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Items: 1 to 20 of 119

1.

Cartilage and bone cells do not participate in skeletal regeneration in Ambystoma mexicanumlimbs.

McCusker CD, Diaz-Castillo C, Sosnik J, Phan A, Gardiner DM.

Dev Biol. 2016 Jun 14. pii: S0012-1606(16)30225-1. doi: 10.1016/j.ydbio.2016.05.032. [Epub ahead of print]

PMID:
27316294
2.

Gene expression during the first 28 days of axolotl limb regeneration I: Experimental design and global analysis of gene expression.

Voss SR, Palumbo A, Nagarajan R, Gardiner DM, Muneoka K, Stromberg AJ, Athippozhy AT.

Regeneration (Oxf). 2015 Jun;2(3):120-136. Epub 2015 Jun 19.

3.

High-throughput FACS-based mutant screen identifies a gain-of-function allele of the Fusarium graminearum adenylyl cyclase causing deoxynivalenol over-production.

Blum A, Benfield AH, Stiller J, Kazan K, Batley J, Gardiner DM.

Fungal Genet Biol. 2016 May;90:1-11. doi: 10.1016/j.fgb.2016.02.005. Epub 2016 Feb 27.

PMID:
26932301
4.

The Fdb3 transcription factor of the Fusarium Detoxification of Benzoxazolinone gene cluster is required for MBOA but not BOA degradation in Fusarium pseudograminearum.

Kettle AJ, Carere J, Batley J, Manners JM, Kazan K, Gardiner DM.

Fungal Genet Biol. 2016 Mar;88:44-53. doi: 10.1016/j.fgb.2016.01.015. Epub 2016 Jan 29.

PMID:
26828593
5.

EffectorP: predicting fungal effector proteins from secretomes using machine learning.

Sperschneider J, Gardiner DM, Dodds PN, Tini F, Covarelli L, Singh KB, Manners JM, Taylor JM.

New Phytol. 2016 Apr;210(2):743-61. doi: 10.1111/nph.13794. Epub 2015 Dec 17.

PMID:
26680733
6.

Positional plasticity in regenerating Amybstoma mexicanum limbs is associated with cell proliferation and pathways of cellular differentiation.

McCusker CD, Athippozhy A, Diaz-Castillo C, Fowlkes C, Gardiner DM, Voss SR.

BMC Dev Biol. 2015 Nov 23;15:45. doi: 10.1186/s12861-015-0095-4.

7.

DNA Methylation Dynamics Regulate the Formation of a Regenerative Wound Epithelium during Axolotl Limb Regeneration.

Aguilar C, Gardiner DM.

PLoS One. 2015 Aug 26;10(8):e0134791. doi: 10.1371/journal.pone.0134791. eCollection 2015.

8.

A γ-lactamase from cereal infecting Fusarium spp. catalyses the first step in the degradation of the benzoxazolinone class of phytoalexins.

Kettle AJ, Carere J, Batley J, Benfield AH, Manners JM, Kazan K, Gardiner DM.

Fungal Genet Biol. 2015 Oct;83:1-9. doi: 10.1016/j.fgb.2015.08.005. Epub 2015 Aug 18.

PMID:
26296598
9.

Advances and challenges in computational prediction of effectors from plant pathogenic fungi.

Sperschneider J, Dodds PN, Gardiner DM, Manners JM, Singh KB, Taylor JM.

PLoS Pathog. 2015 May 28;11(5):e1004806. doi: 10.1371/journal.ppat.1004806. eCollection 2015 May. No abstract available.

10.

Genome-Wide Analysis in Three Fusarium Pathogens Identifies Rapidly Evolving Chromosomes and Genes Associated with Pathogenicity.

Sperschneider J, Gardiner DM, Thatcher LF, Lyons R, Singh KB, Manners JM, Taylor JM.

Genome Biol Evol. 2015 May 19;7(6):1613-27. doi: 10.1093/gbe/evv092.

11.

Regulation of Axolotl (Ambystoma mexicanum) Limb Blastema Cell Proliferation by Nerves and BMP2 in Organotypic Slice Culture.

Lehrberg J, Gardiner DM.

PLoS One. 2015 Apr 29;10(4):e0123186. doi: 10.1371/journal.pone.0123186. eCollection 2015.

12.

Brachypodium as an emerging model for cereal-pathogen interactions.

Fitzgerald TL, Powell JJ, Schneebeli K, Hsia MM, Gardiner DM, Bragg JN, McIntyre CL, Manners JM, Ayliffe M, Watt M, Vogel JP, Henry RJ, Kazan K.

Ann Bot. 2015 Apr;115(5):717-31. doi: 10.1093/aob/mcv010. Review.

13.
14.

The accessory limb model: an alternative experimental system of limb regeneration.

Endo T, Gardiner DM, Makanae A, Satoh A.

Methods Mol Biol. 2015;1290:101-13. doi: 10.1007/978-1-4939-2495-0_8.

PMID:
25740480
15.

Degradation of the benzoxazolinone class of phytoalexins is important for virulence of Fusarium pseudograminearum towards wheat.

Kettle AJ, Batley J, Benfield AH, Manners JM, Kazan K, Gardiner DM.

Mol Plant Pathol. 2015 Dec;16(9):946-62. doi: 10.1111/mpp.12250. Epub 2015 Apr 15.

PMID:
25727347
16.

An update to polyketide synthase and non-ribosomal synthetase genes and nomenclature in Fusarium.

Hansen FT, Gardiner DM, Lysøe E, Fuertes PR, Tudzynski B, Wiemann P, Sondergaard TE, Giese H, Brodersen DE, Sørensen JL.

Fungal Genet Biol. 2015 Feb;75:20-9. doi: 10.1016/j.fgb.2014.12.004. Epub 2014 Dec 24. Review.

PMID:
25543026
17.

Identification of the biosynthetic gene clusters for the lipopeptides fusaristatin A and W493 B in Fusarium graminearum and F. pseudograminearum.

Sørensen JL, Sondergaard TE, Covarelli L, Fuertes PR, Hansen FT, Frandsen RJ, Saei W, Lukassen MB, Wimmer R, Nielsen KF, Gardiner DM, Giese H.

J Nat Prod. 2014 Dec 26;77(12):2619-25. doi: 10.1021/np500436r. Epub 2014 Nov 20.

PMID:
25412204
18.

Diversifying selection in the wheat stem rust fungus acts predominantly on pathogen-associated gene families and reveals candidate effectors.

Sperschneider J, Ying H, Dodds PN, Gardiner DM, Upadhyaya NM, Singh KB, Manners JM, Taylor JM.

Front Plant Sci. 2014 Sep 1;5:372. doi: 10.3389/fpls.2014.00372. eCollection 2014.

19.

Understanding positional cues in salamander limb regeneration: implications for optimizing cell-based regenerative therapies.

McCusker CD, Gardiner DM.

Dis Model Mech. 2014 Jun;7(6):593-9. doi: 10.1242/dmm.013359. Epub 2014 May 28. Review.

20.

Genome Sequence of Fusarium graminearum Isolate CS3005.

Gardiner DM, Stiller J, Kazan K.

Genome Announc. 2014 Apr 17;2(2). pii: e00227-14. doi: 10.1128/genomeA.00227-14.

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