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The Catalytic Properties of Hybrid Rubisco Comprising Tobacco Small and Sunflower Large Subunits Mirror the Kinetically Equivalent Source Rubiscos and Can Support Tobacco Growth

机译:包含烟草小亚基和向日葵大亚基的杂种Rubisco的催化特性反映了动力学等效来源Rubiscos可支持烟草生长

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摘要

Plastomic replacement of the tobacco (Nicotiana tabacum) Rubisco large subunit gene (rbcL) with that from sunflower (Helianthus annuus; rbcLS) produced tobaccoRst transformants that produced a hybrid Rubisco consisting of sunflower large and tobacco small subunits (LsSt). The tobaccoRst plants required CO2 (0.5% v/v) supplementation to grow autotrophically from seed despite the substrate saturated carboxylation rate, Km, for CO2 and CO2/O2 selectivity of the LsSt enzyme mirroring the kinetically equivalent tobacco and sunflower Rubiscos. Consequently, at the onset of exponential growth when the source strength and leaf LsSt content were sufficient, tobaccoRst plants grew to maturity without CO2 supplementation. When grown under a high pCO2, the tobaccoRst seedlings grew slower than tobacco and exhibited unique growth phenotypes: Juvenile plants formed clusters of 10 to 20 structurally simple oblanceolate leaves, developed multiple apical meristems, and the mature leaves displayed marginal curling and dimpling. Depending on developmental stage, the LsSt content in tobaccoRst leaves was 4- to 7-fold less than tobacco, and gas exchange coupled with chlorophyll fluorescence showed that at 2 mbar pCO2 and growth illumination CO2 assimilation in mature tobaccoRst leaves remained limited by Rubisco activity and its rate (approximately 11 μmol m−2 s−1) was half that of tobacco controls. 35S-methionine labeling showed the stability of assembled LsSt was similar to tobacco Rubisco and measurements of light transient CO2 assimilation rates showed LsSt was adequately regulated by tobacco Rubisco activase. We conclude limitations to tobaccoRst growth primarily stem from reduced rbcLS mRNA levels and the translation and/or assembly of sunflower large with the tobacco small subunits that restricted LsSt synthesis.
机译:用向日葵(Helianthus annuus; rbcL S )的质子交换烟草(Nicotiana tabacum)Rubisco大亚基基因(rbcL)产生了烟草 Rst 转化体,产生了杂交Rubisco由向日葵的大亚基和烟草的小亚基(L s S t )组成。尽管底物对L s <的CO2和CO2 / O2选择性具有饱和羧化率Km,但烟草 Rst 植物仍需要从种子中自养生长CO 2(0.5%v / v)。 / sup> S t 酶反映了动力学上等效的烟草和向日葵Rubiscos。因此,当源强度和叶片L s S t 含量足够时,在指数生长的开始,烟草 Rst 植物就生长到没有成熟的程度。补充二氧化碳。当在高pCO2下生长时,烟草 Rst 幼苗的生长速度比烟草慢,并且表现出独特的生长表型:幼株形成由10到20个结构简单的披针形叶片组成的簇,形成多个顶端分生组织,并且成熟的叶片显示边缘卷曲和凹陷。根据发育阶段,烟草 Rst 叶片中的L s S t 含量比烟草少4至7倍,并且气体交换叶绿素荧光分析表明,在2 mbar pCO2和生长照明下,成熟烟草 Rst 叶片中的CO2同化作用仍受Rubisco活性及其速率限制(约11μmolm −2 s -1 )是烟草对照的一半。 35 S-蛋氨酸标记表明组装的L s S t 的稳定性与烟草Rubisco相似,光瞬态CO2同化率的测量结果表明L烟草Rubisco激活酶充分调节了 s S t 。我们得出结论,限制烟草 Rst 的生长主要是由于rbcL S mRNA水平的降低以及向日葵中带有限制L 的烟草小亚基的翻译和/或组装。 s S t 合成。

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