Wendelin Schnippenkoetter
Overview
Explore the profile of Wendelin Schnippenkoetter including associated specialties, affiliations and a list of published articles.
Author names and details appear as published. Due to indexing inconsistencies, multiple individuals may share a name, and a single author may have variations. MedLuna displays this data as publicly available, without modification or verification
Snapshot
Snapshot
Articles
11
Citations
610
Followers
0
Related Specialties
Related Specialties
Top 10 Co-Authors
Top 10 Co-Authors
Published In
Published In
Affiliations
Affiliations
Soon will be listed here.
Recent Articles
1.
Milne R, Dibley K, Bose J, Riaz A, Zhang J, Schnippenkoetter W, et al.
J Exp Bot
. 2024 Apr;
75(13):3877-3890.
PMID: 38618744
Partial resistance to multiple biotrophic fungal pathogens in wheat (Triticum aestivum L.) is conferred by a variant of the Lr67 gene, which encodes a hexose-proton symporter. Two mutations (G144R and...
2.
Schnippenkoetter W, Hoque M, Maher R, Van de Wouw A, Hands P, Rolland V, et al.
Plant Methods
. 2021 Dec;
17(1):122.
PMID: 34852830
Background: Blackleg disease, caused by the fungal pathogen Leptosphaeria maculans, is a serious threat to canola (Brassica napus) production worldwide. Quantitative resistance to this disease is a highly desirable trait...
3.
Zhang J, Hewitt T, Boshoff W, Dundas I, Upadhyaya N, Li J, et al.
Nat Commun
. 2021 Jun;
12(1):3378.
PMID: 34099713
The re-emergence of stem rust on wheat in Europe and Africa is reinforcing the ongoing need for durable resistance gene deployment. Here, we isolate from wheat, Sr26 and Sr61, with...
4.
Overgrowth mutants determine the causal role of gibberellin GA2oxidaseA13 in Rht12 dwarfism of wheat
Buss W, Ford B, Foo E, Schnippenkoetter W, Borrill P, Brooks B, et al.
J Exp Bot
. 2020 Sep;
71(22):7171-7178.
PMID: 32949136
The induced dwarf mutant Rht12 was previously shown to have agronomic potential to replace the conventional DELLA mutants Rht-B1b/Rht-D1b in wheat. The Rht12 dwarfing gene is not associated with reduced...
5.
Zhang J, Zhang P, Hewitt T, Li J, Dundas I, Schnippenkoetter W, et al.
Theor Appl Genet
. 2018 Oct;
132(1):125-135.
PMID: 30327843
A set of molecular markers was developed for Sr26 from comparative genomic analysis. The comparative genomic approach also enabled the identification of a previously uncharacterised wheat chromosome that carried Sr26....
6.
The Wheat Gene from the Sugar Transport Protein 13 Family Confers Multipathogen Resistance in Barley
Milne R, Dibley K, Schnippenkoetter W, Mascher M, Lui A, Wang L, et al.
Plant Physiol
. 2018 Oct;
179(4):1285-1297.
PMID: 30305371
Fungal pathogens are a major constraint to global crop production; hence, plant genes encoding pathogen resistance are important tools for combating disease. A few resistance genes identified to date provide...
7.
Schnippenkoetter W, Lo C, Liu G, Dibley K, Chan W, White J, et al.
Plant Biotechnol J
. 2017 Mar;
15(11):1387-1396.
PMID: 28301718
The ability of the wheat Lr34 multipathogen resistance gene (Lr34res) to function across a wide taxonomic boundary was investigated in transgenic Sorghum bicolor. Increased resistance to sorghum rust and anthracnose...
8.
Moore J, Herrera-Foessel S, Lan C, Schnippenkoetter W, Ayliffe M, Huerta-Espino J, et al.
Nat Genet
. 2015 Nov;
47(12):1494-8.
PMID: 26551671
As there are numerous pathogen species that cause disease and limit yields of crops, such as wheat (Triticum aestivum), single genes that provide resistance to multiple pathogens are valuable in...
9.
Alonso-Peral M, Li J, Li Y, Allen R, Schnippenkoetter W, Ohms S, et al.
Plant Physiol
. 2010 Aug;
154(2):757-71.
PMID: 20699403
The microRNA159 (miR159) family represses the conserved GAMYB-like genes that encode R2R3 MYB domain transcription factors that have been implicated in gibberellin (GA) signaling in anthers and germinating seeds. In...
10.
Hiebert C, Thomas J, McCallum B, Humphreys D, DePauw R, Hayden M, et al.
Theor Appl Genet
. 2010 Jun;
121(6):1083-91.
PMID: 20552325
Adult plant resistance (APR) to leaf rust and stripe rust derived from the wheat (Triticum aestivum L.) line PI250413 was previously identified in RL6077 (=Thatcher*6/PI250413). The leaf rust resistance gene...