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Effects of Fully Open-Air CO2 Elevation on Leaf Photosynthesis and Ultrastructure of Isatis indigotica Fort

机译:露天升高CO2对板蓝根叶片光合作用和超微结构的影响

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摘要

Traditional Chinese medicine relies heavily on herbs, yet there is no information on how these herb plants would respond to climate change. In order to gain insight into such response, we studied the effect of elevated [CO2] on Isatis indigotica Fort, one of the most popular Chinese herb plants. The changes in leaf photosynthesis, chlorophyll fluorescence, leaf ultrastructure and biomass yield in response to elevated [CO2] (550±19 µmol mol–1) were determined at the Free-Air Carbon dioxide Enrichment (FACE) experimental facility in North China. Photosynthetic ability of I. indigotica was improved under elevated [CO2]. Elevated [CO2] increased net photosynthetic rate (P N), water use efficiency (WUE) and maximum rate of electron transport (J max) of upper most fully-expended leaves, but not stomatal conductance (gs), transpiration ratio (Tr) and maximum velocity of carboxylation (V c,max). Elevated [CO2] significantly increased leaf intrinsic efficiency of PSII (Fv’/Fm’) and quantum yield of PSII(ΦPS >II), but decreased leaf non-photochemical quenching (NPQ), and did not affect leaf proportion of open PSII reaction centers (qP) and maximum quantum efficiency of PSII (Fv/Fm). The structural chloroplast membrane, grana layer and stroma thylakoid membranes were intact under elevated [CO2], though more starch grains were accumulated within the chloroplasts than that of under ambient [CO2]. While the yield of I. indigotica was higher due to the improved photosynthesis under elevated [CO2], the content of adenosine, one of the functional ingredients in indigowoad root was not affected.
机译:传统中药严重依赖草药,但没有有关这些草药植物如何应对气候变化的信息。为了深入了解这种反应,我们研究了升高的[CO2]对Is草(Istiss indigotica Fort)的影响,Is草是最受欢迎的中草药植物之一。在自由空气二氧化碳富集(FACE)上测定了响应[CO2](550±19 µmol mol –1 )升高的叶片光合作用,叶绿素荧光,叶片超微结构和生物量产量的变化。在华北的实验设施。在升高的[CO2]下,靛蓝的光合作用能力得到改善。升高的[CO2]会增加最充分扩张的上部叶片的净光合速率(PN),水分利用效率(WUE)和最大电子传递速率(J max),但不增加气孔导度(gs),蒸腾比(Tr)和最大羧化速度(V c,max)。升高的[CO2]可以显着提高PSII的叶片固有效率(Fv'/ Fm')和PSII的量子产率(ΦPS> II ),但降低叶片的非光化学猝灭(NPQ),并且不影响PSII开放反应中心的叶片比例(qP)和PSII的最大量子效率(Fv / Fm)。在[CO2]升高的条件下,结构叶绿体膜,颗粒层和间质类囊体膜是完整的,尽管在叶绿体中积累的淀粉粒比在环境[CO2]下更多。虽然在[CO2]升高下光合作用提高了靛蓝的产量,但靛蓝的功能成分之一腺苷的含量并未受到影响。

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