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异源多倍体的早期后果改变了茄科烟草属植物的花进化。

Early consequences of allopolyploidy alter floral evolution in Nicotiana (Solanaceae).

机构信息

Department of Botany and Plant Sciences, University of California, Riverside, Riverside, CA, 92521, USA.

Present address: Department of Biological Sciences, SUNY Cortland, Cortland, NY, 13045, USA.

出版信息

BMC Plant Biol. 2019 Apr 27;19(1):162. doi: 10.1186/s12870-019-1771-5.

Abstract

BACKGROUND

Polyploidy has played a major role in angiosperm evolution. Previous studies have examined polyploid phenotypes in comparison to their extant progenitors, but not in context of predicted progenitor phenotypes at allopolyploid origin. In addition, differences in the trends of polyploid versus diploid evolution have not been investigated. We use ancestral character-state reconstructions to estimate progenitor phenotype at allopolyploid origin to determine patterns of polyploid evolution leading to morphology of the extant species. We also compare trends in diploid versus allopolyploid evolution to determine if polyploidy modifies floral evolutionary patterns.

RESULTS

Predicting the ancestral phenotype of a nascent allopolyploid from reconstructions of diploid phenotypes at the time of polyploid formation generates different phenotype predictions than when extant diploid phenotypes are used, the outcome of which can alter conclusions about polyploid evolution; however, most analyses yield the same results. Using ancestral reconstructions of diploid floral phenotypes indicate that young polyploids evolve shorter, wider corolla tubes, but older polyploids and diploids do not show any detectable evolutionary trends. Lability of the traits examined (floral shape, corolla tube length, and corolla tube width) differs across young and older polyploids and diploids. Corolla length is more evolutionarily labile in older polyploids and diploids. Polyploids do not display unique suites of floral characters based on both morphological and color traits, but some suites of characters may be evolving together and seem to have arisen multiple times within Nicotiana, perhaps due to the influence of pollinators.

CONCLUSIONS

Young polyploids display different trends in floral evolution (shorter, wider corolla tubes, which may result in more generalist pollination) than older polyploids and diploids, suggesting that patterns of divergence are impacted by the early consequences of allopolyploidy, perhaps arising from genomic shock and/or subsequent genome stabilization associated with diploidization. Convergent evolution in floral morphology and color in Nicotiana can be consistent with pollinator preferences, suggesting that pollinators may have shaped floral evolution in Nicotiana.

摘要

背景

多倍体在被子植物进化中发挥了重要作用。以前的研究比较了多倍体的表型与其现存祖先的表型,但并未完全根据多倍体起源时的预测祖先表型进行研究。此外,还没有研究多倍体与二倍体进化趋势的差异。我们使用祖先性状状态重建来估计多倍体起源时的祖先表型,以确定导致现存物种形态的多倍体进化模式。我们还比较了二倍体与多倍体进化的趋势,以确定多倍体是否改变了花部进化模式。

结果

从多倍体形成时的二倍体表型重建中预测新生多倍体的祖先表型,与使用现存二倍体表型的预测结果不同,这可能会改变对多倍体进化的结论;然而,大多数分析得出的结果是相同的。使用二倍体花部表型的祖先重建表明,年轻的多倍体进化出较短、较宽的花冠管,但较老的多倍体和二倍体则没有表现出任何可检测到的进化趋势。所研究性状(花部形态、花冠管长度和花冠管宽度)的不稳定性在年轻和年老的多倍体和二倍体之间有所不同。在较老的多倍体和二倍体中,花冠长度的进化不稳定性更大。多倍体并没有根据形态和颜色特征显示出独特的花部特征组合,但某些特征组合可能一起进化,并似乎在烟草属内多次出现,这可能是由于传粉者的影响。

结论

与较老的多倍体和二倍体相比,年轻的多倍体在花部进化方面表现出不同的趋势(较短、较宽的花冠管,这可能导致更广泛的传粉),这表明分化模式受到多倍体形成的早期影响,可能源于基因组冲击和/或随后与二倍体化相关的基因组稳定化。烟草属中花部形态和颜色的趋同进化与传粉者的偏好一致,这表明传粉者可能塑造了烟草属的花部进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56b7/6486959/41a18c0b41aa/12870_2019_1771_Fig1_HTML.jpg

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