首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >THE EFFECT OF THE TYPE OF CLOSURE ON THE GAS COMPOSITION OF THE HEADSPACE AND THE GROWTH OF GF 677 PEACH X ALMOND ROOTSTOCK CELL SUSPENSION CULTURES
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THE EFFECT OF THE TYPE OF CLOSURE ON THE GAS COMPOSITION OF THE HEADSPACE AND THE GROWTH OF GF 677 PEACH X ALMOND ROOTSTOCK CELL SUSPENSION CULTURES

机译:封口方式对GF 677桃X杏仁基细胞悬浮培养细胞头部气体成分和生长的影响

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The influence of culture flask closures, i.e., cotton plugs and rubber and aluminum-foil caps, on headspace gas composition and growth of leaf petiole callus-derived GF 677 cell suspensions was comparatively tested. Oxygen concentration always remained comparable to that of the lab atmosphere and CO2 and C2H4 levels were slightly higher when flasks were closed with cotton plugs. By contrast, the gas environment markedly changed within 72 to 96 h in culture inside rubber and aluminum-capped flasks. Under rubber caps, CO2 increased up to 18%, with a net production of about 0.8 mmol CO2, oxygen decreased to 6% within 72 h, and ethylene accumulated up to 9 mu l liter(-1) after 96 h. When aluminum foil closures were used, C2H4 and CO2 increased over the first 72 h, reaching concentrations of about 6 yl liter(-1) and 7% (0.3 mmol produced), respectively, and decreasing after 192 h to 0.1 mu l(-1) and 2%, respectively. The gaseous environment markedly affected cell growth. The exponential growth period of suspensions cultured in flasks closed with cotton plugs and aluminum foil caps started after about 72 h and the stationary phase after 240 h, the cell dry weight reaching its maximum at about threefold the initial weight. Large cell aggregates were found in flasks closed with cotton plugs, slight aggregation with aluminum closures, and no aggregates with rubber caps. However, hardly any growth, progressive browning of the suspensions, and the death of most cells occurred in rubber-capped flasks. A type of closure allowing low gas exchange rates, like aluminum caps, and frequent subcultures thus seems most conducive to rapid growing, more homogeneous GF 677 cell suspension cultures, and the prevention of aggregates, if undesired.
机译:比较地测试了培养瓶盖(即棉塞,橡胶和铝箔盖)对顶空气体成分和叶柄愈伤组织衍生的GF 677细胞悬液生长的影响。当用棉塞封闭烧瓶时,氧气浓度始终与实验室大气中的氧气浓度相当,并且CO2和C2H4含量略高。相反,在橡胶瓶和铝瓶中培养的气体环境在72到96小时内发生了显着变化。在橡胶瓶盖下,CO2最多增加18%,净产量约为0.8 mmol CO2,在72小时内氧气减少至6%,而在96小时后乙烯累积最多9升(-1)。当使用铝箔封盖时,C2H4和CO2在开始的72小时内增加,分别达到约6 yl升(-1)和7%(产生的0.3 mmol)的浓度,并在192 h后降至0.1μl(- 1)和2%。气体环境明显影响细胞生长。在用棉塞和铝箔盖封闭的烧瓶中培养的悬浮液的指数生长期在约72小时后开始,而固定相在240小时后开始,细胞干重达到其最大,约为初始重量的三倍。在用棉塞封闭的烧瓶中发现了大的细胞聚集体,在铝质封闭的烧瓶中发现了少量聚集体,并且没有橡胶盖的聚集体。然而,几乎没有任何生长,悬浮液逐渐变褐以及大多数细胞的死亡发生在橡胶瓶中。因此,一种封闭类型允许像铝盖那样的低气体交换率,并允许频繁的继代培养,因此最有利于快速生长,更均质的GF 677细胞悬浮培养,以及防止聚集(如果不希望的话)。

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