Abstract
Most genes from the plant-specific family encoding Response to Low Sulphur (LSU)-like proteins are strongly induced in sulphur (S)-deficient conditions. The exact role of these proteins remains unclear; however, some data suggest their importance for plants' adjustment to nutrient deficiency and other environmental stresses. This work established that the regulation of ethylene signalling is a part of plants' response to S deficiency and showed the interaction between UP9C, a tobacco LSU family member, and one of the tobacco isoforms of 1-aminocyclopropane-1-carboxylic acid oxidase (ACO2A). Increase in ethylene level induced by S deficiency does not take place in tobacco plants with UP9C expressed in an antisense orientation. Based on transcriptomics data, this work also demonstrated that the majority of tobacco's response to S deficiency is misregulated in plants expressing UP9C-antisense. A link between response to S deficiency, ethylene sensing, and LSU-like proteins was emphasized by changes in expression of the genes encoding ethylene receptors and F-box proteins specific for the ethylene pathway. © The Author 2013.
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Moniuszko, G., Skoneczny, M., Zientara-Rytter, K., Wawrzynska, A., Glów, D., Cristescu, S. M., … Sirko, A. (2013). Tobacco LSU-Like protein couples sulphur-Deficiency response with ethylene signalling pathway. Journal of Experimental Botany, 64(16), 5173–5182. https://doi.org/10.1093/jxb/ert309
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