Dipartimento di Produzione Vegetale, Università degli Studi di Milano, Via Celoria 2, 20133 Milano, Italy.
Tree Physiol. 2010 Apr;30(4):450-8. doi: 10.1093/treephys/tpq006. Epub 2010 Feb 28.
This work presents a simple in vitro system to study physiological, biochemical and molecular changes occurring in a pear callus (Pyrus communis L., cv. Beurré Bosc) grown in close proximity to spatially separated undifferentiated homologous (pear) or heterologous (quince; Cydonia oblonga Mill., East Malling clone C) cells in its neighboring environment. After a 7-day co-culture period, the presence of heterologous cells produced negative effects on the pear callus, whose relative weight increase and adenylate energy charge decreased by 30 and 24%, respectively. Such behavior was associated with a higher O(2) consumption rate (+125%) which did not seem to be coupled to adenosine triphosphate synthesis. Analyses of alternative oxidase and enzymatic activities involved in reactive oxygen species (ROS) detoxification strongly suggested that the higher O(2) consumption rate, measured in the pear callus grown in the heterologous combination, may probably be ascribed to extra-respiratory activities. These, in turn, might contribute to generate metabolic scenarios where ROS-induced oxidative stresses may have the upper hand. The increase in the levels of 2-thiobarbituric acid reactive metabolites, considered as diagnostic indicators of ROS-induced lipid peroxidation, seemed to confirm this hypothesis. Moreover, reverse transcription polymerase chain reaction analysis revealed that the expression levels of a few senescence-associated genes were higher in the pear callus grown in the heterologous combination than in the homologous one. Taken as a whole, physiological and molecular data strongly suggest that undifferentiated cells belonging to a pear graft-incompatible quince clone may induce an early senescence-like status in a closely co-cultured pear callus.
本研究建立了一个简单的体外系统,以研究在梨愈伤组织(Pyrus communis L.,cv. Beurré Bosc)与其临近环境中空间分离的未分化同源(梨)或异源(榅桲;Cydonia oblonga Mill.,East Malling clone C)细胞近距离共培养时发生的生理、生化和分子变化。经过 7 天的共培养期,异源细胞的存在对梨愈伤组织产生了负面影响,其相对重量增加和腺苷酸能量荷分别降低了 30%和 24%。这种行为与更高的 O(2)消耗率(+125%)相关,而后者似乎与三磷酸腺苷合成无关。分析替代氧化酶和参与活性氧(ROS)解毒的酶活性强烈表明,在异源组合中生长的梨愈伤组织中测量的更高的 O(2)消耗率可能归因于呼吸以外的活动。这些活动反过来可能有助于产生代谢情景,其中 ROS 诱导的氧化应激可能占据优势。2-硫代巴比妥酸反应性代谢物水平的增加,被认为是 ROS 诱导的脂质过氧化的诊断指标,似乎证实了这一假设。此外,反转录聚合酶链反应分析显示,在异源组合中生长的梨愈伤组织中,一些衰老相关基因的表达水平高于同源组合。总的来说,生理和分子数据强烈表明,属于梨嫁接不相容榅桲克隆的未分化细胞可能会诱导近距离共培养的梨愈伤组织早期出现衰老样状态。