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result(s) for
"Walker-Hale, Nathanael"
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The evolution of betalain biosynthesis in Caryophyllales
2019
Within the angiosperm order Caryophyllales, an unusual class of pigments known as betalains can replace the otherwise ubiquitous anthocyanins. In contrast to the phenylalanine-derived anthocyanins, betalains are tyrosine-derived pigments which contain the chromophore betalamic acid. The origin of betalain pigments within Caryophyllales and their mutual exclusion with anthocyanin pigments have been the subject of considerable research. In recent years, numerous discoveries, accelerated by -omic scale data, phylogenetics and synthetic biology, have shed light on the evolution of the betalain biosynthetic pathway in Caryophyllales. These advances include the elucidation of the biosynthetic steps in the betalain pathway, identification of transcriptional regulators of betalain synthesis, resolution of the phylogenetic history of key genes, and insight into a role for modulation of primary metabolism in betalain synthesis. Here we review how molecular genetics have advanced our understanding of the betalain biosynthetic pathway, and discuss the impact of phylogenetics in revealing its evolutionary history. In light of these insights, weexplore our new understanding of the origin of betalains, the mutual exclusion of betalains and anthocyanins, and the homoplastic distribution of betalain pigmentation within Caryophyllales. We conclude with a speculative conceptual model for the stepwise emergence of betalain pigmentation.
Journal Article
Evolution of L-DOPA 4,5-dioxygenase activity allows for recurrent specialisation to betalain pigmentation in Caryophyllales
by
Walker-Hale, Nathanael
,
Yim, Won C.
,
Guo, Rui
in
Anthocyanins
,
BASIC BIOLOGICAL SCIENCES
,
Betalains
2020
• The evolution of L-DOPA 4,5-dioxygenase activity, encoded by the gene DODA, was a key step in the origin of betalain biosynthesis in Caryophyllales. We previously proposed that L-DOPA 4,5-dioxygenase activity evolved via a single Caryophyllales-specific neofunctionalisation event within the DODA gene lineage. However, this neofunctionalisation event has not been confirmed and the DODA gene lineage exhibits numerous gene duplication events, whose evolutionary significance is unclear.
• To address this, we functionally characterised 23 distinct DODA proteins for L-DOPA 4,5-dioxygenase activity, from four betalain-pigmented and five anthocyanin-pigmented species, representing key evolutionary transitions across Caryophyllales. By mapping these functional data to an updated DODA phylogeny, we then explored the evolution of L-DOPA 4,5-dioxygenase activity.
• We find that low L-DOPA 4,5-dioxygenase activity is distributed across the DODA gene lineage. In this context, repeated gene duplication events within the DODA gene lineage give rise to polyphyletic occurrences of elevated L-DOPA 4,5-dioxygenase activity, accompanied by convergent shifts in key functional residues and distinct genomic patterns of micro-synteny.
• In the context of an updated organismal phylogeny and newly inferred pigment reconstructions, we argue that repeated convergent acquisition of elevated L-DOPA 4,5-dioxygenase activity is consistent with recurrent specialisation to betalain synthesis in Caryophyllales.
Journal Article
From cacti to carnivores
by
Ahluwalia, Sonia
,
Walker-Hale, Nathanael
,
Flores-Olvera, Hilda
in
Adaptation
,
Agdestidaceae
,
Amaranthaceae
2018
Premise of the Study The Caryophyllales contain ~12,500 species and are known for their cosmopolitan distribution, convergence of trait evolution, and extreme adaptations. Some relationships within the Caryophyllales, like those of many large plant clades, remain unclear, and phylogenetic studies often recover alternative hypotheses. We explore the utility of broad and dense transcriptome sampling across the order for resolving evolutionary relationships in Caryophyllales. Methods We generated 84 transcriptomes and combined these with 224 publicly available transcriptomes to perform a phylogenomic analysis of Caryophyllales. To overcome the computational challenge of ortholog detection in such a large data set, we developed an approach for clustering gene families that allowed us to analyze >300 transcriptomes and genomes. We then inferred the species relationships using multiple methods and performed gene‐tree conflict analyses. Key Results Our phylogenetic analyses resolved many clades with strong support, but also showed significant gene‐tree discordance. This discordance is not only a common feature of phylogenomic studies, but also represents an opportunity to understand processes that have structured phylogenies. We also found taxon sampling influences species‐tree inference, highlighting the importance of more focused studies with additional taxon sampling. Conclusions Transcriptomes are useful both for species‐tree inference and for uncovering evolutionary complexity within lineages. Through analyses of gene‐tree conflict and multiple methods of species‐tree inference, we demonstrate that phylogenomic data can provide unparalleled insight into the evolutionary history of Caryophyllales. We also discuss a method for overcoming computational challenges associated with homolog clustering in large data sets.
Journal Article
Characterizing gene tree conflict in plastome-inferred phylogenies
by
Walker-Hale, Nathanael
,
Vargas, Oscar M.
,
Larson, Drew A.
in
Amino acids
,
Angiosperms
,
Botanical research
2019
Evolutionary relationships among plants have been inferred primarily using chloroplast data. To date, no study has comprehensively examined the plastome for gene tree conflict. Using a broad sampling of angiosperm plastomes, we characterize gene tree conflict among plastid genes at various time scales and explore correlates to conflict (e.g., evolutionary rate, gene length, molecule type). We uncover notable gene tree conflict against a backdrop of largely uninformative genes. We find alignment length and tree length are strong predictors of concordance, and that nucleotides outperform amino acids. Of the most commonly used markers, matK, greatly outperforms rbcL ; however, the rarely used gene rpoC2 is the top-performing gene in every analysis. We find that rpoC2 reconstructs angiosperm phylogeny as well as the entire concatenated set of protein-coding chloroplast genes. Our results suggest that longer genes are superior for phylogeny reconstruction. The alleviation of some conflict through the use of nucleotides suggests that stochastic and systematic error is likely the root of most of the observed conflict, but further research on biological conflict within plastome is warranted given documented cases of heteroplasmic recombination. We suggest that researchers should filter genes for topological concordance when performing downstream comparative analyses on phylogenetic data, even when using chloroplast genomes.
Journal Article
Phylogenetic Conflicts, Combinability, and Deep Phylogenomics in Plants
by
Walker-Hale, Nathanael
,
Brown, Joseph W.
,
Smith, Stephen A.
in
Angiosperms
,
Classification - methods
,
Datasets
2020
Studies have demonstrated that pervasive gene tree conflict underlies several important phylogenetic relationships where different species tree methods produce conflicting results. Here, we present a means of dissecting the phylogenetic signal for alternative resolutions within a data set in order to resolve recalcitrant relationships and, importantly, identify what the data set is unable to resolve. These procedures extend upon methods for isolating conflict and concordance involving specific candidate relationships and can be used to identify systematic error and disambiguate sources of conflict among species tree inference methods.We demonstrate these on a large phylogenomic plant data set. Our results support the placement of Amborella as sister to the remaining extant angiosperms, Gnetales as sister to pines, and themonophyly of extant gymnosperms. Several other contentious relationships, including the resolution of relationships within the bryophytes and the eudicots, remain uncertain given the lownumber of supporting gene trees. To address whether concatenation of filtered genes amplified phylogenetic signal for relationships, we implemented a combinatorial heuristic to test combinability of genes. We found that nested conflicts limited the ability of data filtering methods to fully ameliorate conflicting signal amongst gene trees. These analyses confirmed that the underlying conflicting signal does not support broad concatenation of genes. Our approach provides a means of dissecting a specific data set to address deep phylogenetic relationships while also identifying the inferential boundaries of the data set.
Journal Article
Intragenic Conflict in Phylogenomic Data Sets
by
Smith, Stephen A
,
Walker-Hale, Nathanael
,
Walker, Joseph F
in
Automation
,
Biological activity
,
Data analysis
2020
Most phylogenetic analyses assume that a single evolutionary history underlies one gene. However, both biological processes and errors can cause intragenic conflict. The extent to which this conflict is present in empirical data sets is not well documented, but if common, could have far-reaching implications for phylogenetic analyses. We examined several large phylogenomic data sets from diverse taxa using a fast and simple method to identify well-supported intragenic conflict. We found conflict to be highly variable between data sets, from 1% to >92% of genes investigated. We analyzed four exemplar genes in detail and analyzed simulated data under several scenarios. Our results suggest that alignment error may be one major source of conflict, but other conflicts remain unexplained and may represent biological signal or other errors. Whether as part of data analysis pipelines or to explore biologically processes, analyses of within-gene phylogenetic signal should become common.
Journal Article
Stemona genomes illuminate fatty acid partitioning between seeds and elaiosomes mediating wasp dispersal
2026
Seed dispersal by wasps (vespicochory) is documented in five angiosperm families, with phylogenies suggesting that most vespicochorous lineages evolved from ant-dispersed (myrmecochorous) ancestors. While recent work has identified cues attracting wasp dispersers, the molecular basis remains unclear. To shed light on the molecular basis of vespicochory, we generated chromosome-level genomes for the wasp-dispersed Stemona tuberosa, and its close ant-dispersed relative S. mairei. Combining comparative genomic, transcriptomic, lipidomic, and functional analyses, we ask (i) how chemical elaiosome differentiation occurs during seed development, and (ii) how key mutualism-associated genes evolved in Stemona. We show that elaiosomes up-regulate stearoyl-ACP Δ9 desaturases (SAD) and accumulate oleic acid and 1,2-diolein, which serve both as food rewards and as precursors for CER1/3-mediated biosynthesis of (Z)-9-tricosene, the key wasp attractant. By contrast, high expression of FatB and DGAT1 in seeds is associated with medium-chain fatty acids (MCFAs) production. Comparative genomics indicates conservation of these genes across Stemona, with S. tuberosa-specific FatB expansion and SAD/CER1/3 repertoire divergence. Our work supports a model for elaiosome-seed fatty-acid differentiation linking recruitment and nourishment in vespicochory. Given that oleic acid and 1,2-diolein are also key cues in myrmecochory, this shared biochemical basis may help explain how vespicochory evolves from ant-dispersed ancestors.Competing Interest StatementThe authors have declared no competing interest.Funder Information DeclaredYunnan Ten Thousand Talents Plan Young and Elite Talents Project, YNWR-QNBJ-2018-017, YNWR-QNBJ-2020-286the Key Project of Basic Research of Yunnan Province, China, 202101AS070035, 202201AS070337Engineering and Physical Sciences Research Council, https://ror.org/0439y7842, EP/X026868/1
Ancient DNA reveals early use of melons in China's Song Dynasty
by
Walker-Hale, Nathanael
,
Preick, Michaela
,
Chomicki, Guillaume
in
Alleles
,
Chinese history
,
Chloroplasts
2026
Melon (Cucumis melo L.) domestication is thought to have independently occurred once in Northeast Africa and twice in India. However, archaeobotanical seed remains suggest a possible additional domestication in China. Because Cucumis seeds are difficult to diagnose morphologically, genomic data from archaeological material are needed to test these scenarios and to infer ancient melon traits. We sequenced two Song Dynasty melon seeds from Shuomen Gugang (China), recovering 4.5x and 1.7x nuclear genome coverage. Nuclear and chloroplast analyses place both seeds within cultivated C. melo accessions from China, supporting introduction from the broader Asian domestication pool rather than an independent Chinese domestication event. To test whether Song Dynasty melon seeds carried trait associated with sweet dessert melons, we analyzed loci underlying fruit phenotypes. Both seeds lacked alleles associated with orange flesh; one carried an allele linked to yellow/orange peel coloration and the other possessed alleles associated with green flesh and reduced acidity. These results suggest that melons in Song Dynasty China were likely consumed as fresh or culinary fruits rather than as highly sweet dessert melons. Their flesh color echoes the Song-period aesthetic traditions, exemplified by the appreciation of jade-green celadon, which was often produced in melon-shaped forms. Thus, by anchoring East Asian archaeobotanical remains within modern melon genomic variation, our study provides a temporal framework for melon dispersal into China and demonstrates how ancient genomics can illuminate crop use in the past.Competing Interest StatementThe authors have declared no competing interest.Funder Information DeclaredNatural Environment Research Council, https://ror.org/02b5d8509, NE/S014470/3UK Research and Innovation, https://ror.org/001aqnf71, EP/X026868/1European Research Council, https://ror.org/0472cxd90, 101095736