Yip Justine Y. H., Vanlerberghe Greg C.
Division of Life Science and Department of Botany, University of Toronto at Scarborough, 1265 Military Trail, Scarborough, Ontario M1C 1A4, Canada.
Physiol Plant. 2001 Jul;112(3):327-333. doi: 10.1034/j.1399-3054.2001.1120305.x.
When wild type (wt) tobacco (Nicotiana tabacum L. cv. Petit Havana SR1) suspension cells were grown under phosphate (P) limitation, they contained large amounts of mitochondrial alternative oxidase (AOX). When these cells were resupplied with P, there was a large, immediate and sustained stimulation of respiration to support a period of rapid P uptake. Two lines of evidence suggest that the abundant level of AOX present in wt cells contributed to this stimulated rate of respiration. First, when P-limited transgenic antisense tobacco cells (AS8) lacking AOX were resupplied with P, the stimulation of respiration was much less dramatic even though these cells displayed similar rates of P uptake. Second, while the stimulated rate of respiration in AS8 cells was insensitive (as expected) to the AOX inhibitor n-propyl gallate (nPG), much of the stimulated rate of respiration in wt cells could be inhibited by nPG. Given the non-phosphorylating nature of AOX respiration, wt cells required higher rates of electron transport to O2 than AS8 cells to support similar rates of P uptake. The utilization of AOX by wt cells during P uptake was apparently not occurring because the cytochrome (Cyt) pathway alone could not fully support the rate of P uptake, as the respiration of cells lacking AOX (either untreated AS8 cells or wt cells treated with nPG) supported similar rates of P uptake as wt cells with abundant AOX. Rather, we provide in vivo evidence that the utilization of AOX during the period of high respiration supporting P uptake was to dampen the mitochondrial generation of active oxygen species (AOS).
当野生型(wt)烟草(烟草品种 Petit Havana SR1)悬浮细胞在磷(P)限制条件下生长时,它们含有大量的线粒体交替氧化酶(AOX)。当这些细胞重新供应磷时,呼吸作用会立即受到强烈且持续的刺激,以支持一段快速的磷吸收期。有两条证据表明,野生型细胞中丰富的 AOX 水平促成了这种受刺激的呼吸速率。首先,当缺乏 AOX 的磷限制转基因反义烟草细胞(AS8)重新供应磷时,尽管这些细胞显示出相似的磷吸收速率,但呼吸作用的刺激却没有那么显著。其次,虽然 AS8 细胞中受刺激的呼吸速率对 AOX 抑制剂正丙基没食子酸(nPG)不敏感(正如预期),但野生型细胞中大部分受刺激的呼吸速率可被 nPG 抑制。鉴于 AOX 呼吸的非磷酸化性质,野生型细胞比 AS8 细胞需要更高的电子传递到氧气的速率来支持相似的磷吸收速率。野生型细胞在磷吸收过程中对 AOX 的利用显然并非因为仅细胞色素(Cyt)途径无法完全支持磷吸收速率,因为缺乏 AOX 的细胞(未处理的 AS8 细胞或用 nPG 处理的野生型细胞)的呼吸作用支持的磷吸收速率与具有丰富 AOX 的野生型细胞相似。相反,我们提供了体内证据,即在支持磷吸收的高呼吸期对 AOX 的利用是为了抑制线粒体活性氧(AOS)的产生。