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The molecular cloning and clarification of a photorespiratory mutant, oscdm1, using enhancer trapping

机译:使用增强子捕获技术的光呼吸突变体oscdm1的分子克隆和澄清

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Enhancer trap systems have been demonstrated to increase the effectiveness of gene identification in rice. In this study, a c hlorophyll- d eficient m utant, named oscdm1 , was screened and characterized in detail from a T-DNA enhancer-tagged population. The oscdm1 plants were different from other chlorophyll-deficient mutants; they produced chlorotic leaves at the third leaf stage, which gradually died with further growth of the plants. However, the oscdm1 plants were able to survive exposure to elevated CO_(2)levels, similar to photorespiratory mutants. An analysis of the T-DNA flanking sequence in the oscdm1 plants showed that the T-DNA was inserted into the promoter region of a serine hydroxymethyltransferase (SHMT) gene. OsSHMT1 is a key enzyme that is ubiquitous in nature and structurally conserved across kingdoms. The enzyme is responsible for the interconversion of serine and glycine and is essential for cellular one-carbon metabolism. Full-length OsSHMT1 complemented the oscdm1 phenotype, and the downregulation of OsSHMT1 in wild-type plants by RNA interference (RNAi) produced plants that mimicked the oscdm1 phenotype. GUS assays and quantitative PCR revealed the preferential expression of OsSHMT1 in young leaves. TEM revealed serious damage to the thylakoid membrane in oscdm1 chloroplasts. The oscdm1 plants showed more extensive damage than wild type using an IMAGING-PAM fluorometer, especially under high light intensities. OsSHMT1-GFP localized exclusively to mitochondria. Further analysis revealed that the H_(2)O_(2)content in the oscdm1 plants was twice that in wild type at the fourth leaf stage. This suggests that the thylakoid membrane damage observed in the oscdm1 plants was caused by excessive H_(2)O_(2). Interestingly, OsSHMT1 -overexpressing plants exhibited increased photosynthetic efficiency and improved plant productivity. These results lay the foundation for further study of the OsSHMT1 gene and will help illuminate the functional role of OsSHMT1 in photorespiration in rice.
机译:增强陷阱系统已被证明可以提高水稻基因鉴定的效率。在这项研究中,从T-DNA增强子标签人群中筛选并鉴定了叶绿素有效突变体oscdm1。 oscdm1植物不同于其他叶绿素缺陷型突变体。他们在第三叶期产生了褪绿的叶子,随着植物的进一步生长而逐渐死亡。但是,oscdm1植物能够幸免于暴露于升高的CO_(2)水平,类似于光呼吸突变体。对oscdm1植物中T-DNA侧翼序列的分析表明,该T-DNA已插入丝氨酸羟甲基转移酶(SHMT)基因的启动子区域。 OsSHMT1是一种关键酶,在自然界中普遍存在,并且在整个王国中结构保守。该酶负责丝氨酸和甘氨酸的相互转化,对细胞的一碳代谢至关重要。全长OsSHMT1补充了oscdm1表型,而野生型植物中的OsSHMT1受RNA干扰(RNAi)的下调产生了模仿oscdm1表型的植物。 GUS分析和定量PCR显示OsSHMT1在幼叶中优先表达。 TEM显示oscdm1叶绿体中类囊体膜受到严重破坏。使用IMAGING-PAM荧光计,oscdm1植物显示出比野生型更大的损害,尤其是在高光照强度下。 OsSHMT1-GFP仅定位于线粒体。进一步的分析表明,oscdm1植物中的H_(2)O_(2)含量在第四叶期是野生型的两倍。这表明在oscdm1植物中观察到的类囊体膜损伤是由过量的H_(2)O_(2)引起的。有趣的是,过表达OsSHMT1的植物表现出增加的光合作用效率和改善的植物生产力。这些结果为进一步研究OsSHMT1基因奠定了基础,并将有助于阐明OsSHMT1在水稻光呼吸中的功能作用。

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