@ARTICLE{TreeBASE2Ref19547,
author = {Russell J.S. Orr and Anke St?ken and Thomas Rundberget and Wenche Eikrem and Kjetill S Jakobsen},
title = {Improved phylogenetic resolution of toxic and non-toxic Alexandrium strains using a concatenated rDNA approach.},
year = {2011},
keywords = {Alexandrium; phylogeny; PSP; PST; saxitoxin; STX},
doi = {},
url = {http://},
pmid = {},
journal = {Harmful Algae},
volume = {},
number = {},
pages = {},
abstract = {Dinoflagellates of the genus Alexandrium are known producers of paralytic shellfish toxins. Species within the genus have similar phenotypes making morphological identification problematical. The use of Alexandrium rDNA sequence data is therefore increasing, resulting in the improved resolution of evolutionary relationships by phylogenetic inferences. However, the true branching pattern within Alexandrium remains unresolved, with minimal support shown for the main phylogentic branch. The aim of this study is to improve phylogenetic resolution via a concatenated rDNA approach with a broad sample of taxa, allowing inference of the evolutionary pattern between species and toxins. 27 Alexandrium strains from 10 species were tested with HPLC for PSP toxin presence and additionally sequenced for 18S, ITS1, 5.8S, ITS2 and 28S rDNA before being phylogenetically inferred together with all available orthologous sequences from NCBI. The resulting alignment is the largest to date for the genus, in terms of both inferred characters and taxa, thus allowing for the improved phylogenetic resolution of evolutionary patterns there in. No phylogenetic pattern between PSP producing and non-producing strains could be established, however the terminal tamarensis complex was shown to produce more PSP analogues than basal clades. Additionally, we distinguish a high number of polymorphic regions between the two copies of A. fundyense rDNA, thus allowing us to demonstrate the presence of chimeric sequences within Genbank, as well as a possible over estimation of diversification within the tamarensis complex and the misidentification of numerous A. tamarense strains. }
}
Taxa for matrix 8367 of Study 11303

Citation title:
"Improved phylogenetic resolution of toxic and non-toxic Alexandrium strains using a concatenated rDNA approach.".

Study name:
"Improved phylogenetic resolution of toxic and non-toxic Alexandrium strains using a concatenated rDNA approach.".

This study is part of submission 11293
(Status: Published).
Taxa
Return to matrix row view
| ID |
Taxon Label |
NCBI taxid |
uBIO namebankID |
| 496514 |
Alexandrium catenella AxCt K01 AY347308 |
2925
|
5324413
|
| 496477 |
Alexandrium catenella Axsp K01 DQ785885 |
191036
|
5324413
|
| 496471 |
Alexandrium catenella Axsp K03 DQ785886 |
191036
|
5324413
|
| 496423 |
Alexandrium catenella Axsp K05 DQ785887 |
2925
|
5324413
|
| 496506 |
Alexandrium fundyense IMR S 182008 GENE A JF521629 |
2932
|
4939254
|
| 496474 |
Alexandrium fundyense IMR S 182008 GENE B JF521647 |
2932
|
4939254
|
| 496566 |
Alexandrium fundyense ccmp1719 GENE A JF521624 |
2932
|
4939254
|
| 496530 |
Alexandrium fundyense ccmp1719 GENE B JF521642 |
2932
|
4939254
|
| 496565 |
Alexandrium fundyense ccmp1846 GENE A JF521625 |
2932
|
4939254
|
| 496520 |
Alexandrium fundyense ccmp1846 GENE B JF521643 |
2932
|
4939254
|
| 496469 |
Alexandrium fundyense ccmp1978 GENE A JF521626 |
2932
|
4939254
|
| 496513 |
Alexandrium fundyense ccmp1978 GENE B JF521644 |
2932
|
4939254
|
| 496455 |
Alexandrium fundyense ccmp1979 GENE A JF521627 |
2932
|
4939254
|
| 496492 |
Alexandrium fundyense ccmp1979 GENE B JF521645 |
2932
|
4939254
|
| 496496 |
Alexandrium fundyense ccmp1980 GENE A JF521628 |
2932
|
4939254
|
| 496502 |
Alexandrium fundyense ccmp1980 GENE B JF521646 |
2932
|
4939254
|
| 496438 |
Alexandrium tamarense 31 4 AJ535391 |
2926
|
5434850
|
| 496460 |
Alexandrium tamarense AJ415510 |
2926
|
5434850
|
| 496498 |
Alexandrium tamarense ATBB01 JF521639 |
2926
|
5434850
|
| 496556 |
Alexandrium tamarense CCAP 1119 5 AY831407 |
2926
|
5434850
|
| 496558 |
Alexandrium tamarense CCAP1119 9 DQ785891 |
2926
|
5434850
|
| 496486 |
Alexandrium tamarense HAT4 AB088291 |
2926
|
5434850
|
| 496533 |
Alexandrium tamarense HAT4 AB088294 |
2926
|
5434850
|
| 496467 |
Alexandrium tamarense HI28 AB088296 |
2926
|
5434850
|
| 496536 |
Alexandrium tamarense HI28 AB088297 |
2926
|
5434850
|
| 496035 |
Alexandrium tamarense HY970328M AY831406 |
2926
|
5434850
|
| 496579 |
Alexandrium tamarense JHW0004 12 AY421777 |
2926
|
5434850
|
| 496552 |
Alexandrium tamarense KCJ97111 AB088299 |
2926
|
5434850
|
| 496582 |
Alexandrium tamarense KCJ97111 AB088300 |
2926
|
5434850
|
| 496571 |
Alexandrium tamarense MUCC99 AF022191 |
2926
|
5434850
|
| 496524 |
Alexandrium tamarense SJC9516 AB088303 |
2926
|
5434850
|
| 496473 |
Alexandrium tamarense SJC9516 AB088304 |
2926
|
5434850
|
| 496472 |
Alexandrium tamarense SJC9516 AB088305 |
2926
|
5434850
|
| 496495 |
Alexandrium tamarense SJC9516 AB088307 |
2926
|
5434850
|
| 496478 |
Alexandrium tamarense SJC9522 AB088310 |
2926
|
5434850
|
| 496463 |
Alexandrium tamarense SJW97043 AB088311 |
2926
|
5434850
|
| 496494 |
Alexandrium tamarense SJW97043 AB088312 |
2926
|
5434850
|
| 496508 |
Alexandrium tamarense SJW97046 AB088313 |
2926
|
5434850
|
| 496576 |
Alexandrium tamarense SJW97046 AB088314 |
2926
|
5434850
|
| 496535 |
Alexandrium tamarense SZN01 AJ535387 |
2926
|
5434850
|
| 496539 |
Alexandrium tamarense SZN19 AJ535386 |
2926
|
5434850
|
| 496459 |
Alexandrium tamarense UL7 AB088326 |
2926
|
5434850
|
| 496458 |
Alexandrium tamarense ULW9903 AB088327 |
2926
|
5434850
|
| 496521 |
Alexandrium tamarense ULW9903 AB088328 |
2926
|
5434850
|
| 496470 |
Alexandrium tamarense ULW9903 AB088329 |
2926
|
5434850
|
| 496518 |
Alexandrium tamarense ULW9903 AB088330 |
2926
|
5434850
|
| 496461 |
Alexandrium tamarense UTEX2521 AY883004 |
2926
|
5434850
|
| 496385 |
Alexandrium tamarense X54946 |
2926
|
5434850
|
| 496531 |
Alexandrium tamarense ccmp115 JF521640 |
2926
|
5434850
|