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首页> 外文期刊>Industrial Crops and Products >Elevated CO2 enhances growth and differentially affects saponin content in Paris polyphylla var. yunnanensis
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Elevated CO2 enhances growth and differentially affects saponin content in Paris polyphylla var. yunnanensis

机译:升高的CO 2增强了生长并差异地影响巴黎Polyphylla VAR中的皂苷含量。 云纳森斯

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摘要

Paris polyphylla var. yunnanensis produces specific diosgenins and pennogenins of high medicinal value and is an increasingly important industrial biomedical resource. Attempts to meet the strong demand for its secondary metabolites are hampered by its slow growth rate, and in consequence natural populations are increasingly under threat, with increased yields required for large-scale cultivation. The response of P. polyphyila to artificial environmental conditions is therefore of considerable biological and industrial importance. In this study, we characterized the responses of two P. polyphylla cultivars to elevated CO2. The cultivar WY (western Yunnan), which originated from a cold, dry habitat, showed stronger photosynthetic activity and higher contents of bioactive compounds under ambient CO2 than the cultivar CY (central Yunnan), which is adapted to a warm, humid habitat. Cultivar WY showed higher photosynthetic activity and enhanced growth compared with CY under elevated CO2. Contents of the bioactive compound diosgenin of WY increased under elevated CO2 and thus total saponin content was maintained, consistent with the enhanced growth. The present results suggest that the responses of P. polyphylla cultivars to elevated CO2 may be due to the effects of their natural habitats. Photosynthesis, growth and diosgenin accumulation in WY are sensitive to elevated CO2, implying that WY is a potential candidate for industrial cultivation in a high-CO2 environment.
机译:巴黎polyphylla var。 Yunnanensis产生高药物价值的特异性二氧化铟锡,是一种越来越重要的工业生物医学资源。试图满足其次级代谢产物的强烈需求受到增长率缓慢的阻碍,并且在后果中,自然群体越来越受到威胁,增加了大规模培养所需的产量。因此,P.PoyphyiLa对人工环境条件的反应是相当大的生物和工业的重要性。在这项研究中,我们的表征了两种P.Pop.Pologylla品种至升高的CO 2的反应。源于感冒,干燥的栖息地的品种WY(云南),在环境二氧化碳下显示出更强的光合活性和更高的生物活性化合物含量,而不是品种Cy(云南中部),这适应了温暖,潮湿的栖息地。与CY在升高的二氧化碳下,品种WY表现出更高的光合活性和增强的生长。 WY的生物活性化合物Diosgenin的含量在升高的CO 2下增加,因此保持总皂苷含量,与增强的生长一致。目前的结果表明,P.Papp.Poverphla品种至升高的CO2的反应可能是由于其天然栖息地的影响。 WY中的光合作用,生长和稻蛋白积累对二氧化碳升高而敏感,这意味着WY是高二氧化碳环境中工业种植的潜在候选者。

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