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玉米中线粒体 DNA 的数量和完整性随发育而下降。

The amount and integrity of mtDNA in maize decline with development.

机构信息

Department of Biology, University of Washington, Seattle, WA 98195-5325, USA.

出版信息

Planta. 2013 Feb;237(2):603-17. doi: 10.1007/s00425-012-1802-z. Epub 2012 Nov 16.

Abstract

In maize and other grasses there is a developmental gradient from the meristematic cells at the base of the stalk to the differentiated cells at the leaf tip. This gradient presents an opportunity to investigate changes in mitochondrial DNA (mtDNA) that accompany growth under light and dark conditions, as done previously for plastid DNA. Maize mtDNA was analyzed by DAPI-DNA staining of individual mitochondria, gel electrophoresis/blot hybridization, and real-time qPCR. Both the amount and integrity of the mtDNA were found to decline with development. There was a 20-fold decline in mtDNA copy number per cell from the embryo to the light-grown leaf blade. The amount of DNA per mitochondrial particle was greater in dark-grown leaf blade (24 copies, on average) than in the light (2 copies), with some mitochondria lacking any detectable DNA. Three factors that influence the demise of mtDNA during development are considered: (1) the decision to either repair or degrade mtDNA molecules that are damaged by the reactive oxygen species produced as byproducts of respiration; (2) the generation of ATP by photophosphorylation in chloroplasts, reducing the need for respiratory-competent mitochondria; and (3) the shift in mitochondrial function from energy-generating respiration to photorespiration during the transition from non-green to green tissue.

摘要

在玉米和其他禾本科植物中,从茎基部的分生细胞到叶尖的分化细胞存在一个发育梯度。这个梯度为研究线粒体 DNA(mtDNA)在光照和黑暗条件下生长时的变化提供了机会,就像之前对质体 DNA 所做的那样。通过对单个线粒体进行 DAPI-DNA 染色、凝胶电泳/印迹杂交和实时 qPCR 分析,对玉米 mtDNA 进行了分析。结果发现,mtDNA 的数量和完整性随着发育而下降。从胚胎到光生长的叶片,每个细胞的 mtDNA 拷贝数下降了 20 倍。与光照相比,暗生长叶片中每个线粒体颗粒的 DNA 含量更高(平均 24 个拷贝),而有些线粒体则没有任何可检测到的 DNA。有三个因素被认为会影响 mtDNA 在发育过程中的消失:(1)决定修复或降解因呼吸副产物产生的活性氧而受损的 mtDNA 分子;(2)叶绿体中的光合磷酸化产生 ATP,减少了对呼吸功能健全的线粒体的需求;(3)在线粒体从非绿色组织向绿色组织的转变过程中,从产生能量的呼吸作用向光呼吸作用的功能转变。

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