Li X. Q., Zhang M., Brown G. G.
Department of Biology, McGill University, 1205 Doctor Penfield Avenue, Montreal, Quebec H3A 1B1, Canada.
Plant Cell. 1996 Nov;8(11):1961-1975. doi: 10.1105/tpc.8.11.1961.
Although mitochondria are thought to assume crucial and possibly novel physiological functions during male gametogenesis, it is not known to what extent mitochondrial function is necessary for other aspects of plant development or to what degree the expression of plant mitochondrial genes is subject to cell-specific regulation, particularly during vegetative growth. We have used in situ hybridization to show that extensive differences exist in the levels of mitochondrial RNAs (mtRNAs) among different tissues and among different individual cell types within the same organ of maize seedlings. The expression of all examined mtRNAs is enhanced in vascular bundles, particularly in procambium- and xylem-forming cells. Mitochondrial transcript levels correlated highly with cell division activity. For example, in roots, the transcripts are abundant in the dividing cells of the meristem but drop to very low levels in the nondividing cells of the root cap and the meristem quiescent center. By comparison, levels of functional mitochondria, as assessed by rhodamine-123 fluorescence, did not vary greatly among the same group of cells. In shoots, in situ hybridization and blot hybridization revealed differences in the patterns of localization among different mtRNAs. The results indicate that during vegetative growth, mitochondrial gene expression at the transcript level is subject to an unexpected degree of cell-specific regulation and that different controls may operate on different trancripts.
尽管线粒体在雄配子发生过程中被认为承担着关键且可能是新的生理功能,但对于线粒体功能在植物发育的其他方面的必要程度,以及植物线粒体基因的表达在多大程度上受到细胞特异性调控,尤其是在营养生长期间,目前尚不清楚。我们利用原位杂交技术表明,玉米幼苗同一器官内不同组织以及不同个体细胞类型之间,线粒体RNA(mtRNAs)水平存在广泛差异。所有检测的mtRNAs在维管束中表达增强,尤其是在原形成层和木质部形成细胞中。线粒体转录本水平与细胞分裂活性高度相关。例如,在根中,转录本在分生组织的分裂细胞中丰富,但在根冠和分生组织静止中心的非分裂细胞中降至非常低的水平。相比之下,用罗丹明123荧光评估的功能性线粒体水平在同一组细胞中变化不大。在芽中,原位杂交和印迹杂交揭示了不同mtRNAs在定位模式上的差异。结果表明,在营养生长期间,转录水平的线粒体基因表达受到意想不到的细胞特异性调控程度,并且不同的调控可能作用于不同的转录本。