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Combining gas exchange and chlorophyll fluorescence to assess the adaptability of medicinal plant Aesculus chinensis compared to two imported Aesculus species

机译:将气体交换和叶绿素荧光结合起来评估药用植物的适应性,与两种进口射击水泥物种相比

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Analysis of gas exchange and determination of chlorophyll fluorescence parameters in leaves of three tree species including Aesculus chinensis, A. octandra and A. hybrida were conducted under field conditions and then comparison was carried out. The results showed that the light compensation point (LCP) was significantly different among the three tree species, of which the LCP of A. chinensis with 12.53 μmol·m~(-2)·s~(-1) that of the lowest was notable lower than that of the other two species (36.11 and 46.41 μmol·m~(-2)·s~(-1)respectively). On the other hand, the light saturation point (LSP) of the three tree species also showed remarked different and the LSP of A. chinensis was 1475 μmol·m~(-2)·s~(-1) which was dramatic higher than that of the other two species respective to 1366.67 and 1025 μmol·m~(-2)·s~(-1). Beside, the maximum net photosynthetic rate (MNPR) was different too, MNPR of A. chinensis was 9.47μmol CO_2·m~(-2)·s~(-1)which was higher than the other two species (5.91 and 2.30 μmol CO_2·m-~(-2)·s~(-1) respectively), indicating A. chinensis had a higher photosynthetic capacity and stronger utilization ability for light energy. Moreover, the electron transport rate (ETR) of A. chinensis was higher than A. octandra and A. hybrida, the ETR of the former was 55.800 that were 1.33 and 1.44 times of the later two respectively. Quantum yield of PSII photochemistry (Ф_(PSII)) in A. chinensis was higher than A. octandra and A. hybrida, the ФPSII of the former was 0.470 that were 1.21 and 1.15 times of the later two respectively. Furthermore, the photochemical quenching (qP) of A. chinensis was 0.975 much higher than A. octandra and A. hybrida respective to 1.10 and 1.10 times of the later two respectively. These three photochemical parameters with dramatic different among the three different tree species suggested A. chinensis had a high activity of electron transport and conversion efficiency for light energy.
机译:在田间中华鳖,A.八南叶片叶片叶片叶片叶绿素荧光参数分析及杂交菌在现场条件下进行,然后进行比较。结果表明,光补偿点(LCP)在三种树种中具有显着差异,其中A的LCP为12.53μmol·m〜(-2)·s〜(-1)最低的值得显着的低于其他两个物种(36.11和46.41μmol·m〜(-2)·s〜(-1))。另一方面,三种树种的光饱和点(LSP)也显示出备注的不同,A.Chinensis的LSP为1475μmol·m〜(-2)·s〜(-1),其剧烈高于其他两个物种的相应于1366.67和1025μmol·m〜(-2)·s〜(-1)。此外,最高净光合速率(MNPR)也不同,A.Chinensis的MNPR为9.47μmolCO_2·m〜(-2)·s〜(-1),其高于其他两个物种(5.91和2.30μmol CO_2·m-〜(-2)·s〜(-1)分别),表明Chinensis具有更高的光合容量和较强的光能利用能力。此外,A.Chinensis的电子传输速率(ETR)高于A.辛烷值和A. Hybrida,前者的ETR分别为55.800,分别为0.33和1.44倍。在A.Chinensis中PSII光化学(Фα(PSII))的量子产率高于A.辛烷值和A. Hybrida,前者的фPSII分别为0.470,分别为0.470和后两次的1.21和1.15倍。此外,A.Chinensis的光化学猝灭(QP)比A.0975高于A octandra和A. Hybrida分别为后两个的1.10和1.10倍。这三个具有戏剧性不同的三种不同树种的光化学参数建议A.Chinensis具有高活性的电子传输和用于光能的转换效率。

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