@ARTICLE{TreeBASE2Ref25243,
author = {Elizabeth Maree Sheedy and Martin Ryberg and Tom W May and Teresa Lebel and Neale L. Bougher and Patrick Brandon Matheny},
title = {Dating the emergence of truffle-like fungi in Australia, by using an augmented meta-analysis.},
year = {2016},
keywords = {aridification, Agaricomycetes, sequestrate, Basidiomycota, Cortinariaceae, Russulaceae},
doi = {10.1071/SB16025},
url = {http://},
pmid = {},
journal = {Australian Systematic Botany},
volume = {29},
number = {4},
pages = {},
abstract = {Australia supports a high diversity of sequestrate (truffle-like) macrofungi. This has long been thought to be related to the predominantly or seasonally dry climate. The present study posits that if aridity were a key factor in the evolution of sequestrate fruit-bodies, most sequestrate species would have emerged in Australia only after it began to aridify, which occurred post-separation with Antarctica (c. 32 million years ago). Focusing on the high phylogenetic diversity of sequestrate taxa in the Agaricomycetes in Australia, dates of sequestrate nodes were compiled directly from published phylogenies (four lineages) or created using sequences available on GenBank that were processed in BEAST using a secondary calibration method (nine lineages). Although the morphologically diverse Hysterangiales was found to be the first group to become sequestrate, c. 83 million years ago, overall sequestration in Australia occurred more recently. Models were created and compared and support was found for an increased rate of sequestration in Australia at some point between 34 and 13 million years ago (during the Oligocene and Miocene). Although the rate of sequestration is shown to have increased in Australia after separation from Antarctica, the timing also overlaps with the radiation of potential mycorrhizal plant associates, and the emergence of specialised mycophagous marsupials. Although aridification is evidently not the sole driver of sequestration, it is still likely to have had a major influence on the diversity of sequestrate fungi in Australia. Comparisons with other regions of high sequestrate diversity will be informative.}
}
Taxa for tree 91726 of Study 18448

Citation title:
"Dating the emergence of truffle-like fungi in Australia, by using an augmented meta-analysis.".

Study name:
"Dating the emergence of truffle-like fungi in Australia, by using an augmented meta-analysis.".

This study is part of submission 18448
(Status: Published).
Taxa
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ID |
Taxon Label |
NCBI taxid |
uBIO namebankID |
2053723 |
Austroboletus gracilis |
388838
|
3034119
|
2053762 |
Austroboletus mucosus |
279505
|
3034122
|
2053756 |
Austroboletus niveus |
388839
|
3034123
|
2053726 |
Austroboletus novaezelandiae |
|
3034124
|
2053739 |
Boletus erythropus |
121023
|
1447895
|
2053727 |
Calostoma cinnabarinum AFTOL439 |
83216
|
3066782
|
2053751 |
Chamonixia caespitosa 92 83 |
90414
|
3094383
|
2053758 |
Chamonixia caespitosa AF336245 |
90414
|
3094383
|
2053760 |
Chamonixia caespitosa OSC118291 |
90414
|
3094383
|
2053755 |
Chamonixia caespitosa p693i |
90414
|
3094383
|
2053560 |
Cortinarius aurilicis |
289419
|
3043395
|
2053539 |
Cortinarius iodes |
68760
|
3119909
|
2053731 |
Leccinellum albellum |
|
|
2053735 |
Leccinellum carpini AF454588 |
|
|
2053725 |
Leccinellum corsicum |
|
|
2053746 |
Leccinellum crocipodium Netherlands |
|
|
2053718 |
Leccinellum lepidum AF139698 |
|
|
2053757 |
Leccinellum lepidum SU70 |
|
|
2053745 |
Leccinum aurantiacum |
121046
|
3296075
|
2053724 |
Leccinum holopus |
80655
|
3210818
|
2053743 |
Leccinum palustre |
121016
|
3261824
|
2053734 |
Leccinum quercinum AF454591 |
196695
|
1631495
|
2053744 |
Leccinum rigidipes |
196696
|
3048276
|
2053721 |
Leccinum roseotinctum |
196698
|
3210839
|
2053740 |
Leccinum rugosiceps |
279511
|
3170633
|
2053747 |
Leccinum scabrum Sweden |
|
|
2053741 |
Leccinum snellii |
273865
|
3210842
|
2053719 |
Leccinum subglabripes |
80584
|
3170634
|
2053736 |
Leccinum talamancae |
273871
|
3294149
|
2053752 |
Leccinum variicolor |
121052
|
3210857
|
2053759 |
Octaviania asterosperma DQ534619 |
388861
|
3102704
|
2053728 |
Octaviania asterosperma KM81259 |
388861
|
3102704
|
2053763 |
Octaviania spA Aichi |
|
|
2053722 |
Octaviania tasmanica PDD89058 |
|
3148691
|
2053737 |
Octaviania tasmanica TL2329 |
|
3148691
|
2053748 |
Pulveroboletus curtis |
|
|
2053729 |
Retiboletus flavoniger |
|
4039115
|
2053732 |
Retiboletus griseus |
|
4039117
|
2053720 |
Retiboletus retipes AF456811 |
|
3995785
|
2053754 |
Retiboletus retipes AF456831 |
|
3995785
|
2053733 |
Rossbeevera eucyanea Ouchida 159 |
|
|
2053717 |
Rossbeevera griseovelvetina 173 |
|
|
2053738 |
Rossbeevera pachyderma DQ534620 |
|
|
2053761 |
Rossbeevera westraliensis MEL2231712 |
|
|
2053753 |
Suillus pictus AFTOL717 |
222705
|
3217068
|
2053749 |
Xerocomus badius |
36058
|
3230240
|
2053730 |
Xerocomus ferrugineus |
336813
|
1455094
|
2053750 |
Xerocomus pruinatus |
73892
|
3280326
|
2053742 |
Xerocomus zelleri |
398335
|
3174533
|