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同源基因缺失和表型变化在新近形成且反复形成的异源四倍体苦荬菜(菊科)自然种群中。

Homeolog loss and expression changes in natural populations of the recently and repeatedly formed allotetraploid Tragopogon mirus (Asteraceae).

机构信息

Department of Biology, University of Florida, Gainesville, Florida 32611, USA.

出版信息

BMC Genomics. 2010 Feb 8;11:97. doi: 10.1186/1471-2164-11-97.

Abstract

BACKGROUND

Although polyploidy has long been recognized as a major force in the evolution of plants, most of what we know about the genetic consequences of polyploidy comes from the study of crops and model systems. Furthermore, although many polyploid species have formed repeatedly, patterns of genome evolution and gene expression are largely unknown for natural polyploid populations of independent origin. We therefore examined patterns of loss and expression in duplicate gene pairs (homeologs) in multiple individuals from seven natural populations of independent origin of Tragopogon mirus (Asteraceae), an allopolyploid that formed repeatedly within the last 80 years from the diploids T. dubius and T. porrifolius.

RESULTS

Using cDNA-AFLPs, we found differential band patterns that could be attributable to gene silencing, novel expression, and/or maternal/paternal effects between T. mirus and its diploid parents. Subsequent cleaved amplified polymorphic sequence (CAPS) analyses of genomic DNA and cDNA revealed that 20 of the 30 genes identified through cDNA-AFLP analysis showed additivity, whereas nine of the 30 exhibited the loss of one parental homeolog in at least one individual. Homeolog loss (versus loss of a restriction site) was confirmed via sequencing. The remaining gene (ADENINE-DNA GLYCOSYLASE) showed ambiguous patterns in T. mirus because of polymorphism in the diploid parent T. dubius. Most (63.6%) of the homeolog loss events were of the T. dubius parental copy. Two genes, NUCLEAR RIBOSOMAL DNA and GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE, showed differential expression of the parental homeologs, with the T. dubius copy silenced in some individuals of T. mirus.

CONCLUSIONS

Genomic and cDNA CAPS analyses indicated that plants representing multiple populations of this young natural allopolyploid have experienced frequent and preferential elimination of homeologous loci. Comparable analyses of synthetic F1 hybrids showed only additivity. These results suggest that loss of homeologs and changes in gene expression are not the immediate result of hybridization, but are processes that occur following polyploidization, occurring during the early (<40) generations of the young polyploid. Both T. mirus and a second recently formed allopolyploid, T. miscellus, exhibit more homeolog losses than gene silencing events. Furthermore, both allotetraploids undergo biased loss of homeologs contributed by their shared diploid parent, T. dubius. Further studies are required to assess whether the results for the 30 genes so far examined are representative of the entire genome.

摘要

背景

尽管多倍体长期以来一直被认为是植物进化的主要力量,但我们对多倍体遗传后果的了解大多来自于对作物和模式系统的研究。此外,尽管许多多倍体物种已经多次形成,但对于独立起源的自然多倍体群体,其基因组进化和基因表达模式在很大程度上是未知的。因此,我们研究了 7 个独立起源的天蓝苜蓿(菊科)自然种群中多个个体中重复基因对(同源基因)的丢失和表达模式。天蓝苜蓿是在过去 80 年内由二倍体天蓝苜蓿和天蓝葡根草多次形成的异源多倍体。

结果

使用 cDNA-AFLP,我们发现了可以归因于基因沉默、新表达和/或母本/父本效应的差异带模式,这些模式存在于天蓝苜蓿与其二倍体亲本之间。随后对基因组 DNA 和 cDNA 的切割扩增多态性序列 (CAPS)分析表明,通过 cDNA-AFLP 分析鉴定的 30 个基因中,有 20 个表现出加性,而 30 个中有 9 个在至少一个个体中表现出一个亲本同源基因的丢失。通过测序证实了同源基因丢失(与限制位点丢失相比)。其余基因(腺嘌呤-DNA 糖基化酶)由于二倍体亲本天蓝葡根草的多态性,在天蓝苜蓿中表现出模糊的模式。大多数(63.6%)同源基因丢失事件是 T. dubius 亲本拷贝的。两个基因,核核糖体 DNA 和甘油醛-3-磷酸脱氢酶,表现出亲本同源基因的差异表达,在天蓝苜蓿的一些个体中,T. dubius 拷贝被沉默。

结论

基因组和 cDNA CAPS 分析表明,代表该年轻自然异源多倍体的多个种群的植物经历了同源基因座的频繁和优先消除。对合成 F1 杂种的类似分析仅显示加性。这些结果表明,同源基因的丢失和基因表达的变化不是杂交的直接结果,而是在多倍化之后发生的过程,发生在年轻多倍体的早期(<40 代)。天蓝苜蓿和最近形成的第二个异源多倍体天蓝Miscellus 都表现出比基因沉默事件更多的同源基因丢失。此外,这两个异源四倍体都经历了其共同的二倍体亲本天蓝葡根草同源基因的偏向丢失。需要进一步的研究来评估到目前为止检查的 30 个基因的结果是否代表整个基因组。

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