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Influence of temperature on the relationship between oxygen- and fluorescence-based estimates of photosynthetic parameters in a marine benthic diatom (Cylindrotheca closterium)

机译:温度对海洋底栖硅藻(Cylindrotheca closterium)光合参数基于氧和荧光的估计之间的关系的影响

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摘要

In this paper we investigate the temperature sensitivity of the photosynthetic process of the benthic diatom Cylindrotheca closterium grown in light-limited turbidostat cultures at two different growth rates. Photosynthesis was measured as the rate of oxygen evolution and as the photosystem II (PSII) electron transport rate (ETR). The photosynthetic efficiency (f), as measured by both methods, was rather insensitive to temperature, and decreased significantly only at the extreme temperatures used (5 and 35°C). The maximum PSII quantum efficiency (Fv/Fm) showed a small but significant trend of reduction with increasing temperature. However, the maximum rate of photosynthesis (PBmax and ETRmax) was extremely temperature sensitive. The effect of temperature on the relationship between PB and ETR was limited to the most extreme temperatures investigated; deviations from linearity were most extreme at 5°C and different conversion factors were observed at 5 and 35°C. A short-term change in temperature (10v-v30°C), as might be experienced during emersion on a European tidal flat, will not significantly affect the relationship between PB and ETR. However, care should be taken when using a single conversion factor between PB and ETR at the extremes of the temperature range. We have also shown that algal absorption measurements are important for correct calculation of ETR. The facts that different species seem to have different conversion factors and that changing environmental conditions will affect the absorption capacity and growth rate of the microphytobenthos (MPB) community suggest that it is wise to perform further calibrations of the relationship in the field before use in primary production modelling. Variable fluorescence measurements are quick and non-invasive and, with knowledge of the absorption properties of the MPB community, allow the quantification of photosynthetic parameters across large areas. Hence they are potentially useful for improving our estimates of ecosystem scale primary production [KEYWORDS: microphytobenthos; pam fluorescence; photosynthesis; psii electron transport; temperature]
机译:在本文中,我们研究了光受限的turbidostat培养物中以两种不同的生长速率生长的底栖硅藻Cylindrotheca closterium光合过程的温度敏感性。光合作用的测量方法是氧气的释放速率和光系统II(PSII)的电子传输速率(ETR)。通过两种方法测得的光合作用效率(f)对温度相当不敏感,并且仅在所使用的极端温度(5和35°C)下才显着降低。最大PSII量子效率(Fv / Fm)随温度升高显示出减小的很小但很明显的趋势。但是,最大光合作用速率(PBmax和ETRmax)对温度极为敏感。温度对PB和ETR之间关系的影响仅限于所研究的最极端温度。在5°C时线性偏差最大,在5和35°C时观察到不同的转换系数。在欧洲潮滩上出现水温时可能会出现短期温度变化(10v-v30°C),不会显着影响PB与ETR之间的关系。但是,在极端温度范围内在PB和ETR之间使用单个转换因子时,应格外小心。我们还表明藻类吸收测量对于正确计算ETR很重要。不同物种似乎具有不同的转化因子,并且不断变化的环境条件将影响微底栖动物(MPB)群落的吸收能力和生长率这一事实表明,明智的做法是,在用于初级阶段之前,对田间关系进行进一步校准是明智的生产建模。可变的荧光测量是快速且无创的,并且在了解MPB群落吸收特性的情况下,可以对大面积的光合参数进行定量。因此,它们可能对改进我们对生态系统规模初级生产的估计有用。 pam荧光;光合作用; psii电子传输;温度]

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