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首页> 外文期刊>Plant Cell Reports >Tissue culture-induced variation at simple sequence repeats in sorghum (Sorghum bicolor L.) is genotype-dependent and associated with down-regulated expression of a mismatch repair gene, MLH3
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Tissue culture-induced variation at simple sequence repeats in sorghum (Sorghum bicolor L.) is genotype-dependent and associated with down-regulated expression of a mismatch repair gene, MLH3

机译:高粱(Sorghum bicolor L.)中简单序列重复的组织培养物诱导的变异是基因型依赖性的,并且与错配修复基因MLH3的表达下调有关

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摘要

Somaclonal variation is a common phenomenon associated with plant tissue culture. Microsatellites or simple sequence repeats (SSRs) are ubiquitous components of eukaryotic genomes, and are intrinsically unstable under various stress conditions including tissue culture. Here, we assessed genetic stability of a set of 29 mapped SSR loci in calli and regenerated plants derived from a pair of reciprocal sorghum inter-strain F1 hybrids and their pure line parents. We further measured the steady-state transcripts of a set of nine mismatch repair (MMR)-encoding genes and a DEMETER (DME), a DNA glycosylase domain protein-encoding gene in these lines, and tested for a possible relationship between altered expression of a given MMR or DME gene and the SSR variations. We found that SSR variations occurred in calli and regenerated plants of both the studied pure lines though at sharply different frequencies (20.7 vs. 6.9%), but no variation was detected in calli and regenerated plants of the pair of F1 hybrids. Compared with the donor seed plants, markedly altered expression of all nine studied MMR genes and the DME gene was observed in calli, and more conspicuously, in the regenerated plants. However, only one gene, i.e., MLH3, showed an altered expression pattern that is genotype specific and significantly correlated with the occurrence of SSR instability. Keywords Simple sequence repeat (SSR) - Mismatch repair (MMR) genes - Somaclonal variation - Tissue culture - Sorghum - Pure line versus hybrid Communicated by P. Kumar.
机译:体细胞克隆变异是与植物组织培养相关的常见现象。微卫星或简单序列重复序列(SSR)是真核生物基因组的普遍组成部分,在包括组织培养在内的各种胁迫条件下均固有地不稳定。在这里,我们评估了一组29个定位的SSR基因座在愈伤组织和再生植物中的遗传稳定性,这些植物来自一对互为高粱的品系F1杂种及其纯系亲本。我们进一步测量了这9个错配修复(MMR)编码基因和DEMETER(DME),DNA糖基化酶结构域蛋白编码基因中的一组的稳态转录本,并测试了它们的改变表达之间的可能关系。给定的MMR或DME基因和SSR变异。我们发现,在两个研究纯系的愈伤组织和再生植株中,SSR均发生了变化,尽管频率明显不同(20.7对6.9%),但在F1杂种对的愈伤组织和再生植株中未检测到变异。与供体种子植物相比,在愈伤组织中观察到所有9个研究的MMR基因和DME基因的表达均发生了明显变化,在再生植株中更为明显。然而,只有一个基因,即MLH3,显示出改变的表达模式,该表达模式是基因型特异性的并且与SSR不稳定性的发生显着相关。关键字简单序列重复(SSR)-错配修复(MMR)基因-体细胞克隆变异-组织培养-高粱-纯系与杂种间的遗传由P. Kumar沟通。

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