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[光照对光合磷酸化解偶联的小球藻呼吸作用的影响]

[The influence of light on respiration of Chlorella with DCMU-poisoned photosynthesis].

作者信息

Kowallik W

机构信息

Botanisches Institut der Universität Köln, Köln, Deutschland.

出版信息

Planta. 1969 Mar;86(1):50-62. doi: 10.1007/BF00385303.

Abstract

On illumination with blue light the O2-uptake of Chlorella pyrenoidosa (211-8b) in which photosynthetic O2-liberation has been suppressed by 10(-5)M DCMU initially decreases, but in the course of 5-10 min increases over that in preceding darkness (Fig. 1). Whereas an enhancement of O2-uptake is already induced by traces of blue radiation and saturated at about 1.5x10(-10)einsteins cm(-2)sec(-1), the initial inhibition of O2-uptake can be measured only after application of more than 1.5×10(-10)einsteins cm(-2)sec(-1) (Fig. 2).The long induction time that passes before a steady enhancement in O2-uptake is reached, the low energy requirement of the enhancement, and its spectral dependence with greatest efficiency of wavelengths around λ 455 nm and λ 375 nm and no effect of wavelengths beyond λ 520 nm (Fig. 3) resemble the corresponding data found earlier for an enhancement of respiration by light in a chlorophyll-free, carotenoidcontaining Chlorella mutant. It is therefore likely that the increased O2-uptake in DCMU-poisoned cells of wild type Chlorella depends on an increase in respiration. The pigment involved is not known, but from the action spectrum it could be a flavin or a cis-carotenoid.In contrast to the increase the initial decrease in O2-uptake does not show up in strong blue light only, but is also present in red light in which it stays constant throughout the period of measurement of 20 min (Fig. 4). Its intensity dependence is similar in blue and in red light; the lower efficiency of blue, which appears in Fig. 5, is at least partially due to the time interval of 5 min chosen for its determination: in these first 5 min after the beginning of blue illumination the slow increase in respiration already begins. The spectral dependence of the decrease in O2-consumption in the red part of the visible spectrum yields greatest activity around λ 680 nm, a slow drop towards λ 525 nm and a steep one towards λ 743 nm (Fig. 6). From that and the absence of any after-effect of red light on the O2-consumption in following darkness (Fig. 8), which might be expected if phytochrome action were involved, we think chlorophyll to be the pigment responsible for light-dependent inhibition of O2-uptake. A mutant of Scenedesmus, BISHOP'S Nr. 11, which is unable to evolve photosynthetic oxygen, behaves just like DCMU-poisoned Chlorella (Fig. 7). We therefore consider the decreased O2-consumption in the light to result from a partial inhibition of respiration and not from remaining photosynthesis unaffected by 10(-5)M DCMU. As photosystem I still operates in BISHOP'S mutant 11 as well as in DCMU-poisoned Chlorella, illumination might lead to an accumulation of ATP by cyclic photophosphorylation and thus to a lowering of the cellular ADP level. This could result in a slowing down of glycolysis and consequently of respiratory O2-uptake.

摘要

用蓝光照射莱茵衣藻(211 - 8b)时,其光合放氧已被10⁻⁵M敌草隆抑制,最初氧气吸收量会下降,但在5 - 10分钟内会比之前黑暗中的吸收量增加(图1)。微量蓝光辐射就能诱导氧气吸收增强,并在约1.5×10⁻¹⁰爱因斯坦·厘米⁻²·秒⁻¹时达到饱和,而氧气吸收的初始抑制只有在施加超过1.5×10⁻¹⁰爱因斯坦·厘米⁻²·秒⁻¹后才能测量到(图2)。在达到氧气吸收稳定增强之前经过的长诱导时间、增强所需的低能量以及其光谱依赖性(在λ 455 nm和λ 375 nm左右波长效率最高,λ 520 nm以上波长无影响,图3)类似于早期在不含叶绿素、含类胡萝卜素的衣藻突变体中发现的光增强呼吸作用的相应数据。因此,野生型衣藻经敌草隆处理的细胞中氧气吸收增加可能取决于呼吸作用增强。所涉及的色素尚不清楚,但从作用光谱来看可能是黄素或顺式类胡萝卜素。与增加相反,氧气吸收的初始下降不仅在强光下出现,在红光下也存在,且在20分钟的测量期间保持恒定(图4)。其强度依赖性在蓝光和红光中相似;图5中显示的蓝光效率较低至少部分是由于其测定所选的5分钟时间间隔:在蓝光照射开始后的前5分钟,呼吸作用的缓慢增加已经开始。可见光谱红色部分氧气消耗下降的光谱依赖性在λ 680 nm左右活性最大,向λ 525 nm缓慢下降,向λ 743 nm急剧下降(图6)。由此以及红光对后续黑暗中氧气消耗没有任何后效应(图8)(如果涉及光敏色素作用可能会预期有后效应),我们认为叶绿素是负责光依赖性抑制氧气吸收的色素。斜生栅藻的一个突变体,BISHOP'S Nr. 11,不能进行光合放氧,其行为与经敌草隆处理的衣藻相似(图7)。因此我们认为光照下氧气消耗减少是由于呼吸作用部分受抑制,而不是由于10⁻⁵M敌草隆未影响到的残留光合作用。由于光系统I在BISHOP'S突变体11以及经敌草隆处理的衣藻中仍起作用,光照可能通过循环光合磷酸化导致ATP积累,从而降低细胞内ADP水平。这可能导致糖酵解减慢并因此导致呼吸性氧气吸收减慢。

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