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Gorim, L. Y.

Publications and source records attributed to Gorim, L. Y..

2 recordsLinked to original sources

Defining the molecular impacts of Humalite application on field-grown wheat (Triticum aestivum L.) using quantitative proteomics

Increasing global food production demands have resulted in increased fertilizer usage, causing detrimental environmental impacts. Biostimulants, such as humic substances, are currently being applied as a strategy to increase plant nutrient-use efficiency and minimize environmental impacts within cropping systems. Humalite is a unique, naturally occurring coal-like substance found in deposits across southern Alberta. These deposits contain exceptionally high ratios of humic acids (>70%) and micronutrients due to their unique freshwater depositional environment. Humalite has begun to be applied to fields based on scientific data suggesting positive impacts on crop growth, yield and nutrient usage; however, little is known about the underlying molecular mechanisms of Humalite. Here, we report a quantitative proteomics approach to identify systems-level molecular changes induced by the addition of different Humalite application rates in field-grown wheat (Triticum aestivum L.) under three urea fertilizer application rates. In particular, we see wide-ranging abundance changes in proteins associated with several metabolic pathways and growth-related biological processes that suggest how Humalite modulates the plant molecular landscape. Overall, our results provide new, functional information that will help better inform agricultural producers on optimal biostimulant and fertilizer usage.

plant biology↗

INCREASING DIVERSITY AMONG LENS SPECIES FOR IMPROVING BIOLOGICAL NITROGEN FIXATION IN LENTIL

Exotic germplasm is a key resource for reintroducing genetic variability into cultivars. We evaluated 36 accessions from cultivated lentil (Lens culinaris Medik.) and six related wild species, inoculated with a commercial strain of Rhizobium leguminosarum bv. viciae under greenhouse conditions. The objective was to explore Lens species and/or accessions that could contribute higher biological nitrogen fixation (BNF) ability to the lentil crop. A split plot design was used with either Rhizobium inoculation, added Nitrogen (N) or neither, as the main plots, and accessions in subplots randomized in blocks. Two repeats of the experiment were evaluated at flowering for N fixation and nodulation characters, and two subsequent experiments, with a subset of 14 accessions, were evaluated at maturity for seed production, seed quality and harvest index. Differences in phenotypic expression did not correspond to any particular Lens species. CDC Greenstar exhibited some of the highest N fixation values observed among the cultivars and also superior yield results compared to the added N treatment. Wild accessions, including IG 72643 (L. orientalis), displayed unique and multiple desirable characteristics compared to cultivars including indeterminate nodulation, higher N translocation, stable yield compared to added N treatment and exceptionally high protein concentration in seeds.

plant biology↗