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Effects of sucrose, inoculum density, auxins, and aeration volume on ceil growth ofGymnema sylvestre

机译:蔗糖,接种量,植物生长素和曝气量对木槿花细胞生长的影响

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摘要

To improve the cell protocol forCymnema sylvestre, we investigated the influence of initial sucrose concentration, inoculum density, and optimal concentrations of auxins (IBA and NAA) in flask cultures, as well as the role of aeration volume in bioreactor cultures. Cell growth was enhanced 9-fold when the medium was supplemented with 3% sucrose versus a sucrose-free environment. Increasing the inoculum density to 60 g (wet weight) L-1, but no further, greatly improved the growth of these cultures. All concentrations of IBA proved inhibitory while supplementation with 5 nig L-1 NAA was associated with significantly higher dry-cell weights. In our bioreactor cultures, a step-wise increase in aeration volume from 0.05 to 0.40 wm was optimal for cell growth. Although biomass (i.e., fresh weight) accumulated in the bioreactor up until Day 20, the dry-cell weights increased 10-fold, but only through Day 15. The internal dynamics of our culture media indicated that sucrose was preferentially utilized and that its concentration steeply decreased at the log phase. In contrast, both glucose and fructose supplies were exhausted only at the beginning of the declining phase. Our findings suggest that a 15-d culture period is optimal for G.sylvestre cell growth in a bioreactor.
机译:为了改善圆柏的细胞实验方案,我们研究了烧瓶培养物中初始蔗糖浓度,接种密度和最佳生长素浓度(IBA和NAA)的影响,以及通气量在生物反应器培养物中的作用。与不含蔗糖的环境相比,当培养基中添加3%蔗糖时,细胞生长提高了9倍。将接种密度提高到60 g(湿重)L-1 ,但没有进一步提高,大大提高了这些培养物的生长。所有浓度的IBA均显示出抑制作用,而补充5 mg L-1 NAA与干细胞重量明显增加有关。在我们的生物反应器培养物中,曝气量从0.05到0.40 wm的逐步增加最适合细胞生长。尽管直到第20天生物量(即鲜重)都在生物反应器中积累,但干细胞的重量却增加了10倍,但仅直到第15天。我们培养基的内部动力学表明,蔗糖被优先利用,其浓度在对数阶段急剧下降。相比之下,葡萄糖和果糖的供应都只在下降阶段开始时用尽。我们的发现表明,在生物反应器中,培养15天的培养时间对于G.sylvestre细胞的生长是最佳的。

著录项

  • 来源
    《Journal of Plant Biology》 |2006年第6期|427-431|共5页
  • 作者单位

    Research Center for the Development of Advanced Horticultural Technology Chungbuk National University 361-763 Cheongju Korea;

    Research Center for the Development of Advanced Horticultural Technology Chungbuk National University 361-763 Cheongju Korea;

    Research Center for the Development of Advanced Horticultural Technology Chungbuk National University 361-763 Cheongju Korea;

    Research Center for the Development of Advanced Horticultural Technology Chungbuk National University 361-763 Cheongju Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bioreactor; cell culture; Cymnema sylvestre;

    机译:生物反应器;细胞培养;木槿;

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