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From the Cover: Floral symmetry genes and the origin and maintenance of zygomorphy in a plant-pollinator mutualism

机译:从封面开始:植物对称授粉植物中花对称基因和合子的起源与维持

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摘要

The evolution of floral zygomorphy is an important innovation in flowering plants and is thought to arise principally from specialization on various insect pollinators. Floral morphology of neotropical Malpighiaceae is distinctive and highly conserved, especially with regard to symmetry, and is thought to be caused by selection by its oil-bee pollinators. We sought to characterize the genetic basis of floral zygomorphy in Malpighiaceae by investigating CYCLOIDEA2-like (CYC2-like) genes, which are required for establishing symmetry in diverse core eudicots. We identified two copies of CYC2-like genes in Malpighiaceae, which resulted from a gene duplication in the common ancestor of the family. A likely role for these loci in the development of floral zygomorphy in Malpighiaceae is demonstrated by the conserved pattern of dorsal gene expression in two distantly related neotropical species, Byrsonima crassifolia and Janusia guaranitica. Further evidence for this function is observed in a Malpighiaceae species that has moved to the paleotropics and experienced coincident shifts in pollinators, floral symmetry, and CYC2-like gene expression. The dorsal expression pat-tern observed in Malpighiaceae contrasts dramatically with their actinomorphic-flowered relatives, Centroplacaceae (Bhesa paniculata) and Elatinaceae (Bergia texana). In particular, B. texana exhibits a previously undescribed pattern of uniform CYC2 expression, suggesting that CYC2 expression among the actinomorphic ancestors of zygomorphic lineages may be much more complex than previously thought. We consider three evolutionary models that may have given rise to this patterning, including the hypothesis that floral zygomorphy in Malpighiaceae arose earlier than standard morphology-based character reconstructions suggest.
机译:花合子的进化是开花植物的一项重要创新,被认为主要是由于对各种昆虫传粉媒介的专门化而引起的。新热带马鞭草科的花形非常独特且高度保守,特别是在对称性方面,被认为是由油蜂授粉者的选择引起的。我们试图通过研究CYCLOIDEA2样(CYC2样)基因来表征马尔皮亚科花合子的遗传基础,这是在各种核心双子叶植物中建立对称性所必需的。我们在马尔皮科中鉴定了两个CYC2样基因拷贝,这是由于该家族共同祖先的基因重复所致。这些基因座在马尔皮亚科的花合子发育中的可能作用是通过在两个远缘新近热带物种Byrsonima crassifolia和Janusia guaranitica中背侧基因表达的保守模式证明的。在已转移到古热带的传粉蝶科中观察到了该功能的进一步证据,传粉媒介,花对称性和CYC2样基因表达发生了同时变化。在马鞭草科中观察到的背侧表达模式与它们的光化形态的近缘亲缘植物(蝶草科(Bhesa paniculata)和鸢尾科(Bergia texana))形成了鲜明的对比。尤其是,德州芽孢杆菌显示出以前未描述的均匀CYC2表达模式,这表明合子谱系的放线祖先中的CYC2表达可能比以前认为的要复杂得多。我们考虑了可能导致这种模式的三种进化模型,包括以下假设:马鞭草科的花合子早于基于标准形态学的字符重建所提出。

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