Studies on Mitoplastide Genome and Origin of Mitochondria and Chloroplast in Plants

M. Stupar, S. Stefanović
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Abstract

All extant photosynthetic organisms descend from a primeval photosynthetic operon of the single evolutionary line of cells. This hypothesis proposed existence of mitoplastide genome in the aerobic oxygen non-producing proto-eukaryot. This genome is composed of whole mitochondrial replicon and photosynthetic gene cluster surrounded by membrane. Development of water spliting-PSII superoperon in plants, is a results of mitoplastide genome duplication and gene's function replacement. After both events, mitoplastide genome contain two functionaly polarized replicons (mitochondrial and plastid's). The origin of mitochondrion and chloroplast occured in three steps. First, a replication fork pauses and collapsed, generating a break in the mitoplastide genome. Second, the double-strand break was repaired by complementary strands invasion. Third, this duplicated genome was segregated into two compartments by reciprocal genetic SCIREA Journal of Biology http://www.scirea.org/journal/Biology
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植物线粒体质体基因组及线粒体、叶绿体起源的研究
所有现存的光合生物都是从单一进化细胞系的原始光合操纵子演化而来的。这一假说提出在不产生有氧氧的原真核生物中存在线粒体质体基因组。该基因组由全线粒体复制子和膜包裹的光合作用基因簇组成。植物水分裂- psii超操纵子的产生是线粒体质体基因组复制和基因功能替代的结果。在这两个事件之后,线粒体质体基因组包含两个功能极化的复制子(线粒体和质体)。线粒体和叶绿体的形成分三步进行。首先,一个复制叉暂停并崩溃,在线粒体质体基因组中产生断裂。其次,双链断裂通过互补链侵入修复。第三,这个重复的基因组被分离成两个室通过互惠遗传SCIREA生物学杂志http://www.scirea.org/journal/Biology
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