Pollination and subsequent fertilization in most angiosperms are precursors of seed and fruit development. Thus, understanding the developmental processes can improve the management of plant reproductive success and food security. Indeed, the window between ovule fertilization and seed development is crucial for the accumulation of metabolites which determines ultimate seed quality and yield. Establishing detailed temporal maps of development to describe pollination to early seed development is therefore extremely valuable to provide context for molecular studies, plant breeding, and to refine crop management strategies for optimal seed quality. Here, we characterize aspects of post-pollination responses in the globally important crop plant (oilseed rape, canola) with a high-resolution time series of microscope images of the floral organs during the first 48 h post pollination. We demonstrate the rapid response to pollination in (c.v. Westar), with pollen tubes germinating and traversing the style within just 4 h. We also describe markers of early seed formation in response to fertilization in the synchronous development of ovule area and stigma length. Our results provide a series of temporal benchmarks for post-pollination floral morphology in , representing valuable reference points for studying and tracking pollination responses and early seed development.
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http://dx.doi.org/10.1093/aobpla/plaf002 | DOI Listing |
Anal Chim Acta
May 2025
Laboratory of Organic Chemistry, Wageningen University & Research, Stippeneng 4, Wageningen, 6708 WE, the Netherlands; Wageningen Food Safety Research, Wageningen University & Research, Akkermaalsbos 2, Wageningen, 6708 WB, the Netherlands. Electronic address:
Background: Atropine is a strictly regulated natural toxin. Monitoring for atropine is thus important, but often expensive and time-consuming. Moreover, the range of relevant matrices, and corresponding differences in required detection limits for atropine vary.
View Article and Find Full Text PDFPlant Sci
March 2025
State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Guangxi Key Laboratory for Agro-Environment and Agro-Product Safety, National Demonstration Center for Experimental Plant Science Education, College of Agriculture, Guangxi University, Nanning, 530004; Guangxi, China. Electronic address:
The GIBBERELLIN INSENSITIVE DWARF1 (GID1) gene encodes a receptor integral to Gibberellic acid (GA) signaling, which is pivotal for plant growth, development, and stress responses. Until now, GID1 genes have not been documented in mango. In this research, the mango (Mangifera indica) genome yielded four GID1 homologous genes, and this study focuses on the research of MiGID1A and MiGID1B genes.
View Article and Find Full Text PDFInt J Biol Macromol
March 2025
Cellulose and Paper Department, National Research Centre, El-Tahrir St., Dokki, 12622 Giza, Egypt. Electronic address:
In this study, composite films (BC/Ch/SA/EEMS) were fabricated using the casting method by incorporating bacterial cellulose (BC), chitosan (Ch), and sodium alginate (SA) with ethanolic Moringa seed extract (EEMS). HPLC analysis detected 16 polyphenolic compounds in EEMS, with Rutin (59.56 μg/mL) the most abundant, while GC-MS analysis identified 11-octadecenoic acid (88.
View Article and Find Full Text PDFTalanta
March 2025
State Key Laboratory of Rice Biology and Breeding, Zhejiang Key Laboratory of Biology and Ecological Regulation of Crop Pathogens and Insects, Institute of Biotechnology, Zhejiang University, Hangzhou, 310058, China; Hainan Institute of Zhejiang University, Sanya, 572025, China. Electronic address:
Xanthomonas oryzae pv. oryzae (Xoo) and Xanthomonas oryzae pv. oryzicola (Xoc) are two important rice bacterial pathogens, causing serious losses of global rice yield every year.
View Article and Find Full Text PDFJ Immunol
January 2025
Key Laboratory of Breeding Biotechnology and Sustainable Aquaculture, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, P. R. China.
The von Hippel-Lindau (VHL) tumor suppressor gene VHL is a classic tumor suppressor that has been identified in family members with clear cell renal cell carcinomas, central nervous system and retinal hemangioblastomas, phaeochromocytomas, and pancreatic neuroendocrine tumors. The well-defined function of VHL is to mediate proteasomal degradation of hydroxylated hypoxia-inducible factor α proteins, resulting in the downregulation of hypoxia-responsive gene expression. Previously, we reported that VHL inhibits antiviral signaling by targeting mitochondrial antiviral signaling protein (MAVS) for proteasomal degradation.
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