首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >In vitro leaf anatomy, ex vitro photosynthetic behaviors and growth of Calathea orbifolia (Linden) Kennedy plants obtained from semi-solid medium and temporary immersion systems
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In vitro leaf anatomy, ex vitro photosynthetic behaviors and growth of Calathea orbifolia (Linden) Kennedy plants obtained from semi-solid medium and temporary immersion systems

机译:半固态培养基和临时浸没系统获得的Calathea orbifolia(Linden)Kennedy植物的离体叶片解剖,离体光合作用和生长

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摘要

In vitro bud clusters of Calathea orbifolia (Linden) Kennedy were obtained and subcultured in semi-solid (agar) medium and temporary immersion system (TIS) for 12 weeks. Uniform young plants were selected and transferred to soilless mix in a growth chamber for ex vitro acclimatization during 35 days, followed by growing in a shaded greenhouse for 65 days. Comparison of in vitro leaf anatomy, ex vitro photosynthetic behaviors and growth was made between two cultural systems. Plants in TIS produced thicker leaf chlorenchyma and aquiferous parenchyma, lower stomatal frequency and more epicuticular wax than did those in semi-solid medium. Plants from semi-solid medium had consistently lower leaf Fv/Fm values than plants from TIS. Leaf Fv/Fm value in plants from TIS decreased to 0.65 at day 7 after transfer and increased soon up to 0.76 thereafter. In contrast, leaf Fv/Fm value in plants from semi-solid medium reduced to 0.27 at day 7 after transfer and increased slowly up to 0.68 at day 35. During ex vitro acclimatization, plants in TIS had substantial higher photosynthetic rates than plants in semi-solid medium. Plants from TIS had subsequent higher leaf area, fresh and dry weights than plants from semi-solid medium.
机译:获得了Calathea orbifolia(Linden)Kennedy的离体芽簇,并在半固体(琼脂)培养基和临时浸没系统(TIS)中继代培养12周。选择均匀的幼植物,并在生长室中转移到无土的混合物中,进行35天的体外驯化,然后在阴凉的温室中生长65天。在两种培养系统之间比较了体外叶片解剖结构,离体光合作用行为和生长。与半固态培养基相比,TIS中的植物产生较厚的叶片氯实质和含水实质,气孔频率较低,表皮蜡更多。来自半固体培养基的植物叶片Fv / Fm值始终低于来自TIS的植物。在转移后第7天,来自TIS的植物叶片Fv / Fm值下降至0.65,此后不久上升至0.76。相比之下,半固体培养基中植物的叶片Fv / Fm值在转移后第7天降低至0.27,并在第35天缓慢增加至0.68。在离体适应过程中,TIS中的植物的光合速率明显高于半固体中的植物。 -固体培养基。来自TIS的植物随后具有比来自半固体培养基的植物更高的叶面积,鲜重和干重。

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