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首页> 外文期刊>BMC Plant Biology >Two glyoxylate reductase isoforms are functionally redundant but required under high photorespiration conditions in rice
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Two glyoxylate reductase isoforms are functionally redundant but required under high photorespiration conditions in rice

机译:两种拟甲酰化还原酶同种型在功能上是多余的,但在水稻中的高光荧光条件下需要

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The glyoxylate reductase (GR) multigene family has been described in various plant species, their isoforms show different biochemical features in plants. However, few studies have addressed the biological roles of GR isozymes, especially for rice. Here, we report a detailed analysis of the enzymatic properties and physiological roles of OsGR1 and OsGR2 in rice. The results showed that both enzymes prefer NADPH to NADH as cofactor, and the NADPH-dependent glyoxylate reducing activity represents the major GR activity in various tissues and at different growth stages; and OsGR1 proteins were more abundant than OsGR2, which is also a major contributor to total GR activities. By generating and characterizing various OsGR-genetically modified rice lines, including overexpression, single and double-knockout lines, we found that no phenotypic differences occur among the various transgenic lines under normal growth conditions, while a dwarfish growth phenotype was noticed under photorespiration-promoted conditions. Our results suggest that OsGR1 and OsGR2, with distinct enzymatic characteristics, function redundantly in detoxifying glyoxylate in rice plants under normal growth conditions, whereas both are simultaneously required under high photorespiration conditions.
机译:在各种植物物种中描述了乙酰氧基化还原酶(GR)多烯家族,其同种型显示出植物中的不同生化特征。然而,很少有研究已经解决了GR同工酶的生物学作用,特别是米饭。在这里,我们报告了OSGR1和OSGR2在水稻中的酶学性质和生理作用的详细分析。结果表明,两种酶都喜欢NADPH作为辅助球体,依赖于NADPH依赖性乙醛酸还原活性代表各种组织和不同生长阶段的主要GR活性; OSGR1蛋白质比OSGR2更丰富,这也是总GR活性的主要贡献者。通过产生和表征各种OSGR遗传修饰的稻米,包括过表达,单敲除线,我们发现在正常生长条件下,各种转基因系中没有发生表型差异,而在光致升级的情况下涉及侏儒生长表型使适应。我们的结果表明,具有不同酶促特性的OSGR1和OSGR2,在正常生长条件下冗余的酶促特征冗余地冗余,而两者则在高光荧光条件下同时需要。

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