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EU Marie Curie Chair
Birgit Arnholdt-Schmitt
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Competence Focus: "Functional Cell Reprogramming and Organism Plasticity (FunCrop)" created in May 2016 as a SMART extension of the EU Marie Curie Chair  

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Publications and Presentations - Articles

2012
Involvement of alternative oxidase (AOX) in adventitious rooting of Olea europaea L. microshoots is linked to adaptive phenylpropanoid and lignin metabolism.
Citation:

Santos Macedo E, Sircar D, Cardoso HG, Peixe A, Arnholdt-Schmitt  (2012) Involvement of alternative oxidase (AOX) in adventitious rooting of Olea europaea L. microshoots is linked to adaptive phenylpropanoid and lignin metabolism. Plant Cell Reports DOI: 10.1007/s00299-012-1272-6

2011
Polymorphisms in intron 1 of carrot AOX2b – an useful tool to develop a functional marker?
Citation:

 Cardoso H, Campos MD, Nothnagel T, Arnholdt-Schmitt B (2011). Polymorphisms in intron 1 of carrot AOX2b – an useful tool to develop a functional marker? Plant Genetic Resources

9:177-180. DOI: http://dx.doi.org/10.1017/S1479262111000591

2010
Use of morphometric parameters for tracking ovule and microspore evolution in grapevine (Vitis vinifera L., cv. ‘Aragonez’) and evaluation of their potential to improve in vitro somatic embryogenesis efficiency from gametophyte tissues.
Citation:

CardosoHG, Campos MC, Pais MS, Peixe A (2010). Use ofmorphometric parameters for tracking ovule and microspore evolution ingrapevine (Vitis vinifera L., cv.‘Aragonez’) and evaluation of

their potential to improve in vitro somatic embryogenesis efficiency from gametophyte tissues.In Vitro Cellular and DevelopmentalBiology - Plant 46:499-508.

DOI: 10.1007/s11627-010-9295-6

Induction of somatic embryogenesis as an example of stress-related plant reactions
Citation:

Zavattieri MA, Frederico AM, Lima M, Sabino R, Arnholdt-Schmitt B (2009) Induction of somatic embryogenesis as an example of stress-related plant reactions. Journal of Biotechnology Vol.13 No.1

2009
In vitro somatic embryogenesis from stamens of ‘Trincadeira’, a Portuguese Vitis vinifera L. cultivar.
Citation:

Cardoso H, Peixe A, Pais MS (2009). In vitro  somatic embryogenesis from stamens of‘Trincadeira’, a Portuguese Vitis vinifera  L. cultivar. ActaHorticulturae  812:305-311.

http://www.actahort.org/books/812/812_42.htm

Simplifying procedures to increase competitiveness at in vitro propagation of the olive cultivar ‘Galega Vulgar’.
Citation:

 PeixeA, Lourenço R, Raposo A, Campos C, Macedo E, Cardoso H, Jacob P (2009). Simplifyingprocedures to increase competitiveness at invitro propagation of the olive cultivar ‘Galega

Vulgar’. Acta Horticulturae 812:277-282. http://www.actahort.org/books/812/812_37.htm

Carrot AOX - a source for potential functional marker candidates to assist breeding on multi-stress tolerance.
Citation:

Arnholdt-Schmitt B, Cardoso H, Campos MD, Costa A, Campos MC, Ferreira A, Macedo E, Peixe A, Frederico A, Hernández A. (2009) Carrot AOX - a source for potential functional marker candidates to assist breeding on multi-stress tolerance. Invited Talk at the 33rd Carrot Conference, 18.-21.1.09, University of California, USA.

Daucus carota L. - an old model for cell reprogramming gains new importance through a novel expansion pattern of AOX genes.
Citation:

Costa J, Cardoso H, Campos M, Zavattieri A, Frederico A, Fernandes de Melo D and Arnholdt-Schmitt B. (2009). Daucus carota L. - an old model for cell reprogramming gains new importance through a novel expansion pattern of AOX genes
 Plant Physiology and Biochemistry xxx (2009) 1-7
doi:10.1016/j.plaphy.2009.03.011

The alternative oxidase family of Vitis vinifera reveals an attractive model for genomic design.
Citation:

Costa JH, Fernandes de Melo D, Gouveia Z, Cardoso HC, Arnholdt-Schmitt B (2009) The alternative oxidase family of Vitis vinifera reveals an attractive model for genomic design. Physiol Plant. doi: 10.1111/j.1399-3054.2009.01267.x .

Aox gene structure, transcript variation and expression in plants
Citation:

Polidoros AN, Mylona PV, Arnholdt-Schmitt B (2009) Aox gene structure, transcript variation and expression in plants. Physiologia Plantarum 137: 342–353

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