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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >CO2-enriched atmosphere and supporting material impact the growth, morphophysiology and ultrastructure of in vitro Brazilian-ginseng [Pfaffia glomerata (Spreng.) Pedersen] plantlets
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CO2-enriched atmosphere and supporting material impact the growth, morphophysiology and ultrastructure of in vitro Brazilian-ginseng [Pfaffia glomerata (Spreng.) Pedersen] plantlets

机译:富含CO2的气氛和辅助材料影响离体巴西人参[Pfaffia glomerata(Spreng。)Pedersen]幼苗的生长,形态生理和超微结构。

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摘要

This study aimed to evaluate under photoautotrophic conditions the effect of CO2-enriched atmosphere (360 or 1,000 mu mol CO2 mol(-1) air) combined with two substrate types (agar or Florialite(A (R))) in vitro on plants of Pfaffia glomerata, an endangered medicinal species with promising applications in phytotherapy and phytomedicine. The effects of the treatments on the growth, stomatal density, Rubisco activity, carbon isotopic discrimination, metabolite accumulation, photosynthetic pigments and ultrastructural characteristics were investigated. After a 35-day cultivation period, the in vitro-growth of P. glomerata nodal segments under the different treatments resulted in plants with substantial differences in relation to their growth, photosynthetic pigments, stomatal density and leaf ultrastructural characteristics. The enrichment with CO2 coupled with a porous substrate increased the growth of P. glomerata. The stomatal density in the abaxial epidermis more than doubled in response to the high CO2 supply in both supporting types, whereas the Rubisco activity and activation state were both unresponsive to the treatments. Regardless of the CO2 supply, the plants grown in agar displayed higher carbon isotope discrimination than their counterparts grown in Florialite(A (R)). We propose that the long-term photosynthetic performance was improved using Florialite(A (R)) as a growth support in combination with a high CO2 supply. No apparent signs of photosynthetic down-regulation could be found under elevated CO2 conditions. The enrichment of in vitro atmospheres with CO2 coupled with a porous substrate offers new possibilities for improving the growth and production on a commercial scale of high morphological and physiological quality Pfaffia plants
机译:这项研究旨在评估在光养养条件下,富CO2气氛(360或1,000μmol CO2 mol(-1)空气)与两种底物类型(琼脂或Florialite(A))的结合对植物的影响Pfaffia glomerata,一种濒临灭绝的药用物种,在植物疗法和植物药中具有广阔的应用前景。研究了这些处理对生长,气孔密度,Rubisco活性,碳同位素分辨,代谢产物积累,光合色素和超微结构特征的影响。在35天的培养期后,在不同处理下的P. glomerata节节段的体外生长导致植物在其生长,光合色素,气孔密度和叶片超微结构特征方面有显着差异。 CO2的富集与多孔基质的结合增加了球形假单胞菌的生长。在两种支持类型中,由于高CO2供给,背面表皮中的气孔密度增加了一倍以上,而Rubisco活性和激活状态均对处理无反应。不管二氧化碳的供应量如何,在琼脂中生长的植物都比在Florialite(A)中生长的植物表现出更高的碳同位素辨别力。我们建议使用Florialite(A(R))作为生长支持并结合大量的CO2来改善长期的光合作用性能。在二氧化碳浓度升高的条件下,没有发现光合作用下调的明显迹象。用二氧化碳和多孔基质富集体外气氛,为提高商业规模的高形态和生理品质Pfaffia植物的生长和生产提供了新的可能性

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