Moniuszko Grzegorz, Skoneczny Marek, Zientara-Rytter Katarzyna, Wawrzyńska Anna, Głów Dawid, Cristescu Simona M, Harren Frans J M, Sirko Agnieszka
Institute of Biochemistry and Biophysics PAS, Pawinskiego 5A, 02-106 Warsaw, Poland.
J Exp Bot. 2013 Nov;64(16):5173-82. doi: 10.1093/jxb/ert309. Epub 2013 Oct 1.
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.
植物特异性家族中编码类低硫响应(LSU)蛋白的大多数基因在缺硫(S)条件下会被强烈诱导。这些蛋白的确切作用尚不清楚;然而,一些数据表明它们对植物适应营养缺乏和其他环境胁迫具有重要意义。这项研究证实,乙烯信号转导的调控是植物对缺硫响应的一部分,并揭示了烟草LSU家族成员UP9C与烟草1-氨基环丙烷-1-羧酸氧化酶(ACO2A)的一种同工型之间的相互作用。在反义表达UP9C的烟草植株中,缺硫诱导的乙烯水平升高并未发生。基于转录组学数据,这项研究还表明,在反义表达UP9C的植株中,烟草对缺硫的大部分响应都发生了调控异常。编码乙烯受体和乙烯途径特异性F-box蛋白的基因表达变化强调了缺硫响应、乙烯感知和类LSU蛋白之间的联系。