Rorat Tadeusz, Szabala Bartosz M, Grygorowicz Wojciech J, Wojtowicz Barbara, Yin Zhimin, Rey Pascal
Institute of Plant Genetics, Polish Academy of Sciences, Strzeszynska 34, 60-479 Poznan, Poland.
Planta. 2006 Jun;224(1):205-21. doi: 10.1007/s00425-005-0200-1. Epub 2006 Jan 11.
The expression of a gene, encoding a dehydrin protein designated as DHN24 was analyzed at the protein level in two groups of Solanum species differing in cold acclimation ability. The DHN24 protein displays consensus amino acid sequences of dehydrins, termed K- and S-segments. The S-segment precedes three K-segments, classifying the protein into SK3-type dehydrins. A group of Solanum species able to cold acclimation constituted by S. sogarandinum and S. tuberosum, cv. Aster, and a second one composed of a S. sogarandinum line, that lost ability to cold acclimation, and of S. tuberosum, cv. Irga, displaying low ability to cold acclimation were studied. Under control conditions, noticeable levels of the DHN24 protein was observed in stems, tubers, and roots of Solanum species. No protein was detected in leaves. During low temperature treatment the DHN24 protein level substantially increased in tubers, in transporting organs and in apical parts, and only a small increase was observed in leaves. The increase in protein abundance was only observed in the plants able to cold acclimate and was found to parallel the acclimation capacity. Upon drought stress, the DHN24 level decreased in stems and in leaves, but increased in apical parts. These results suggest that Dhn24 expression is regulated by organ specific factors in the absence of stress and by factors related to cold acclimation processes during low temperature treatment in collaboration with organ-specific factors. A putative function of the SK3-type dehydrin proteins during plant growth and in the tolerance to low temperature is discussed.
在两组冷驯化能力不同的茄属植物中,对编码脱水蛋白DHN24的基因表达进行了蛋白质水平分析。DHN24蛋白具有脱水蛋白的共有氨基酸序列,即K段和S段。S段位于三个K段之前,该蛋白被归类为SK3型脱水蛋白。研究了一组能够冷驯化的茄属植物,由索加丹茄和马铃薯品种“Aster”组成,以及另一组由失去冷驯化能力的索加丹茄品系和冷驯化能力较低的马铃薯品种“Irga”组成。在对照条件下,在茄属植物的茎、块茎和根中观察到显著水平的DHN24蛋白。在叶片中未检测到该蛋白。在低温处理期间,块茎、运输器官和顶端部分的DHN24蛋白水平大幅增加,而叶片中仅观察到少量增加。蛋白质丰度的增加仅在能够冷驯化的植物中观察到,并且发现与驯化能力平行。在干旱胁迫下,茎和叶中的DHN24水平下降,但顶端部分增加。这些结果表明,在没有胁迫的情况下,Dhn24的表达受器官特异性因子调控,在低温处理期间受与冷驯化过程相关的因子与器官特异性因子协同调控。讨论了SK3型脱水蛋白在植物生长和耐低温性中的假定功能。