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首页> 外文期刊>African Journal of Biotechnology >Different patterns of transcriptomic response to high temperature between diploid and tetraploid Dioscorea zingiberensis C. H.
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Different patterns of transcriptomic response to high temperature between diploid and tetraploid Dioscorea zingiberensis C. H.

机译:二倍体和四倍体薯Di薯os对高温的转录组反应的不同模式。

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Polyploidy is an important evolutionary force in plants and may have significant impact on plant breeding. In this study, expression changes between diploid and tetraploid?Dioscorea zingiberensis?C. H. under control and high temperature conditions were investigated by sequence-related amplified polymorphism (SRAP)-cDNA display approach. Up to 2.7% of the expression changes induced by genome doubling were detected in the tetraploid?D. zingiberensis?relative to its diploid progenitor. Under high temperature stress, a “random transcriptome response” pattern employed with 6.3% of the expression changes were detected in diploid plants, while, an “activation transcriptome response” pattern developed with 6.9% expression changes were detected in tetraploid plants. This result indicated that there might be ploidy dependent pattern of transcriptomic response to high temperature environment, which might contribute to the evolutionary success of polyploids.
机译:多倍体是植物中重要的进化力,可能对植物育种产生重大影响。在这项研究中,表达在二倍体和四倍体?Dioscorea zingiberensis?C之间发生变化。利用序列相关的扩增多态性(SRAP)-cDNA展示方法研究了在高温和高温条件下的链球菌。在四倍体ΔD中检测到多达2.7%的由基因组加倍诱导的表达变化。姜黄相对于其二倍体祖细胞。在高温胁迫下,在二倍体植物中检测到具有6.3%表达变化的“随机转录组反应”模式,而在四倍体植物中检测到具有6.9%表达变化的“激活转录组反应”模式。该结果表明,转录组对高温环境的响应可能存在倍体依赖性模式,这可能有助于多倍体的进化成功。

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