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磷酸烯醇式丙酮酸羧化酶在C4光合同位素交换和气孔导度过程中的作用。

The role of phosphoenolpyruvate carboxylase during C4 photosynthetic isotope exchange and stomatal conductance.

作者信息

Cousins Asaph B, Baroli Irene, Badger Murray R, Ivakov Alexander, Lea Peter J, Leegood Richard C, von Caemmerer Susanne

机构信息

Molecular Plant Physiology Group , Research School of Biological Sciences, Australian National University, Canberra, Australian Capital Territory 2601, Australia.

出版信息

Plant Physiol. 2007 Nov;145(3):1006-17. doi: 10.1104/pp.107.103390. Epub 2007 Sep 7.

Abstract

Phosphoenolpyruvate carboxylase (PEPC; EC 4.1.1.31) plays a key role during C(4) photosynthesis and is involved in anaplerotic metabolism, pH regulation, and stomatal opening. Heterozygous (Pp) and homozygous (pp) forms of a PEPC-deficient mutant of the C(4) dicot Amaranthus edulis were used to study the effect of reduced PEPC activity on CO(2) assimilation rates, stomatal conductance, and (13)CO(2) (Delta(13)C) and C(18)OO (Delta(18)O) isotope discrimination during leaf gas exchange. PEPC activity was reduced to 42% and 3% and the rates of CO(2) assimilation in air dropped to 78% and 10% of the wild-type values in the Pp and pp mutants, respectively. Stomatal conductance in air (531 mubar CO(2)) was similar in the wild-type and Pp mutant but the pp mutant had only 41% of the wild-type steady-state conductance under white light and the stomata opened more slowly in response to increased light or reduced CO(2) partial pressure, suggesting that the C(4) PEPC isoform plays an essential role in stomatal opening. There was little difference in Delta(13)C between the Pp mutant (3.0 per thousand +/- 0.4 per thousand) and wild type (3.3 per thousand +/- 0.4 per thousand), indicating that leakiness (), the ratio of CO(2) leak rate out of the bundle sheath to the rate of CO(2) supply by the C(4) cycle, a measure of the coordination of C(4) photosynthesis, was not affected by a 60% reduction in PEPC activity. In the pp mutant Delta(13)C was 16 per thousand +/- 3.2 per thousand, indicative of direct CO(2) fixation by Rubisco in the bundle sheath at ambient CO(2) partial pressure. Delta(18)O measurements indicated that the extent of isotopic equilibrium between leaf water and the CO(2) at the site of oxygen exchange () was low (0.6) in the wild-type and Pp mutant but increased to 0.9 in the pp mutant. We conclude that in vitro carbonic anhydrase activity overestimated as compared to values determined from Delta(18)O in wild-type plants.

摘要

磷酸烯醇式丙酮酸羧化酶(PEPC;EC 4.1.1.31)在C4光合作用中起关键作用,并参与回补代谢、pH调节和气孔开放过程。利用C4双子叶植物食用苋的PEPC缺陷型突变体的杂合子(Pp)和纯合子(pp)形式,研究了PEPC活性降低对叶片气体交换过程中CO2同化率、气孔导度以及13CO2(δ13C)和C18OO(δ18O)同位素分馏的影响。PEPC活性分别降至42%和3%,在空气中的CO2同化率在Pp和pp突变体中分别降至野生型值的78%和10%。在空气中(531 μbar CO2)野生型和Pp突变体的气孔导度相似,但在白光下pp突变体的稳态导度仅为野生型的41%,并且气孔对光照增加或CO2分压降低的响应开放得更慢,这表明C4 PEPC同工型在气孔开放中起重要作用。Pp突变体(3.0‰±0.4‰)和野生型(3.3‰±0.4‰)之间的δ13C差异不大,表明泄漏率(即从维管束鞘中泄漏出的CO2速率与C4循环提供的CO2速率之比,这是衡量C4光合作用协调性的一个指标)不受PEPC活性降低60%的影响。在pp突变体中,δ13C为16‰±3.2‰;这表明在环境CO2分压下,Rubisco在维管束鞘中直接固定CO2。δ18O测量表明,在野生型和Pp突变体中,叶片水分与氧气交换部位的CO2之间的同位素平衡程度(α)较低(0.6),但在pp突变体中增加到了0.9。我们得出结论,与从野生型植物的δ18O确定的值相比,体外碳酸酐酶活性被高估了。

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