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首页> 外文期刊>Journal of Agrometeorology >Effect of elevated CO2 and elevated temperature on growth and biomass accumulation in Valeriana jatamansi Jones. under different nutrient status in the western Himalaya
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Effect of elevated CO2 and elevated temperature on growth and biomass accumulation in Valeriana jatamansi Jones. under different nutrient status in the western Himalaya

机译:升高的CO2和温度升高对Valeriana Jatamansi Jones的生长和生物质积累的影响。 在喜马拉雅西部的不同营养状况下

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摘要

Valeriana jatamansi is an important medicinal and aromatic plant used as sedative in modern and traditional medicines butthere is dearth of literature regarding how elevated CO2 and temperature affect on this plant. Therefore,an experiment was conducted to study the effect of elevated CO2 (550 +/- 50 pmol mol(-1)) and elevated temperature (2.5 +/- 0.5 degrees C above ambient) and vermicompost on growth, phenology and biomass accumulation in V. jatamansi under Free Air CO2 Enrichment (FACE) and Free Air Temperature Increment (FATI) facilities at Palampur, India, during 2013-2015. Growth parameters and biomass accumulation into different parts were observed at 4, 12 and 16 months after exposure (MAE). Plant height, total dry biomass and leaf area plant -1 increased in elevated CO2 treatment applied with vermicompost as compared to the other treatments. Elevated CO2 significantly enhanced leaf area (3.5-23.5%), leaf biomass (12.7-33.2%), stem (15.3-15.6%), root (3.2-72.5%), rhizome (2.1-42.2%) and total biomass (7.7-52.7%), whereas elevated temperature increased aboveground biomass (15.0-45.3%), belowground biomass (11.6-55.5%) and total biomass (12.4-47.9%), respectively, as compared to ambient. Phenological stages were advanced by 1.2-3.9 days under FACE and FATI as compared to ambient. The results indicate that aboveground, belowground and total biomass increased under elevated CO2 and elevated temperature as compared to ambient.
机译:缬草是一种重要的药用和芳香植物,在现代和传统药物中用作镇静剂,但缺乏关于二氧化碳和温度升高如何影响这种植物的文献。因此,在2013-2015年间,在印度Palampur的自由空气CO2富集(FACE)和自由空气温度增量(FATI)设施下,进行了一项实验,研究了升高的CO2(550+/-50 pmol mol(-1))和升高的温度(比环境温度高2.5+/-0.5℃)以及蚯蚓堆肥对V.jatamansi生长、物候和生物量积累的影响。在暴露后4个月、12个月和16个月,观察了不同部位的生长参数和生物量积累。与其他处理相比,施用蚯蚓堆肥的高CO2处理的株高、总干生物量和叶面积增加。与环境相比,升高的CO2显著增加了叶面积(3.5-23.5%)、叶生物量(12.7-33.2%)、茎(15.3-15.6%)、根(3.2-72.5%)、根茎(2.1-42.2%)和总生物量(7.7-52.7%),而升高的温度分别增加了地上生物量(15.0-45.3%)、地下生物量(11.6-55.5%)和总生物量(12.4-47.9%)。与环境相比,在FACE和FATI条件下,物候期提前了1.2-3.9天。结果表明,与环境相比,CO2浓度升高和温度升高时,地上、地下和总生物量增加。

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