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叶绿体诱变剂诱导的拟南芥母本扭曲叶突变体中线粒体基因表达的改变

Altered mitochondrial gene expression in a maternal distorted leaf mutant of Arabidopsis induced by chloroplast mutator.

作者信息

Sakamoto W, Kondo H, Murata M, Motoyoshi F

机构信息

Research Institute for Bioresources, Okayama University, Japan.

出版信息

Plant Cell. 1996 Aug;8(8):1377-90. doi: 10.1105/tpc.8.8.1377.

Abstract

Chloroplast mutator (chm) of Arabidopsis is a recessive nuclear mutation that causes green and white variegation in leaves and is inherited in a non-Mendelian fashion. In this study, we have identified and characterized a mutant observed in F1 and backcrossed BC1 populations from a cross between chm1-3 and ecotype Columbia. This mutant, maternal distorted leaf (MDL), grows very poorly and is distinguished by distorted rough leaves and aborted flowering organs. Electron microscopic observation showed that in MDL plants, a significant portion of mitochondria are abnormal and appear to be nonfunctional. DNA gel blot and sequence analysis of the MDL mitochondrial DNA (mtDNA) revealed rearrangements in two mtDNA fragments associated with rps3-rpl16 genes (encoding ribosomal proteins S3 and L16, respectively). One rearrangement resulted in the insertion of the rps3-rpl16 operon downstream of atp9. An independent deletion in this region had eliminated the majority of rps3. In contrast, another rearrangement deleted part of rpl16, whereas rps3 remained intact. RNA gel blot analysis indicated that expression of these genes is also altered as a consequence of the mtDNA rearrangements. Thus, a mutation at the CHM locus affects mitochondrial gene expression, and impaired mitochondrial function may result in the distorted phenotype.

摘要

拟南芥叶绿体突变体(chm)是一种隐性核突变,可导致叶片出现绿色和白色斑驳,并且以非孟德尔方式遗传。在本研究中,我们鉴定并描述了一个在chm1 - 3与生态型哥伦比亚杂交的F1和回交BC1群体中观察到的突变体。这个突变体,母本扭曲叶(MDL),生长非常差,其特征是叶片扭曲粗糙且花器官败育。电子显微镜观察显示,在MDL植株中,很大一部分线粒体是异常的,似乎没有功能。对MDL线粒体DNA(mtDNA)进行DNA凝胶印迹和序列分析,发现与rps3 - rpl16基因(分别编码核糖体蛋白S3和L16)相关的两个mtDNA片段发生了重排。一种重排导致rps3 - rpl16操纵子插入到atp9下游。该区域的一个独立缺失消除了大部分rps3。相反,另一种重排缺失了部分rpl16,而rps3保持完整。RNA凝胶印迹分析表明,这些基因的表达也因mtDNA重排而改变。因此,CHM位点的突变影响线粒体基因表达,线粒体功能受损可能导致扭曲的表型。

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