J Ludwig-Muller
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Explore the profile of J Ludwig-Muller including associated specialties, affiliations and a list of published articles.
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11
Citations
184
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Recent Articles
1.
Vierheilig H, Bennett R, Kiddle G, Kaldorf M, Ludwig-Muller J
New Phytol
. 2021 Apr;
146(2):343-352.
PMID: 33862976
Under defined laboratory conditions it was shown that two glucosinolate-containing plant species, Tropaeolum majus and Carica papaya, were colonized by arbuscular mycorrhizal (AM) fungi, whereas it was not possible to...
2.
Bulman S, Richter F, Marschollek S, Benade F, Julke S, Ludwig-Muller J
Plant Biol (Stuttg)
. 2018 Apr;
21 Suppl 1:120-130.
PMID: 29607585
The plant pathogenic protist Plasmodiophora brassicae causes clubroot disease of Brassicaceae. This biotrophic organism can down-regulate plant defence responses. The previously characterised P. brassicae PbBSMT methyltransferase has substrate specificity for...
3.
Leljak-Levanic D, Jezic M, Cesar V, Ludwig-Muller J, Lepedus H, Mladinic M, et al.
J Appl Microbiol
. 2010 Aug;
109(6):2069-78.
PMID: 20796083
Aim: To elucidate the possible mechanism of phytoplasma elimination from periwinkle shoots caused by indole-3-butyric acid (IBA) treatment. Methods And Results: It has been shown that a transfer of in...
4.
Seidel C, Walz A, Park S, Cohen J, Ludwig-Muller J
Plant Biol (Stuttg)
. 2006 Jun;
8(3):340-5.
PMID: 16807826
Indole-3-acetic acid (IAA) is found in plants in both free and conjugated forms. Within the group of conjugated IAA there is a unique class of proteins and peptides where IAA...
5.
Schuller A, Ludwig-Muller J
New Phytol
. 2006 Jun;
171(1):145-57.
PMID: 16771990
During the obligate biotrophic interaction of Plasmodiophora brassicae with members of the Brassicaceae, the host roots show hypertrophy and galls are established. An increased auxin pool appears to correlate with...
6.
Bennett R, Wenke T, Freudenberg B, Mellon F, Ludwig-Muller J
Plant Biol (Stuttg)
. 2005 Jul;
7(4):348-57.
PMID: 16025407
The tu8 mutant of Arabidopsis thaliana (L.) Heynh. was previously described as deficient in pathogen-induced auxin and glucosinolate (GSL) accumulation, as well as in heat-induced accumulation of cytosolic Hsp90, the...
7.
Ludwig-Muller J, Krishna P, Forreiter C
Plant Physiol
. 2000 Jul;
123(3):949-58.
PMID: 10889243
The TU8 mutant of Arabidopsis previously described to be deficient in glucosinolate metabolism and pathogen-induced auxin accumulation was found to be remarkably less tolerant upon exposure to elevated temperatures than...
8.
Kobelt P, Siemens J, Bischoff M, Ludwig-Muller J
Plant Physiol
. 2000 Mar;
122(2):369-78.
PMID: 10677430
The expression of nitrilase in Arabidopsis during the development of the clubroot disease caused by the obligate biotroph Plasmodiophora brassicae was investigated. A time course study showed that only during...
9.
Ludwig-Muller J, Pieper K, Ruppel M, Cohen J, Epstein E, Kiddle G, et al.
Planta
. 1999 Jun;
208(3):409-19.
PMID: 10384731
Mutants and wild type plants of Arabidopsis thaliana were analysed for differences in glucosinolate accumulation patterns, indole-3-acetic acid (IAA) biosynthesis and phenotype. A previously identified series of mutants, termed TU,...
10.
Holtorf S, Ludwig-Muller J, Apel K, Bohlmann H
Plant Mol Biol
. 1998 Apr;
36(5):673-80.
PMID: 9526499
Viscotoxins are a group of toxic thionins found in several mistletoe species. The constitutive CaMV-omega promoter was used to drive the expression of the viscotoxin A3 cDNA from Viscum album...