
72 |
394 |
View Taxa
|
|
|
|
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M57883
|
Fig. S7A Neoscytalidium ITS alignment |
|
Nucleic Acid |
66 |
499 |
View Taxa
|
|
|
|
|
|
M57863
|
Fig. S3A Dothiorella ITS alignment |
|
Nucleic Acid |
123 |
479 |
View Taxa
|
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|
|
|
|
M57874
|
Fig. S5B Neofusicoccum RPB2 alignment |
|
Nucleic Acid |
176 |
539 |
View Taxa
|
|
|
|
|
|
M57821
|
Fig. 10 Saccharata ITS TEF1 RPB2 alignment |
|
Nucleic Acid |
41 |
1529 |
View Taxa
|
|
|
|
|
|
M57879
|
Fig. S6B Neofusicoccum parvum complex RPB2 alignment |
|
Nucleic Acid |
61 |
535 |
View Taxa
|
|
|
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|
|
M57862
|
Fig. S2C Diplodia TUB2 alignment |
|
Nucleic Acid |
167 |
389 |
View Taxa
|
|
|
|
|
|
M57825
|
Fig. S2A Diplodia ITS alignment |
|
Nucleic Acid |
179 |
522 |
View Taxa
|
|
|
|
|
|
M57814
|
Fig. 3 Dothiorella ITS TEF1 TUB2 alignment |
|
Nucleic Acid |
123 |
1272 |
View Taxa
|
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M57890
|
Fig. S9B Pseudofusicoccum TEF1 alignment |
|
Nucleic Acid |
30 |
295 |
View Taxa
|
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M57816
|
Fig. 5 Neofusicoccum ITS TEF1 TUB2 RPB2 alignment |
|
Nucleic Acid |
208 |
1840 |
View Taxa
|
|
|
|
|
|
M57875
|
Fig. S5C Neofusicoccum TEF1 alignment |
|
Nucleic Acid |
200 |
275 |
View Taxa
|
|
|
|
|
|
M57869
|
Fig. S4C Lasiodiplodia TEF1 alignment |
|
Nucleic Acid |
146 |
258 |
View Taxa
|
|
|
|
|
|
M57896
|
Fig. S10C Saccharata TEF1 alignment |
|
Nucleic Acid |
39 |
302 |
View Taxa
|
|
|
|
|
|
M57865
|
Fig. S3C Dothiorella TUB2 alignment |
|
Nucleic Acid |
109 |
415 |
View Taxa
|
|
|
|
|
|
M57817
|
Fig. 6 Neofusicoccum parvum ITS TEF1 TUB2 RPB2 alignment |
|
Nucleic Acid |
75 |
1805 |
View Taxa
|
|
|
|
|
|
M57884
|
Fig. S7B Neoscytalidium TEF1 alignment |
|
Nucleic Acid |
65 |
187 |
View Taxa
|
|
|
|
|
|
M57826
|
Fig. S2B Diplodia TEF1 alignment |
|
Nucleic Acid |
174 |
276 |
View Taxa
|
|
|
|
|
|
M57822
|
Fig. S1A Botryosphaeria ITS alignment |
|
Nucleic Acid |
51 |
461 |
View Taxa
|
|
|
|
|