Zobrazeno 1 - 10
of 17
pro vyhledávání: '"Laura G. Wilkinson"'
Autor:
Laura G. Wilkinson, Matthew R. Tucker
Publikováno v:
Plant Methods, Vol 13, Iss 1, Pp 1-10 (2017)
Abstract Background Seed development in the angiosperms requires the production of a female gametophyte (embryo sac) within the ovule. Many aspects of female reproductive development in cereal crops are yet to be described, largely due to the technic
Externí odkaz:
https://doaj.org/article/0751035c9d4d4285b0dc0beac2caf0ad
Publikováno v:
Frontiers in Plant Science, Vol 10 (2019)
The ovule plays a critical role in cereal yield as it is the site of fertilization and the progenitor of the grain. The ovule primordium is generally comprised of three domains, the funiculus, chalaza, and nucellus, which give rise to distinct tissue
Externí odkaz:
https://doaj.org/article/467db6a6a7324944ba51913d408bf770
Autor:
Natalie S. Betts, Laura G. Wilkinson, Shi F. Khor, Neil J. Shirley, Finn Lok, Birgitte Skadhauge, Rachel A. Burton, Geoffrey B. Fincher, Helen M. Collins
Publikováno v:
Frontiers in Plant Science, Vol 8 (2017)
Many biological processes, such as cell wall hydrolysis and the mobilisation of nutrient reserves from the starchy endosperm, require stringent regulation to successfully malt barley (Hordeum vulgare) grain in an industrial context. Much of the accum
Externí odkaz:
https://doaj.org/article/cc9974b67d6c4784b1479b326ca7d06f
Autor:
Matthew R. Tucker, Haoyu Lou, Matthew K. Aubert, Laura G. Wilkinson, Alan Little, Kelly Houston, Sara C. Pinto, Neil J. Shirley
Publikováno v:
Plants, Vol 7, Iss 2, p 42 (2018)
The majority of organs in plants are not established until after germination, when pluripotent stem cells in the growing apices give rise to daughter cells that proliferate and subsequently differentiate into new tissues and organ primordia. This rem
Externí odkaz:
https://doaj.org/article/68d3dba2cce34915b626d1ed8a140cac
Autor:
Xiujuan Yang, Gang Li, Jin Shi, Laura G. Wilkinson, Matthew K. Aubert, Kelly Houston, Neil J. Shirley, Lucia Colombo, Matthew R. Tucker
The female germline of flowering plants develops within a niche of somatic ovule cells, also referred to as the nucellus. How niche cells maintain their own somatic developmental program, yet support the development of adjoining germline cells, remai
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::9ffedb97a6526549e829ddf19ebf3b9c
https://doi.org/10.1101/2022.12.05.519106
https://doi.org/10.1101/2022.12.05.519106
Autor:
Robbie Waugh, Andrea Matros, Matthew K. Aubert, Kelly Houston, Laura G. Wilkinson, Rachel A. Burton, Matthew R. Tucker, Miriam Schreiber, Katja Witzel, Udo Seiffert, Bettina Berger
Publikováno v:
Journal of Experimental Botany. 72:2383-2402
We profiled the grain oligosaccharide content of 154 two-row spring barley genotypes and quantified 27 compounds, mainly inulin- and neoseries-type fructans, showing differential abundance. Clustering revealed two profile groups where the ‘high’
Autor:
Xiujuan Yang, Laura G. Wilkinson, Matthew K. Aubert, Kelly Houston, Neil J. Shirley, Matthew R. Tucker
Publikováno v:
The New phytologist.
SummaryIn cereal species, seed and grain size is influenced by growth of the ovule integuments (seed coat), the spikelet hull (lemma and palea) and the filial endosperm. It has remained unclear whether a highly conserved ovule tissue, the nucellus, h
Autor:
Matthew K. Aubert, Matthew R. Tucker, Jorge Lora, Neil J. Shirley, Laura G. Wilkinson, Dayton C. Bird, Xiujuan Yang
Publikováno v:
Journal of Integrative Plant Biology. 61:310-336
Grain production in cereal crops depends on the stable formation of male and female gametes in the flower. In most angiosperms, the female gamete is produced from a germline located deep within the ovary, protected by several layers of maternal tissu
Autor:
Robbie Waugh, Laura G. Wilkinson, Matthew K. Aubert, Rachel A. Burton, Andrea Matros, Katja Witzel, Bettina Berger, Matthew R. Tucker, Kelly Houston, Miriam Schreiber, Udo Seiffert
We profiled the grain oligosaccharide content of 154 two-row spring barley genotypes and quantified 27 compounds, mainly fructans, that exhibited differential abundance. Clustering revealed two major profile groups where the ‘high’ set contained
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::f0fa3830dc12d0e1027378b1d2cdcda2
https://doi.org/10.1101/2020.06.29.177881
https://doi.org/10.1101/2020.06.29.177881
Publikováno v:
Annual Plant Reviews