Lore Westphal
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Explore the profile of Lore Westphal including associated specialties, affiliations and a list of published articles.
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17
Citations
743
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Recent Articles
11.
Stegmann M, Anderson R, Westphal L, Rosahl S, McDowell J, Trujillo M
Plant Signal Behav
. 2014 Jan;
8(12):e27421.
PMID: 24389869
Components of the vesicle trafficking machinery are central to the immune response in plants. The role of vesicle trafficking during pre-invasive penetration resistance has been well documented. However, emerging evidence...
12.
Schon M, Toller A, Diezel C, Roth C, Westphal L, Wiermer M, et al.
Mol Plant Microbe Interact
. 2013 Apr;
26(7):758-67.
PMID: 23617415
Simultaneous mutation of two WRKY-type transcription factors, WRKY18 and WRKY40, renders otherwise susceptible wild-type Arabidopsis plants resistant towards the biotrophic powdery mildew fungus Golovinomyces orontii. Resistance in wrky18 wrky40 double...
13.
Kopischke M, Westphal L, Schneeberger K, Clark R, Ossowski S, Wewer V, et al.
Plant J
. 2012 Oct;
73(3):456-68.
PMID: 23072470
Non-host resistance of Arabidopsis thaliana against Phytophthora infestans, the causal agent of late blight disease of potato, depends on efficient extracellular pre- and post-invasive resistance responses. Pre-invasive resistance against P. ...
14.
Bottcher C, Westphal L, Schmotz C, Prade E, Scheel D, Glawischnig E
Plant Cell
. 2009 Jul;
21(6):1830-45.
PMID: 19567706
Accumulation of camalexin, the characteristic phytoalexin of Arabidopsis thaliana, is induced by a great variety of plant pathogens. It is derived from Trp, which is converted to indole-3-acetonitrile (IAN) by...
15.
Westphal L, Scheel D, Rosahl S
Plant Cell
. 2008 Apr;
20(4):824-6.
PMID: 18430804
No abstract available.
16.
Molendijk A, Ruperti B, Singh M, Dovzhenko A, Ditengou F, Milia M, et al.
Plant J
. 2007 Dec;
53(6):909-23.
PMID: 18088316
In plants, Rop/Rac GTPases have emerged as central regulators of diverse signalling pathways in plant growth and pathogen defence. When active, they interact with a wide range of downstream effectors....
17.
Consonni C, Humphry M, Hartmann H, Livaja M, Durner J, Westphal L, et al.
Nat Genet
. 2006 May;
38(6):716-20.
PMID: 16732289
In the fungal phylum Ascomycota, the ability to cause disease in plants and animals has been gained and lost repeatedly during phylogenesis. In monocotyledonous barley, loss-of-function mlo alleles result in...