Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Ainsley Chan"'
Autor:
Jenna L. Kalichuk, Ainsley Chan, Michele D. Piercey-Normore, Mostafa E. Elshobary, Michael G. Becker, Mark F. Belmonte
Publikováno v:
Phytochemistry. 156:142-150
The biosynthesis of two polyketides, atranorin and fumarprotocetraric acid, produced from a lichen-forming fungus, Cladonia rangiferina (L.) F. H. Wigg. was correlated with the expression of eight fungal genes (CrPKS1, CrPKS3, CrPKS16, Catalase (CAT)
Autor:
Deirdre Khan, Matthew Granger, Jenna L. Millar, Philip L. Walker, Xuehua Zhang, Michael G. Becker, Mark F. Belmonte, Jacob D. Cavers, Ainsley Chan, Dilantha Fernando, Joey C. Wan
Publikováno v:
The Plant Journal. 90:573-586
Summary The hemibiotrophic fungal pathogen Leptosphaeria maculans is the causal agent of blackleg disease in Brassica napus (canola, oilseed rape) and causes significant loss of yield worldwide. While genetic resistance has been used to mitigate the
Autor:
Ian J. Girard, Jenna L. Millar, Mark F. Belmonte, Michael G. Becker, David Sytnik, Ainsley Chan, Deirdre Khan
Publikováno v:
Journal of Experimental Botany
Highlight Tissue-specific transcriptomic analysis reveals biological processes contributing to the development of the epidermis, cortex, and vasculature, and how these tissues contribute to the development and function of the canola funiculus.
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Autor:
Ian J. Girard, Mark F. Belmonte, Robert B. Goldberg, Ryan C. Kirkbride, Deirdre Khan, Claudio Stasolla, Ainsley Chan, Sara E.F. Kost, Jenna L. Millar, John J. Harada, Julie M. Pelletier, Michael G. Becker, Edward C. Yeung
Publikováno v:
The Plant Journal. 82:41-53
The funiculus anchors the structurally complex seed to the maternal plant, and is the only direct route of transport for nutrients and maternal signals to the seed. While our understanding of seed development is becoming clearer, current understandin
Autor:
Claudio Stasolla, Mark F. Belmonte, Mohamed Elhiti, Samantha A. Lee, Xingyu Mao, Ainsley Chan, Ian J. Girard, Michael G. Becker
Publikováno v:
Journal of Experimental Botany
Summary Depletion of cellular vitamin C improves somatic embryogenesis in Arabidopsis. Improved embryo number and quality is through changes in gene regulatory network activation and cellular architecture.
Changes in the endogenous ascorbate red
Changes in the endogenous ascorbate red
Publikováno v:
Plant Science. 223:146-152
Filling, protection, and dispersal of angiosperm seeds are largely dependent on the development of the maternally derived seed coat. The development of the seed coat in plants such as Arabidopsis thaliana and Glycine max (soybean) is regulated by a c
Autor:
Michael J. Sumner, Ainsley Chan, Jenna L. Millar, Deirdre Khan, Michael G. Becker, André Dufresne, Mark F. Belmonte
Publikováno v:
Plant science : an international journal of experimental plant biology. 241
The chalazal seed coat (CZSC) is a maternal subregion adjacent to the funiculus which serves as the first point of entry into the developing seed. This subregion is of particular interest in Brassica napus (canola) because of its location within the
Publikováno v:
Plant science : an international journal of experimental plant biology. 213
Plants must protect themselves from a spectrum of abiotic stresses. For example, the sun is a source of heat, intense light, and DNA-damaging ultraviolet (UV) rays. Damaged DNA binding protein 1A (DDB1A), DDB2, and UV hypersensitive 6 (UVH6)/XPD are
Autor:
Mark F. Belmonte, Mohamed Elhiti, Owen S. D. Wally, Claudio Stasolla, Daoquan Xiang, Raju Datla, Yongguo Cao, Ainsley Chan
Altered expression of Brassica napus (Bn) SHOOTMERISTEMLESS (STM) affects the morphology and behaviour of microspore-derived embryos (MDEs). While down-regulation of BnSTM repressed the formation of the shoot meristem (SAM) and reduced the number of
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::efd77d5ca53ebc19cb9e4661f9f45c57
https://nrc-publications.canada.ca/eng/view/object/?id=9a6a9d9a-7e90-4859-afa5-35164147e0b9
https://nrc-publications.canada.ca/eng/view/object/?id=9a6a9d9a-7e90-4859-afa5-35164147e0b9