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重复进化的形态新颖性:Physalideae 族(茄科)膨胀果实花萼的系统发育分析。

Repeated evolution of a morphological novelty: a phylogenetic analysis of the inflated fruiting calyx in the Physalideae tribe (Solanaceae).

机构信息

Instituto Multidisciplinario de Biología Vegetal, IMBIV (CONICET-UNC), CC 495, Córdoba, 5000, Argentina.

Department of Ecology and Evolutionary Biology, University of Colorado, Boulder, Colorado, 80305, USA.

出版信息

Am J Bot. 2019 Feb;106(2):270-279. doi: 10.1002/ajb2.1242. Epub 2019 Feb 19.

Abstract

PREMISE OF THE STUDY

The evolution of novel fruit morphologies has been integral to the success of angiosperms. The inflated fruiting calyx, in which the balloon-like calyx swells to completely surround the fruit, has evolved repeatedly across angiosperms and is postulated to aid in protection and dispersal. We investigated the evolution of this trait in the tomatillos and their allies (Physalideae, Solanaceae).

METHODS

The Physalideae phylogeny was estimated using four regions (ITS, LEAFY, trnL-F, waxy) with maximum likelihood (ML) and Bayesian inference. Under the best-fitting ML model of trait evolution, we estimated ancestral states along with the numbers of gains and losses of fruiting calyx accrescence and inflation with Bayesian stochastic mapping. Also, phylogenetic signal in calyx morphology was examined with two metrics (parsimony score and Fritz and Purvis's D).

KEY RESULTS

Based on our well-resolved and densely sampled phylogeny, we infer that calyx evolution has proceeded in a stepwise and directional fashion, from non-accrescent to accrescent to inflated. In total, we inferred 24 gains of accrescence, 24 subsequent transitions to a fully inflated calyx, and only two reversals. Despite this lability, fruiting calyx accrescence and inflation showed strong phylogenetic signal.

CONCLUSIONS

Our phylogeny greatly improves the resolution of Physalideae and highlights the need for taxonomic work. The comparative analyses reveal that the inflated fruiting calyx has evolved many times and that the trajectory toward this phenotype is generally stepwise and irreversible. These results provide a strong foundation for studying the genetic and developmental mechanisms responsible for the repeated origins of this charismatic fruit trait.

摘要

研究前提

新型果实形态的进化是被子植物成功的关键。膨胀的果实花萼,其中气球状的花萼膨胀完全包围果实,已经在被子植物中多次进化,并被推测有助于保护和传播。我们研究了番茄及其盟友(茄科Physalideae)中这种特征的进化。

方法

使用最大似然法(ML)和贝叶斯推断估计 Physalideae 系统发育,使用四个区域(ITS、LEAFY、trnL-F、waxy)。在最适合 ML 模型的特征进化模型下,我们使用贝叶斯随机映射估计祖先状态以及果实花萼增生和膨胀的增益和损失数量。此外,还使用两个度量(简约得分和 Fritz 和 Purvis 的 D)检查花萼形态的系统发育信号。

主要结果

基于我们分辨率高且采样密集的系统发育树,我们推断花萼进化是逐步和定向的,从非增生到增生到膨胀。总共推断出 24 次增生增益,24 次随后过渡到完全膨胀的花萼,只有两次逆转。尽管如此不稳定,果实花萼增生和膨胀表现出强烈的系统发育信号。

结论

我们的系统发育大大提高了 Physalideae 的分辨率,并强调了分类工作的必要性。比较分析表明,膨胀的果实花萼已经进化了多次,而且这种表型的轨迹通常是逐步和不可逆的。这些结果为研究负责这种迷人果实特征的重复起源的遗传和发育机制提供了坚实的基础。

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