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首页> 外文期刊>Russian journal of genetics >Nuclear-cytoplasmic compatibility and the state of mitochondrial and chloroplast DNA regions in alloplasmic recombinant and introgressive lines (H-vulgare)-T-aestivum
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Nuclear-cytoplasmic compatibility and the state of mitochondrial and chloroplast DNA regions in alloplasmic recombinant and introgressive lines (H-vulgare)-T-aestivum

机译:异质重组和渐渗系(H-vulgare)-T-aestivum中的核细胞质相容性以及线粒体和叶绿体DNA区域的状态

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摘要

Alloplasmic lines combining alien nuclear and cytoplasmic genomes are convenient models for studying the mechanisms of nuclear-cytoplasmic compatibility/incompatibility. In the present study, we have investigated the correlation between the characters and state of mitochondrial (mt) and chloroplast (cp) DNA regions in alloplasmic recombinant common wheat lines with barley cytoplasm characterized by partial or total fertility. Fertility restoration in the studied lines (Hordeum vulgare)-Triticum aestivum is determined by different ratios of the genetic material of common wheat variety Pyrotrix 28, which is a fertility restorer in the cytoplasm of barley, and variety Saratovskaya 29, which is a fixer of sterility. In partially fertile lines with nuclear genomes dominated by the genetic material of Saratovskaya 29, plant growth and development are suppressed. In these lines we have identified the barley homoplasmy of cpDNA regions infA and rpoB and the heteroplasmy of the 18S/5S mt repeat and the cpDNA ycf5 region. Nuclear-cytoplasmic compatibility in lines with reduced fertility (the genetic material of Pyrotrix 28 predominates in their nuclear genomes) is associated with restoration of normal plant growth and development and the changes in the state of the studied cpDNA and mtDNA regions towards the wheat type. Thus, in fertile lines, the cpDNA regions (infA, rpoB) and the 18S/5S mt repeat were identified in the homoplasmic wheat state; though the cpDNA ycf5 region was in the heteroplasmic state, it was dominated by the wheat type of the copies. The nuclear-cytoplasmic compatibility is not broken as a result of introgression of the alien genetic material into the nuclear genome of one of the fertile lines; the plants of introgressive lines are fertile and normally developed, and the states of the cpDNA and mtDNA regions correspond to their states in fertile recombinant lines.
机译:结合外来核基因组和细胞质基因组的同质系是研究核细胞质相容性/不相容性机制的便利模型。在本研究中,我们调查了以大麦细胞质为部分或全部受精能力的同质重组普通小麦品系的线粒体(mt)和叶绿体(cp)DNA区域的特征与状态之间的相关性。所研究品系(Hordeum vulgare)-普通小麦的育性恢复取决于普通小麦品种Pyrotrix 28和大麦Saratovskaya 29的遗传物质的不同比例,Pyrotrix 28是大麦细胞质的育种恢复剂。不育。在萨拉托夫斯卡娅29的遗传材料占主导的部分可育系的核基因组中,植物的生长和发育受到抑制。在这些品系中,我们确定了cpDNA区域infA和rpoB的大麦同质性以及18S / 5S mt重复序列和cpDNA ycf5区域的异质性。育性降低(Pyrotrix 28的遗传物质在其核基因组中占主导地位)的核细胞质相容性与正常植物生长和发育的恢复以及所研究的cpDNA和mtDNA区域向小麦类型的状态变化有关。因此,在可育品系中,在同质小麦状态下确定了cpDNA区域(infA,rpoB)和18S / 5S mt重复序列。尽管cpDNA ycf5区域处于异质状态,但主要受小麦类型的拷贝控制。由于外来遗传物质渗入可育系之一的核基因组中,核-质相容性没有被破坏;渗入系的植物是可育的并且正常发育,并且cpDNA和mtDNA区域的状态与它们在可育重组系中的状态相对应。

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