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《血管植物 euAPETALA2 基因的演化:从孢子囊的原始功能到胚珠和果实的获得性功能》

The Evolution of euAPETALA2 Genes in Vascular Plants: From Plesiomorphic Roles in Sporangia to Acquired Functions in Ovules and Fruits.

机构信息

New York Botanical Garden, Bronx, NY 10458, United States.

The Graduate Center, City University of New York, New York, NY 10016, United States.

出版信息

Mol Biol Evol. 2021 May 19;38(6):2319-2336. doi: 10.1093/molbev/msab027.

Abstract

The field of evolutionary developmental biology can help address how morphological novelties evolve, a key question in evolutionary biology. In Arabidopsis thaliana, APETALA2 (AP2) plays a role in the development of key plant innovations including seeds, flowers, and fruits. AP2 belongs to the AP2/ETHYLENE RESPONSIVE ELEMENT BINDING FACTOR family which has members in all viridiplantae, making it one of the oldest and most diverse gene lineages. One key subclade, present across vascular plants is the euAPETALA2 (euAP2) clade, whose founding member is AP2. We reconstructed the evolution of the euAP2 gene lineage in vascular plants to better understand its impact on the morphological evolution of plants, identifying seven major duplication events. We also performed spatiotemporal expression analyses of euAP2/TOE3 genes focusing on less explored vascular plant lineages, including ferns, gymnosperms, early diverging angiosperms and early diverging eudicots. Altogether, our data suggest that euAP2 genes originally contributed to spore and sporangium development, and were subsequently recruited to ovule, fruit and floral organ development. Finally, euAP2 protein sequences are highly conserved; therefore, changes in the role of euAP2 homologs during development are most likely due to changes in regulatory regions.

摘要

进化发育生物学领域可以帮助解决形态新颖性如何进化的问题,这是进化生物学的一个关键问题。在拟南芥中,APETALA2 (AP2) 在包括种子、花和果实在内的关键植物创新的发育中发挥作用。AP2 属于 AP2/ETHYLENE RESPONSIVE ELEMENT BINDING FACTOR 家族,该家族在所有绿藻门植物中都有成员,使其成为最古老和最多样化的基因谱系之一。一个关键的亚科,即存在于所有维管植物中的 euAPETALA2 (euAP2) 进化枝,其创始成员是 AP2。我们重建了维管植物中 euAP2 基因谱系的进化,以更好地了解其对植物形态进化的影响,确定了七个主要的复制事件。我们还对 euAP2/TOE3 基因进行了时空表达分析,重点关注蕨类植物、裸子植物、早期分化的被子植物和早期分化的真双子叶植物等研究较少的维管植物谱系。总之,我们的数据表明,euAP2 基因最初有助于孢子和孢子囊的发育,随后被招募到胚珠、果实和花器官的发育中。最后,euAP2 蛋白序列高度保守;因此,euAP2 同源物在发育过程中作用的变化很可能是由于调节区域的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ed5/8136505/90cc31f63791/msab027f1.jpg

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