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Correlation between Strawberry (Fragaria ananassa Duch.) Productivity and Photosynthesis-Related Parameters under Various Growth Conditions

机译:不同生长条件下草莓(Fragaria ananassa Duch。)生产力与光合作用相关参数的相关性

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摘要

In the present study, we investigated changes in chlorophyll fluorescence, photosynthetic parameters and fruit yields, as well as fruit phytochemical accumulation of strawberry (Fragaria ananassa Duch.) that had been cultivated in a greenhouse under different combinations of light intensity and temperature. In plants grown with low light (LL) photosystem II chlorophyll fluorescence was found to increase as compared with those grown under high light (HL). When strawberry plants were grown with temperature higher than 5°C in addition to LL, they showed decrease in non-photochemical quenching (NPQ), photochemical quenching (qP), as well as chlorophyll fluorescence decrease ratio (RFd) when compared with other combinations of light and temperature. Moreover, fruit yield of strawberry was closely correlated with chlorophyll fluorescence-related parameters such as NPQ, qP, and RFd, but not with the maximum efficiency of PS II (Fv/Fm). Although plant groups grown under different combinations of light and temperature showed almost comparable levels of photosynthesis rates (Pr) when irradiated with low-intensity light, they displayed clear differences when measured with higher irradiances. Plants grown under HL with temperature above 10°C showed the highest Pr, in contrast to the plants grown under LL with temperature above 5°C. When the stomatal conductance and the transpiration rate were measured, plants of each treatment showed clear differences even when analyzed with lower irradiances. We also found that fruit production during winter season was more strongly influenced by growth temperature than light intensity. We suggest that fruit productivity of strawberry is closely associated with chlorophyll fluorescence and photosynthesis-related parameters during cultivation under different regimes of temperature and light.
机译:在本研究中,我们研究了在光强和温度不同组合下栽培的温室草莓(Fragaria ananassa Duch。)的叶绿素荧光,光合参数和果实产量以及果实植物化学积累的变化。与在强光(HL)下生长的植物相比,在低光(LL)光系统II下种植的植物叶绿素荧光增强。当草莓植物在LL以外的温度高于5°C的条件下生长时,与其他组合相比,它们的非光化学猝灭(NPQ),光化学猝灭(qP)以及叶绿素荧光减少率(RFd)降低。的光和温度。此外,草莓的果实产量与叶绿素荧光相关参数如NPQ,qP和RFd密切相关,但与PS II的最大效率(Fv / Fm)却不相关。尽管在不同的光照和温度组合下生长的植物群在低强度光照射下显示出几乎可比的光合作用水平(Pr),但在较高辐照度下显示出明显的差异。与在高于5°C的温度下在LL下生长的植物相反,在高于10°C的温度下在HL下生长的植物表现出最高的Pr。当测量气孔导度和蒸腾速率时,即使以较低的辐照度进行分析,每种处理的植物也显示出明显的差异。我们还发现,冬季的水果产量受生长温度的影响远大于光照强度。我们建议在不同温度和光照条件下,草莓的果实生产力与叶绿素荧光和光合作用相关参数密切相关。

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