Special Issue "Plant Proteomic Research 5.0: From Data to Insights"
Deadline for manuscript submissions: closed (30 September 2022) | Viewed by 15618
Interests: gel-free/label-free proteomics; plant physiology; crop; abiotic stress
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2. School of Science, Edith Cowan University, 270 Joondalup Rd, Joondalup, WA 6027, Australia
Interests: proteins; peptides; proteomics; allergy; food intolerance; alternative proteins; sustainable food production
Special Issues, Collections and Topics in MDPI journals
Special Issue in Foods: Sustainable Future Protein Foods
This Special Issue is the continuation of our 2016 Special Issue,
"Plant Proteomic Research" (https://www.mdpi.com/journal/ijms/special_issues/plant-proteomic),
“Plant Proteomic Research 2.0” (https://www.mdpi.com/journal/ijms/special_issues/plant-proteomic_2)
“Plant Proteomic Research 3.0” (https://www.mdpi.com/journal/ijms/special_issues/plant-proteomic_3)
“Plant Proteomic Research 4.0” (https://www.mdpi.com/journal/ijms/special_issues/plant-proteomic_4)
Proteomics offers one of the best approaches for the functional analysis of the genome, generating detailed information that can be integrated with that obtained by other classic and omics approaches. It thus provides deep knowledge and an understanding of the diverse proteoforms and different plant processes. Several different generations of proteomics platforms have appeared in the past twenty years. They have been exploited for describing protein profiles, post-translational modifications, protein turnover, protein complexes and interactions, subcellular proteomes, single cells and single-cell-type proteomes. Nevertheless, the ultimate success of any proteomic strategy lies in the various factors, including the isolation of all the components of proteins, separation, visualization and their accurate characterization. Despite recent advancements, more emphasis needs to be given to the protein sample preparation protocols, especially for cases with very low abundance, hydrophobicity, and a large molecular weight. Thus, the amalgamation of diverse MS techniques, complemented with genome-sequence data and modern bioinformatics analysis with improved sample preparation and fractionation strategies, offer a powerful tool to identify and characterize novel proteins/proteoforms in spatial and temporal resolution and under different environmental conditions. Furthermore, post-translational modifications and protein–protein interactions provide deep insight into protein molecular functions. Authors are welcome to submit original research articles and reviews addressing the recent advancements as well as limitations of current proteomic techniques and their diverse applications to gain new insights into plant molecular responses to various biotic and abiotic stressors and the molecular bases of other processes. Proteomics focus is also related to translational purposes, including food traceability and allergen detection. In addition, bioinformatic techniques are needed for more a confident identification, quantitation, data analysis, networking and multi-omics, especially with non-model, orphan, plants, including medicinal, meditational plants and forest tree species.
Prof. Dr. Setsuko Komatsu
Prof. Dr. Michelle Colgrave
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- plant proteomic research
- methods, techniques, and protocols of plant proteomics
- applications of plant proteomics
- plant “Omics” research
- Plant Proteomic Research 4.0 in International Journal of Molecular Sciences (13 articles)
- Plant Proteomic Research in International Journal of Molecular Sciences (18 articles)
- Plant Proteomic Research 2.0 in International Journal of Molecular Sciences (30 articles)
- Plant Proteomic Research 3.0 in International Journal of Molecular Sciences (24 articles)