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七个新的完整质体基因组序列揭示了兰花中ndh基因家族的大量独立丢失以及反向重复/小单拷贝区域边界的相关不稳定性。

Seven New Complete Plastome Sequences Reveal Rampant Independent Loss of the ndh Gene Family across Orchids and Associated Instability of the Inverted Repeat/Small Single-Copy Region Boundaries.

作者信息

Kim Hyoung Tae, Kim Jung Sung, Moore Michael J, Neubig Kurt M, Williams Norris H, Whitten W Mark, Kim Joo-Hwan

机构信息

Department of Life Science, Gachon University, Seongnam, Gyeonggi-do, Korea.

Department of Biology, Oberlin College, Oberlin, Ohio, United States of America.

出版信息

PLoS One. 2015 Nov 11;10(11):e0142215. doi: 10.1371/journal.pone.0142215. eCollection 2015.

Abstract

Earlier research has revealed that the ndh loci have been pseudogenized, truncated, or deleted from most orchid plastomes sequenced to date, including in all available plastomes of the two most species-rich subfamilies, Orchidoideae and Epidendroideae. This study sought to resolve deeper-level phylogenetic relationships among major orchid groups and to refine the history of gene loss in the ndh loci across orchids. The complete plastomes of seven orchids, Oncidium sphacelatum (Epidendroideae), Masdevallia coccinea (Epidendroideae), Sobralia callosa (Epidendroideae), Sobralia aff. bouchei (Epidendroideae), Elleanthus sodiroi (Epidendroideae), Paphiopedilum armeniacum (Cypripedioideae), and Phragmipedium longifolium (Cypripedioideae) were sequenced and analyzed in conjunction with all other available orchid and monocot plastomes. Most ndh loci were found to be pseudogenized or lost in Oncidium, Paphiopedilum and Phragmipedium, but surprisingly, all ndh loci were found to retain full, intact reading frames in Sobralia, Elleanthus and Masdevallia. Character mapping suggests that the ndh genes were present in the common ancestor of orchids but have experienced independent, significant losses at least eight times across four subfamilies. In addition, ndhF gene loss was correlated with shifts in the position of the junction of the inverted repeat (IR) and small single-copy (SSC) regions. The Orchidaceae have unprecedented levels of homoplasy in ndh gene presence/absence, which may be correlated in part with the unusual life history of orchids. These results also suggest that ndhF plays a role in IR/SSC junction stability.

摘要

早期研究表明,到目前为止,在大多数已测序的兰花质体基因组中,ndh基因座已被假基因化、截短或缺失,包括在两个物种最丰富的亚科——兰亚科和树兰亚科的所有可用质体基因组中。本研究旨在解决主要兰花类群之间更深层次的系统发育关系,并完善整个兰花中ndh基因座的基因丢失历史。对七种兰花的完整质体基因组进行了测序和分析,这七种兰花分别是瘤瓣兰(树兰亚科)、火红文心兰(树兰亚科)、硬叶竹叶兰(树兰亚科)、近布氏竹叶兰(树兰亚科)、苏铁叶槌柱兰(树兰亚科)、杏黄兜兰(杓兰亚科)和长叶猪笼草(杓兰亚科),并与所有其他可用的兰花和单子叶植物质体基因组一起进行分析。研究发现,在瘤瓣兰、兜兰属和猪笼草属中,大多数ndh基因座已被假基因化或丢失,但令人惊讶的是,在竹叶兰属、槌柱兰属和文心兰属中,所有ndh基因座都保留了完整的可读框。特征映射表明,ndh基因存在于兰花的共同祖先中,但在四个亚科中至少经历了八次独立的、重大的丢失。此外,ndhF基因的丢失与反向重复序列(IR)和小单拷贝序列(SSC)区域交界处位置的变化相关。兰科植物在ndh基因存在/缺失方面具有前所未有的同塑性水平,这可能部分与兰花不同寻常的生活史有关。这些结果还表明,ndhF在IR/SSC交界处稳定性中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4648/4641739/398355c351e9/pone.0142215.g001.jpg

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