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首页> 外文期刊>Journal of Plant Physiology >Osmotic stress responses of individual white oak (Quercus section, Quercus subgenus) genotypes cultured in vitro.
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Osmotic stress responses of individual white oak (Quercus section, Quercus subgenus) genotypes cultured in vitro.

机译:体外培养的单个白橡(栎属,栎属)基因型的渗透胁迫响应。

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摘要

White oaks (Quercus section, Quercus subgenus) are widely distributed in Europe. Quercus petraea (sessile oak), an economically important species is predicted to be affected by climate change. Q. pubescens (pubescent oak) and Q. virgiliana (Italian pubescent oak) are economically less important, drought tolerant species. Frequent hybridization of white oaks was observed and currently the introgression of Q. pubescens and Q. virgiliana in non-mediterranean regions of Europe has been reported. Our goal was to use tissue cultures established from individual trees of the above taxa and their putative hybrids, all present in the forest stand of Sikfokut LTER Research Area (NE Hungary) as simple experimental model systems for studying drought/osmotic stress tolerance. Tissue cultures are more suitable models for such studies, than seedlings, because they are genetically identical to the parent plants. Polyethylene glycol (PEG6000) treatments were used for this purpose. The identification of taxa was based on leaf morphological traits and microsatellite analysis and showed that Q. petraea is genetically distinct to all other taxa examined. We established six callus lines of Quercus. As expected, in Q. petraea cultures PEG6000 induced severe loss of fresh weight and the ability to recover after removal of the osmoticum, which was not characteristic for Q. pubescens and Q. virgiliana. Putative hybrids exhibited an intermediate response to osmotic stress. Activity gels showed the increase of single-strand preferring (SSP) nuclease and no significant change of guaiacol-peroxidase activities in drought-sensitive genotypes/cultures and no significant increase of SSP nuclease activities accompanied with increases of guaiacol-peroxidase activities in drought-tolerant ones. This indicates that drought/osmotic stress tolerance is associated to increased capacity of scavenging reactive oxygen species and hence less susceptibility to DNA damage. Our results confirm that tissue cultures of oak are suitable model systems for studying drought/osmotic stress responses.
机译:白橡树(栎属,栎属)在欧洲广泛分布。栎属栎(无柄栎),一种重要的经济树种,预计会受到气候变化的影响。从经济上讲,毛白栎(Q. pubescens)和毛白栎(Q. virgiliana)的重要性不高,且耐旱。观察到白橡树频繁杂交,目前已经报道了欧洲非地中海地区的毛白栎和维吉松渗入。我们的目标是使用由上述分类单元的单棵树及其推定的杂种建立的组织培养物作为研究干旱/渗透胁迫耐性的简单实验模型系统,这些植物都存在于Sikfokut LTER研究区(匈牙利东北)的林分中。组织培养比幼苗更适合用于此类研究,因为它们在遗传上与亲本植物相同。为此使用了聚乙二醇(PEG6000)处理。鉴定分类单元是基于叶片的形态特征和微卫星分析,并表明Q. petraea在遗传上不同于所有其他检查的分类单元。我们建立了栎属的六个愈伤组织系。如所预期的,在Q.petraea培养物中,PEG6000引起新鲜体重的严重损失以及去除渗透剂后恢复的能力,这对于P.pubescens和Q.virgiliana而言不是特征。假定的杂种表现出对渗透胁迫的中间反应。活性凝胶显示在干旱敏感基因型/培养物中单链偏好(SSP)核酸酶增加,愈创木酚过氧化物酶活性无明显变化,在耐旱性方面,伴随着愈创木酚过氧化物酶活性增加,SSP核酸酶活性无显着增加。那些。这表明干旱/渗透胁迫耐受性与清除活性氧的能力增强有关,因此对DNA损伤的敏感性降低。我们的结果证实,橡木的组织培养是研究干旱/渗透胁迫响应的合适模型系统。

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