E. Zamski
Hebrew University of Jerusalem
30 Papers
527 Citations
E. Zamski is an academic researcher from Hebrew University of Jerusalem. The author has contributed to research in topics: Mannitol dehydrogenase & Mannitol. The author has an hindex of 17, co-authored 30 publications. Previous affiliations of E. Zamski include North Carolina State University.
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Papers
Photoassimilate distribution in plants and crops: source--sink relationships.
E. Zamski,Arthur A. Schaffer +1 more
- 01 Jan 1996
TL;DR: Part 1 Physiological and metabolic aspects of the components of source-sink relationships: growth analysis and photoassimilate partitioning primary photosynthate production, mechanisms of catalysis and regulation of sugar transporters in plants mechanisms of long and short distance transport from sources to sinks anatomical and physiological characteristics of sink cells.
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Photoassimilate distribution in plants and crops
E. Zamski,Schaffer, Arthur, A. +1 more
- 23 May 1996
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Soybean BRU1 Encodes a Functional Xyloglucan Endotransglycosylase That is Highly Expressed in Inner Epicotyl Tissues during Brassinosteroid-Promoted Elongation
TL;DR: Results suggest a role for BRUl in vascular development in addition to cell elongation and in situ hybridization reveals highest BRUl transcript accumulation in inner epicotyl tissue, particularly the phloem and paratracheary parenchyma cells.
Salicylic acid stimulates secretion of the normally symplastic enzyme mannitol dehydrogenase: a possible defense against mannitol-secreting fungal pathogens.
TL;DR: Immunoelectron microscopy, immunoblot, and biochemical data reported here show that the normally symplastic plant enzyme, mannitol dehydrogenase (MTD), is secreted into the apoplast after treatment with the endogenous inducer of plant defense responses salicylic acid (SA).
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Lead accumulation in the aquatic fern Azolla filiculoides.
TL;DR: Energy dispersive spectroscopy analysis of the relative element content of leaves collected from Azolla plants revealed a 100% increase in the levels of P, S, Na and Ca and a 40% decrease in Mg and Cl compared to the untreated plants.
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