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核酮糖-1,5-二磷酸羧化酶/加氧酶激活酶是在任何叶片温度下非稳态光合作用的关键调节因子,在较小程度上也是高温下稳态光合作用的关键调节因子。

Rubisco activase is a key regulator of non-steady-state photosynthesis at any leaf temperature and, to a lesser extent, of steady-state photosynthesis at high temperature.

作者信息

Yamori Wataru, Masumoto Chisato, Fukayama Hiroshi, Makino Amane

机构信息

Department of Applied Plant Science, Graduate School of Agricultural Science, Tohoku University, 1-1 Tsutsumidori-Amamiyamachi, Aoba-ku, Sendai 981-8555, Japan.

出版信息

Plant J. 2012 Sep;71(6):871-80. doi: 10.1111/j.1365-313X.2012.05041.x. Epub 2012 Jul 6.

Abstract

The role of Rubisco activase in steady-state and non-steady-state photosynthesis was analyzed in wild-type (Oryza sativa) and transgenic rice that expressed different amounts of Rubisco activase. Below 25°C, the Rubisco activation state and steady-state photosynthesis were only affected when Rubisco activase was reduced by more than 70%. However, at 40°C, smaller reductions in Rubisco activase content were linked to a reduced Rubisco activation state and steady-state photosynthesis. As a result, overexpression of maize Rubisco activase in rice did not lead to an increase of the Rubisco activation state, nor to an increase in photosynthetic rate below 25°C, but had a small stimulatory effect at 40°C. On the other hand, the rate at which photosynthesis approached the steady state following an increase in light intensity was rapid in Rubisco activase-overexpressing plants, intermediate in the wild-type, and slowest in antisense plants at any leaf temperature. In Rubisco activase-overexpressing plants, Rubisco activation state at low light was maintained at higher levels than in the wild-type. Thus, rapid regulation by Rubisco activase following an increase in light intensity and/or maintenance of a high Rubisco activation state at low light would result in a rapid increase in Rubisco activation state and photosynthetic rate following an increase in light intensity. It is concluded that Rubisco activase plays an important role in the regulation of non-steady-state photosynthesis at any leaf temperature and, to a lesser extent, of steady-state photosynthesis at high temperature.

摘要

在野生型(水稻)和表达不同量核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)活化酶的转基因水稻中,分析了Rubisco活化酶在稳态和非稳态光合作用中的作用。在25℃以下,只有当Rubisco活化酶减少超过70%时,Rubisco活化状态和稳态光合作用才会受到影响。然而,在40℃时,Rubisco活化酶含量的较小降低与Rubisco活化状态和稳态光合作用的降低有关。因此,水稻中玉米Rubisco活化酶的过表达并没有导致Rubisco活化状态的增加,在25℃以下光合速率也没有增加,但在40℃时有轻微的刺激作用。另一方面,在任何叶片温度下,光强增加后光合作用达到稳态的速率在Rubisco活化酶过表达植株中很快,在野生型中居中,在反义植株中最慢。在Rubisco活化酶过表达植株中,低光下的Rubisco活化状态维持在比野生型更高的水平。因此,光强增加后Rubisco活化酶的快速调节和/或低光下高Rubisco活化状态的维持将导致光强增加后Rubisco活化状态和光合速率的快速增加。得出的结论是,Rubisco活化酶在任何叶片温度下非稳态光合作用的调节中起重要作用,在高温下对稳态光合作用的调节作用较小。

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