杨柳连续叶绿体捕获的解缠。

IF 2.4 2区 生物学 Q2 PLANT SCIENCES
Diksha Gambhir, Brian J. Sanderson, Minghao Guo, Nan Hu, Ashmita Khanal, Quentin Cronk, Tao Ma, Jianquan Liu, Diana M. Percy, Matthew S. Olson
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引用次数: 0

摘要

前提:叶绿体捕获是在初始杂交的反复回交过程中,焦点种的叶绿体被另一种的叶绿体所取代的过程。在这里,我们研究了在柳树的连续杂交事件中,从黑柳(Salix nigra)连续捕获叶绿体,导致在多个柳树物种中捕获相同的叶绿体谱系。方法:利用先前生成的几个柳属物种的核和叶绿体区域序列来鉴定细胞核系统发育不一致的情况,这种模式表明叶绿体捕获。通过比较叶绿体树的系统发育拓扑结构来识别连续的叶绿体捕获,以区分(1)单个叶绿体捕获和随后与捕获的叶绿体形成的谱系,(2)来自同一亲本物种的多个叶绿体捕获,以及(3)连续的叶绿体捕获。我们还寻找了参与细胞核相互作用和光合作用的基因的杂交。结果:鉴定了柳属植物叶绿体连续捕获和捕获后的物种形成。尽管这些叶绿体捕获事件伴随着核基因组的杂交信号,但与叶绿体基因和参与光合作用的核基因在有叶绿体捕获的物种中并不比在没有叶绿体捕获的物种中更容易渗入。结论:本研究揭示了柳属植物叶绿体基因组的复杂进化,以及杂交和基因渗入对基因组进化的潜在影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Disentangling serial chloroplast captures in willows

Premise

Chloroplast capture is a process through which the chloroplast of a focal species is replaced by the chloroplast from another species during repeated backcrossing of an initial hybrid. Here we investigated serial chloroplast capture from Salix nigra in willows during sequential hybridization events that led to the capture of the same chloroplast lineage across multiple Salix species.

Methods

Previously generated sequences of nuclear and chloroplast regions from several Salix species were used to identify cases of cytonuclear phylogenetic discordance, a pattern indicating chloroplast capture. Serial chloroplast captures were identified by comparing phylogenetic topologies of the chloroplast trees to discriminate among (1) a single chloroplast capture and subsequent speciation of the lineage with the captured chloroplast, (2) multiple chloroplast captures from the same parent species, and (3) serial chloroplast captures. We also looked for hybridization in genes involved in cytonuclear interactions and in photosynthesis.

Results

We identified cases of serial chloroplast capture and speciation after chloroplast capture in Salix. Although these chloroplast capture events were accompanied by signals of hybridization in the nuclear genomes, nuclear genes that functionally interact with chloroplast genes and nuclear genes involved in photosynthesis were no more likely to introgress in species with chloroplast captures than in species without chloroplast captures.

Conclusions

This study illuminates the complex evolution of the chloroplast genomes in Salix and the potential for hybridization and introgression to influence genomic evolution.

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来源期刊
American Journal of Botany
American Journal of Botany 生物-植物科学
CiteScore
4.90
自引率
6.70%
发文量
171
审稿时长
3 months
期刊介绍: The American Journal of Botany (AJB), the flagship journal of the Botanical Society of America (BSA), publishes peer-reviewed, innovative, significant research of interest to a wide audience of plant scientists in all areas of plant biology (structure, function, development, diversity, genetics, evolution, systematics), all levels of organization (molecular to ecosystem), and all plant groups and allied organisms (cyanobacteria, algae, fungi, and lichens). AJB requires authors to frame their research questions and discuss their results in terms of major questions of plant biology. In general, papers that are too narrowly focused, purely descriptive, natural history, broad surveys, or that contain only preliminary data will not be considered.
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