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Anita Brule-Babel

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Articles 17
Citations 309
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Recent Articles
1.
Neupane A, Tamburic-Llincic L, Brule-Babel A, McCartney C
BMC Plant Biol . 2024 Sep; 24(1):852. PMID: 39256692
Background: Fusarium head blight (FHB), caused by Fusarium graminearum, is a major disease of wheat in North America. FHB infection causes fusarium damaged kernels (FDKs), accumulation of deoxynivalenol (DON) in...
2.
Zhang W, Boyle K, Brule-Babel A, Fedak G, Gao P, Djama Z, et al.
Biology (Basel) . 2021 Aug; 10(8). PMID: 34439988
Fusarium head blight (FHB) resistance is quantitatively inherited, controlled by multiple minor effect genes, and highly affected by the interaction of genotype and environment. This makes genomic selection (GS) that...
3.
Rajagopalan N, Lu Y, Burton I, Monteil-Rivera F, Halasz A, Reimer E, et al.
Phytochemistry . 2020 Jul; 178:112456. PMID: 32692663
The gene Lr34res is one of the most long-lasting sources of quantitative fungal resistance in wheat. It is shown to be effective against leaf, stem, and stripe rusts, as well...
4.
Malihipour A, Gilbert J, Fedak G, Brule-Babel A, Cao W
Plant Dis . 2019 Jan; 101(1):11-19. PMID: 30682314
Development and use of resistant wheat cultivars is the most practical and economical approach for the control of Fusarium head blight (FHB). In the present study, a population of recombinant...
5.
Rosa S, McCallum B, Brule-Babel A, Hiebert C, Shorter S, Randhawa H, et al.
Plant Dis . 2019 Jan; 100(6):1132-1137. PMID: 30682274
Leaf rust (Puccinia triticina) and stripe rust (P. striiformis f. tritici) affect wheat production worldwide. Brazilian 'Toropi' wheat has demonstrated durable leaf rust resistance in South America since its release...
6.
Amarasinghe C, Simsek S, Brule-Babel A, Fernando W
Food Addit Contam Part A Chem Anal Control Expo Risk Assess . 2016 Jun; 33(7):1254-64. PMID: 27264644
Contamination of wheat grains with Fusarium mycotoxins and their modified forms is an important issue in wheat industry. The objective of this study was to analyse the deoxynivalenol (DON) and...
7.
Mukherjee S, Liu A, Deol K, Kulichikhin K, Stasolla C, Brule-Babel A, et al.
Plant Sci . 2015 Oct; 240:143-60. PMID: 26475195
Combining physiological, molecular and biochemical approaches, this study investigated the transcriptional coordination and abscisic acid (ABA) mediated regulation of genes involved in sucrose import and its conversion to starch during...
8.
Rose M, Huang X, Brule-Babel A
J Appl Genet . 2015 Jun; 57(1):15-25. PMID: 26109252
The large subunit of ADP glucose pyrophosphorylase (AGPase), the rate limiting enzyme in starch biosynthesis in Triticum aestivum L., is encoded by the ADP glucose pyrophosphorylase large subunit (AGP-L) gene....
9.
Mukherjee S, Stasolla C, Brule-Babel A, Ayele B
Plant Signal Behav . 2015 Feb; 10(2):e989033. PMID: 25713931
Choice of an appropriate promoter is critical to express target genes in intended tissues and developmental stages. However, promoters capable of directing gene expression in specific tissues and stages are...
10.
Deol K, Mukherjee S, Gao F, Brule-Babel A, Stasolla C, Ayele B
BMC Plant Biol . 2013 Nov; 13:181. PMID: 24237613
Background: Sucrose transporters (SUTs) play important roles in regulating the translocation of assimilates from source to sink tissues. Identification and characterization of new SUTs in economically important crops such as...