首页> 外文OA文献 >Lack of GLYCOLATE OXIDASE1, but Not GLYCOLATE OXIDASE2, Attenuates the Photorespiratory Phenotype of CATALASE2-Deficient Arabidopsis
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Lack of GLYCOLATE OXIDASE1, but Not GLYCOLATE OXIDASE2, Attenuates the Photorespiratory Phenotype of CATALASE2-Deficient Arabidopsis

机译:乙醇酸氧化酶1而不是乙醇酸氧化酶2的缺乏削弱了CATALASE2缺陷型拟南芥的光呼吸表型。

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摘要

The genes coding for the core metabolic enzymes of the photorespiratory pathway that allows plants with C3-type photosynthesis to survive in an oxygen-rich atmosphere, have been largely discovered in genetic screens aimed to isolate mutants that are unviable under ambient air. As an exception, glycolate oxidase (GOX) mutants with a photorespiratory phenotype have not been described yet in C3 species. Using Arabidopsis (Arabidopsis thaliana) mutants lacking the peroxisomal CATALASE2 (cat2-2) that display stunted growth and cell death lesions under ambient air, we isolated a second-site loss-of-function mutation in GLYCOLATE OXIDASE1 (GOX1) that attenuated the photorespiratory phenotype of cat2-2. Interestingly, knocking out the nearly identical GOX2 in the cat2-2 background did not affect the photorespiratory phenotype, indicating that GOX1 and GOX2 play distinct metabolic roles. We further investigated their individual functions in single gox1-1 and gox2-1 mutants and revealed that their phenotypes can be modulated by environmental conditions that increase the metabolic flux through the photorespiratory pathway. High light negatively affected the photosynthetic performance and growth of both gox1-1 and gox2-1 mutants, but the negative consequences of severe photorespiration were more pronounced in the absence of GOX1, which was accompanied with lesser ability to process glycolate. Taken together, our results point toward divergent functions of the two photorespiratory GOX isoforms in Arabidopsis and contribute to a better understanding of the photorespiratory pathway.
机译:编码光呼吸途径的核心代谢酶的基因使具有C3型光合作用的植物能够在富含氧气的环境中生存,这些基因已在旨在筛选在环境空气中无法存活的突变体的遗传筛选中被大量发现。作为例外,尚未在C3物种中描述具有光呼吸表型的乙醇酸氧化酶(GOX)突变体。使用缺少过氧化物酶体CATALASE2(cat2-2)的拟南芥(Arabidopsis thaliana)突变体,在环境空气下显示发育不良的生长和细胞死亡损伤,我们在糖化氧化酶1(GOX1)中分离了第二个功能丧失的突变,从而减弱了光呼吸作用。 cat2-2的表型。有趣的是,敲除cat2-2背景中几乎相同的GOX2不会影响光呼吸表型,表明GOX1和GOX2发挥独特的代谢作用。我们进一步研究了它们在单个gox1-1和gox2-1突变体中的个体功能,并揭示了它们的表型可以通过增加通过光呼吸途径的代谢通量的环境条件来调节。高光对gox1-1和gox2-1突变体的光合作用性能和生长均具有负面影响,但是在缺乏GOX1的情况下,严重的光呼吸作用所带来的负面后果更为明显,这伴随着较低的乙醇酸处理能力。两者合计,我们的结果指向拟南芥中​​的两个光呼吸GOX亚型的不同功能,并有助于更好地了解光呼吸途径。

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