Sunderlíková Vanda, Salaj Ján, Kopecky Dieter, Salaj Terézia, Wilhem Eva, Matusíková Ildikó
Institute of Plant Genetics and Biotechnology, Slovak Academy of Sciences, Akademická 2, P.O. Box 39A, 950 07, Nitra 1, Slovak Republic.
Plant Cell Rep. 2009 Jul;28(7):1011-21. doi: 10.1007/s00299-009-0710-6. Epub 2009 May 24.
In this work, three dehydrin genes, QrDhn1, QrDhn2, QrDhn3, were isolated from recalcitrant oak (Quercus robur). Their expression pattern was analyzed in both zygotic and somatic embryos as well as in vegetative tissues exposed to different kinds of abiotic stresses including desiccation, osmotic stress, and chilling. The QrDhn1 gene encoding for Y(n)SK(n) type dehydrin was expressed during later stages of zygotic embryo development but in somatic embryos only when exposed to osmotic or desiccation stress. In contrast, the other two oak dehydrin genes encoding for putative K(n) type dehydrins were expressed only in somatic embryos (both not-treated and osmotically stressed) and leaves of oak seedlings exposed to desiccation. Behavior of these genes suggests that different dehydrins are involved in processes of seed maturation and response to altered osmotic (water status) conditions in somatic embryos. Revealing further members of dehydrin gene family in recalcitrant oak might contribute to clarify non-orthodox seed behavior as well as identify mechanisms contributing to desiccation tolerance in plants.
在本研究中,从顽拗型橡树(欧洲栎)中分离出三个脱水素基因,即QrDhn1、QrDhn2和QrDhn3。分析了它们在合子胚和体细胞胚以及暴露于不同非生物胁迫(包括脱水、渗透胁迫和低温)的营养组织中的表达模式。编码Y(n)SK(n)型脱水素的QrDhn1基因在合子胚发育后期表达,但在体细胞胚中仅在暴露于渗透或脱水胁迫时表达。相反,另外两个编码假定K(n)型脱水素的橡树脱水素基因仅在体细胞胚(未处理和渗透胁迫处理的)以及暴露于脱水的橡树幼苗叶片中表达。这些基因的行为表明,不同的脱水素参与种子成熟过程以及体细胞胚对渗透(水分状况)变化条件的响应。揭示顽拗型橡树中脱水素基因家族的更多成员可能有助于阐明非正统种子的行为,以及确定植物中有助于耐脱水的机制。