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Plastome Evolution in the Sole Hemiparasitic Genus Laurel Dodder (Cassytha) and Insights into the Plastid Phylogenomics of Lauraceae

机译:唯一的半寄生属月桂树d丝(Cassytha)的塑性组进化和对月桂科植物种质系统的认识。

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摘要

To date, little is known about the evolution of plastid genomes (plastomes) in Lauraceae. As one of the top five largest families in tropical forests, the Lauraceae contain many species that are important ecologically and economically. Lauraceous species also provide wonderful materials to study the evolutionary trajectory in response to parasitism because they contain both nonparasitic and parasitic species. This study compared the plastomes of nine Lauraceous species, including the sole hemiparasitic and herbaceous genus Cassytha (laurel dodder; here represented by Cassytha filiformis). We found differential contractions of the canonical inverted repeat (IR), resulting in two IR types present in Lauraceae. These two IR types reinforce Cryptocaryeae and Neocinnamomum—Perseeae–Laureae as two separate clades. Our data reveal several traits unique to Cas. filiformis, including loss of IRs, loss or pseudogenization of 11 ndh and rpl23 genes, richness of repeats, and accelerated rates of nucleotide substitutions in protein-coding genes. Although Cas. filiformis is low in chlorophyll content, our analysis based on dN/dS ratios suggests that both its plastid house-keeping and photosynthetic genes are under strong selective constraints. Hence, we propose that short generation time and herbaceous lifestyle rather than reduced photosynthetic ability drive the accelerated rates of nucleotide substitutions in Cas. filiformis.
机译:迄今为止,对月桂科质体基因组(质体组)的进化知之甚少。作为热带森林中最大的五科之一,月桂科包含许多在生态和经济上都很重要的物种。月桂种还提供了出色的材料来研究对寄生虫的反应,因为它们既包含非寄生物种,也包含寄生物种。这项研究比较了9种月桂科植物的质体,包括唯一的半寄生和草本属Cassytha(月桂do丝;此处由丝状Cassytha代表)。我们发现规范的反向重复(IR)的收缩收缩,导致月桂科存在两种IR类型。这两种红外类型增强了隐叶藻科和新肉桂-Perseeae-Laureae作为两个独立的进化枝。我们的数据揭示了Cas独有的几个特征。丝状体,包括IR缺失,11个ndh和rpl23基因的缺失或假基因,重复序列的丰富性以及蛋白质编码基因中核苷酸置换的加快速率。虽然卡斯。丝状菌的叶绿素含量低,我们基于dN / dS比的分析表明,其质体持家和光合基因均处于强烈的选择性限制之下。因此,我们提出短的产生时间和草本的生活方式而不是光合作用能力的降低驱动了Cas中核苷酸取代的加速。丝状。

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