The floral ABCs of Hydnora, one of the most bizarre parasitic plants in the world, and its autotrophic relatives of the order Piperales.

IF 3.6 2区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Evodevo Pub Date : 2025-10-02 DOI:10.1186/s13227-025-00252-8
Natalia Pabón-Mora, Favio González, Claude W dePamphilis, Jay F Bolin, Christoph Neinhuis, Juan F Alzate, Stefan Wanke
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引用次数: 0

Abstract

Hydnora (Hydnoraceae) comprises a few parasitic species exceptional among the autotrophic members of the perianth-bearing Piperales. Flowers in the genus are thick, fleshy, sapromyophilous, and develop into massive, polyspermous fruits. They are formed directly along underground rhizomes that parasitize species of Euphorbiaceae and Fabaceae. Due to its peculiar floral morphology and lack of leaves, Hydnora is often dubbed 'the strangest plant in the world'. Here we generated the first transcriptomes of Hydnora visseri from the dissected rhizome, perianth, osmophore, stamen, carpel, and fruit. Our results suggest that Hydnora possesses one of the simplest developmental genetic toolkits for flowering and floral organ identity among angiosperms, further emphasizing its uniqueness. We detected that most of the photoperiodic flowering integrators are expressed. In contrast, regulators of the autonomous pathway and circadian clock were notably absent from the transcriptomes. Conversely, we identified an intact genetic toolkit linked to floral organ identity and fruit development in Hydnora. Through positional homology and gene expression data, we inferred that the perianth of Hydnora corresponds to the calyx, and that the osmophores are late sepal elaborations. Additionally, the expression patterns of genes responsible for stamen, carpel, and ovule identity align with the canonical ABCDE model. Finally, we recorded large-scale duplications in putative perianth identity genes prior to the diversification of all perianth-bearing Piperales. This study serves as an additional comparative point for assessing the evolutionary onset of holoparasitic plants, as Hydnora and its sister genus Prosopanche are likely the earliest branching representatives of this lifestyle across angiosperms.

世界上最奇异的寄生植物之一——水螅的花的abc,以及它的自养亲戚——胡椒目。
水螅(水螅科)包括一些寄生物种,在花被自养成员中例外。花在属是厚,肉质,腐肌,并发展成巨大的,多精子的果实。它们直接沿着寄生于大戟科和豆科植物的地下根茎形成。由于其奇特的花形态和没有叶子,海诺拉经常被称为“世界上最奇怪的植物”。在这里,我们从解剖的水螅根茎、花被、渗透层、雄蕊、心皮和果实中获得了水螅的第一个转录组。我们的研究结果表明,在被子植物中,水螅具有最简单的开花和花器官特征发育遗传工具之一,进一步强调了其独特性。我们发现大部分的光周期开花积分子都有表达。相比之下,自主通路和生物钟的调节因子在转录组中明显缺失。相反,我们发现了一个完整的遗传工具包,与水螅花器官身份和果实发育有关。通过位置同源性和基因表达数据,我们推测水螅的花被与花萼相对应,渗透孔是萼片发育的后期。此外,负责雄蕊、心皮和胚珠身份的基因表达模式与ABCDE模型一致。最后,我们记录了在所有花被花萼多样化之前假定的花被同源基因的大规模重复。这项研究为评估全寄生植物的进化起源提供了一个额外的比较点,因为水螅和它的姐妹属Prosopanche可能是这种生活方式在被子植物中最早的分支代表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Evodevo
Evodevo EVOLUTIONARY BIOLOGY-DEVELOPMENTAL BIOLOGY
CiteScore
7.50
自引率
0.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: EvoDevo publishes articles on a broad range of topics associated with the translation of genotype to phenotype in a phylogenetic context. Understanding the history of life, the evolution of novelty and the generation of form, whether through embryogenesis, budding, or regeneration are amongst the greatest challenges in biology. We support the understanding of these processes through the many complementary approaches that characterize the field of evo-devo. The focus of the journal is on research that promotes understanding of the pattern and process of morphological evolution. All articles that fulfill this aim will be welcome, in particular: evolution of pattern; formation comparative gene function/expression; life history evolution; homology and character evolution; comparative genomics; phylogenetics and palaeontology
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