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Growth of in vitro Oncidesa plantlets cultured under cold cathode fluorescent lamps with super-elevated CO2 enrichment

机译:冷阴极荧光灯下超高二氧化碳富集培养的体外Oncidesa幼苗的生长

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摘要

As interest in how to increase biomass production through biotechnological means gains traction, focus is turning towards the use of photoautotrophic micropropagation under elevated levels of carbon dioxide (CO2) to maximize plant growth and productivity. The effect of super-elevated CO2 with cold cathode fluorescent lamps (CCFLs) on the photoautotrophic growth of Oncidesa in vitro has been studied using a gas-permeable film culture vessel, the ‘Vitron’. The growth of Oncidesa (formerly Oncidesa Gower Ramsey ‘U-1’) plantlets on Vacin and Went (VW) medium was stimulated by 10 000 μmol mol−1 CO2. In particular, increasing the photosynthetic photon flux density (PPFD) from 45 to 60 μmol m−2 s−1 under 10 000 μmol mol−1 CO2 in the growth chamber remarkably increased the number of leaves and roots, and shoot and root fresh and dry weights compared with plantlets under the same level of CO2 under low PPFD (45 μmol m−2 s−1). However, there was a remarkable decrease in photosynthetic capacity, and chlorosis and browning of leaves. In stark contrast, plantlets grown on Kyoto medium at 10 000 μmol mol−1 CO2 under high PPFD had a higher photosynthetic rate than plantlets grown on VW medium, and no chlorosis or browning was observed. Furthermore, shoot growth was remarkably enhanced. Therefore, super-elevated CO2 (10 000 μmol mol−1) enrichment and growth under CCFLs can positively affect the efficiency and quality of commercial production of clonal Oncidesa plantlets.
机译:随着人们对如何通过生物技术手段增加生物量生产的兴趣日益浓厚,人们的关注点转向了在二氧化碳(CO2)含量升高的情况下使用光养自养微繁殖以最大化植物生长和生产力。使用透气膜培养容器“ Vitron”研究了冷阴极荧光灯(CCFL)超高CO2对Oncidesa的光合自养生长的影响。 10000μmolmol -1 CO2刺激了Oncidesa(以前的Oncidesa Gower Ramsey'U-1')小苗在Vacin and Went(VW)培养基上的生长。尤其是在10000μmolmol -1 -2 s -1 增加到60μmol >在低PPFD(45μmolm −2 s <相同条件下,与相同浓度的CO2相比,生长室内的CO2显着增加了叶和根的数量,苗和根的鲜重和干重。 sup> -1 )。然而,光合作用能力显着下降,叶绿化和褐变。与之形成鲜明对比的是,在高PPFD下在京都培养基上以10 000μmolmol -1 CO2生长的幼苗比在大众培养基上生长的幼苗具有更高的光合速率,并且没有观察到绿化或褐变。此外,芽的生长显着增强。因此,CCFLs下超高浓度的CO2(10000μmolmol -1 )富集和生长可积极影响无性Oncidesa苗的商业化生产效率和质量。

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