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自养或混养生长的莱茵衣藻叶绿素热致发光发射的奇特性质。

Peculiar properties of chlorophyll thermoluminescence emission of autotrophically or mixotrophically grown Chlamydomonas reinhardtii.

机构信息

Groupe de Biospectroscopie Végétale, Ecophysiologie Végétale, ESE, Bât. 362, Université Paris-Sud-Orsay, 91400 Orsay, France.

出版信息

J Photochem Photobiol B. 2011 Jul-Aug;104(1-2):301-7. doi: 10.1016/j.jphotobiol.2011.02.014. Epub 2011 Feb 21.

Abstract

The microalgae Chlamydomonas reinhardtii and Chlorella sp. CCAP 211/84 were grown autotrophically and mixotrophically and their thermoluminescence emissions were recorded above 0 °C after excitation by 1, 2 or 3 xenon flashes or by continuous far-red light. An oscillation of the B band intensity according to the number of flashes was always observed, with a maximum after 2 flashes, accompanied by a downshift of the B band temperature maximum in mixotrophic compared to autotrophic grown cells, indicative of a dark stable pH gradient. Moreover, new flash-induced bands emerged in mixotrophic Chlamydomonas grown cells, at temperatures higher than that of the B band. In contrast to the afterglow band observed in higher plants, in Chlamydomonas these bands were not inducible by far-red light, were fully suppressed by 2 μM antimycin A, and peaked at different temperatures depending on the flash number and growth stage, with higher temperature maxima in cells at a stationary compared to an exponential growth stage. These differences are discussed according to the particular properties of cyclic electron transfer pathways in C. reinhardtii.

摘要

小球藻和集胞藻 CCAP 211/84 分别在自养和混养条件下生长,并用 1、2 或 3 个氙闪光或连续远红光激发后,记录其热释光发射,激发温度高于 0℃。无论激发闪光的数量多少,总是观察到 B 带强度的振荡,在 2 个闪光后达到最大值,同时混养生长细胞中 B 带温度最大值向低温偏移,这表明存在暗稳定的 pH 梯度。此外,在混养的小球藻生长细胞中出现了新的闪光诱导带,温度高于 B 带。与在高等植物中观察到的余晖带不同,在小球藻中,这些带不能被远红光诱导,完全被 2μM 安密妥酸抑制,并根据闪光数量和生长阶段在不同温度处达到峰值,与指数生长阶段相比,在稳定生长阶段的细胞中具有更高的温度最大值。根据小球藻中循环电子传递途径的特殊性质,对这些差异进行了讨论。

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