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叶片对水分胁迫的光合响应,用光声法及相关方法表示:二、快速干旱对电子传递和两个光系统相对活性的影响。

Photosynthetic Responses of Leaves to Water Stress, Expressed by Photoacoustics and Related Methods : II. The Effect of Rapid Drought on the Electron Transport and the Relative Activities of the Two Photosystems.

机构信息

Biochemistry Department, The Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Plant Physiol. 1986 Nov;82(3):834-9. doi: 10.1104/pp.82.3.834.

Abstract

The effect of rapid dehydration of detached tobacco leaves (Nicotiana tabacum L.) on the photochemical apparatus of photosynthesis was studied in vivo by a combination of methods: photoacoustics, chlorophyll a fluorescence, and cytochrome f difference spectroscopy. It was shown that the inhibition of gross O(2) evolution was mainly caused by inactivation of PSII: (a) The saturation curve of cytochrome-f photooxidation by farred (>710 nanometers) light was resistant to the stress, leading to the conclusion that photosystem I (PSI) was largely unaffected by the stress. (b) The extent of the chlorophyll a variable fluorescence arising from photosystem II (PSII) decreased with the progression of the stress, but was largely unaffected when the leaf was preincubated with electron donors to PSII, such as hydroxylamine. It is concluded that the drought damage to PSII occurred on the photooxidative side. Despite the extensive inhibition of PSII and the relative preservation of PSI, the apparent PSII/PSI activity balance was somewhat larger in stressed leaves than in the control, as indicated by photoacoustic measurements of Emerson enhancement. These measurements were performed continuously under conditions which favor transitions to either state 1 or 2, showing that the transition to state 2 was considerably inhibited. Simultaneous measurements of chlorophyll fluorescence induction at 680 and 730 mm at room temperature were also used to probe changes in energy distribution between PSII and PSI and indicated that the transition from a dark adapted state to state 2 was also affected in water-stressed leaves. The saturation curve of the far-red light effect in Emerson enhancement was not changed by the stress, giving another independent evidence for the drought resistance of PSI activity. This apparent preservation of the imbalance in photochemical activities in favor of PSII, despite the fact that PSII is strongly inhibited, and PSI is not, supports a previous suggestion that the electron transfer between the two photosystems is not random but that a large extent of PSII and PSI units are specifically linked.

摘要

采用光声、叶绿素 a 荧光和细胞色素 f 差示光谱等方法,研究了离体烟叶(Nicotiana tabacum L.)快速脱水对光合作用光化学装置的影响。结果表明,总 O2 释放的抑制主要是由于 PSII 的失活引起的:(a)远红光(>710 纳米)光下细胞色素 f 光氧化的饱和曲线对胁迫具有抗性,这得出结论,PSI 受胁迫影响不大。(b)PSII 引起的叶绿素 a 可变荧光程度随胁迫的进展而降低,但当叶片预先用电子供体(如羟胺)处理 PSII 时,受影响不大。因此,PSII 的干旱损伤发生在光氧化侧。尽管 PSII 受到广泛抑制,PSI 相对保留,但光声测量表明,胁迫叶片的表观 PSII/PSI 活性平衡比对照叶片略大,表明在有利于状态 1 或 2 转变的条件下连续进行的 Emerson 增强。这些测量在有利于向状态 1 或 2 转变的条件下连续进行,表明状态 2 的转变受到了相当大的抑制。同时在室温下用 680nm 和 730nm 测量叶绿素荧光诱导,也用于探测 PSII 和 PSI 之间的能量分布变化,并表明在受胁迫的叶片中,从暗适应状态到状态 2 的转变也受到影响。Emerson 增强的远红光效应的饱和曲线不受胁迫的影响,这为 PSI 活性的抗旱性提供了另一个独立的证据。尽管 PSII 受到强烈抑制,而 PSI 不受影响,但这种有利于 PSII 的光化学活性不平衡的明显保留,支持了先前的假设,即两个光系统之间的电子转移不是随机的,而是很大程度上 PSII 和 PSI 单元是特异性连接的。

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