Homospermidine synthase evolution and the origin(s) of pyrrolizidine alkaloids in Apocynaceae

IF 2.4 2区 生物学 Q2 PLANT SCIENCES
Chelsea R. Smith, Elisabeth Kaltenegger, Jordan Teisher, Abigail J. Moore, Shannon C. K. Straub, Tatyana Livshultz
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引用次数: 0

Abstract

Premise

Enzymes that are encoded by paralogous genes and produce identical specialized metabolites in distantly related plant lineages are strong evidence of parallel phenotypic evolution. Inference of phenotypic homology for metabolites produced by orthologous genes is less straightforward, since orthologs may be recruited in parallel into novel pathways. In prior research on pyrrolizidine alkaloids (PAs), specialized metabolites of Apocynaceae, the evolution of homospermidine synthase (HSS), an enzyme of PA biosynthesis, was reconstructed and a single origin of PAs inferred because HSS enzymes of all known PA-producing Apocynaceae species are orthologous and descended from an ancestral enzyme with the motif (VXXXD) of an optimized HSS.

Methods

We increased sampling, tested the effect of amino acid motif on HSS function, revisited motif evolution, and tested for selection to infer evolution of HSS function and its correlation with phenotype.

Results

Some evidence supports a single origin of PAs: an IXXXD HSS-like gene, similar in function to VXXXD HSS, evolved in the shared ancestor of all PA-producing species; loss of HSS function occurred multiple times via pseudogenization and perhaps via evolution of an IXXXN motif. Other evidence indicates multiple origins: the VXXXD motif, highly correlated with the PA phenotype, evolved two or four times independently; the ancestral IXXXD gene was not under positive selection, while some VXXXD genes were; and substitutions at sites experiencing positive selection occurred on multiple branches in the HSS-like gene tree.

Conclusions

The complexity of the genotype-function-phenotype map confounds the inference of PA homology from HSS-like gene evolution in Apocynaceae.

Abstract Image

夹竹桃科植物同亚精胺合酶的进化及吡咯利西啶类生物碱的来源。
前提:由同源基因编码的酶在远亲植物谱系中产生相同的特化代谢物是平行表型进化的有力证据。对同源基因产生的代谢物的表型同源性的推断不那么直接,因为同源基因可能在新的途径中平行募集。在对罗布麻科特殊代谢产物吡啶生物碱(pyrrolizidine alkaloids, PAs)的前期研究中,重构了同源亚精胺合成酶(homospermidine synthase, HSS)的进化过程,并推断出同源亚精胺合成酶的单一起源,因为已知的罗布麻科所有产生PA的物种的HSS酶都是同源的,并且起源于一个具有优化后的HSS基序(VXXXD)的祖先酶。方法:增加采样,检测氨基酸基序对HSS功能的影响,重新考察基序的进化,并进行选择测试,以推断HSS功能的进化及其与表型的相关性。结果:一些证据支持PAs的单一起源:一个IXXXD HSS样基因,在功能上与VXXXD HSS相似,在所有产生pa的物种的共同祖先中进化;HSS功能的丧失通过假原化和IXXXN基序的进化多次发生。其他证据表明有多重起源:与PA表型高度相关的VXXXD基序独立进化了2到4次;祖先的IXXXD基因不存在正选择,而部分VXXXD基因存在正选择;在hss样基因树的多个分支上发生了正选择位点的替换。结论:基因型-功能-表型图谱的复杂性使夹带科hss样基因进化中PA同源性的推断混淆。
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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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