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1.
Nat Genet ; 56(4): 721-731, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38622339

ABSTRACT

Coffea arabica, an allotetraploid hybrid of Coffea eugenioides and Coffea canephora, is the source of approximately 60% of coffee products worldwide, and its cultivated accessions have undergone several population bottlenecks. We present chromosome-level assemblies of a di-haploid C. arabica accession and modern representatives of its diploid progenitors, C. eugenioides and C. canephora. The three species exhibit largely conserved genome structures between diploid parents and descendant subgenomes, with no obvious global subgenome dominance. We find evidence for a founding polyploidy event 350,000-610,000 years ago, followed by several pre-domestication bottlenecks, resulting in narrow genetic variation. A split between wild accessions and cultivar progenitors occurred ~30.5 thousand years ago, followed by a period of migration between the two populations. Analysis of modern varieties, including lines historically introgressed with C. canephora, highlights their breeding histories and loci that may contribute to pathogen resistance, laying the groundwork for future genomics-based breeding of C. arabica.


Subject(s)
Coffea , Coffea/genetics , Coffee , Genome, Plant/genetics , Metagenomics , Plant Breeding
2.
BMC Genomics ; 17(Suppl 10): 826, 2016 11 11.
Article in English | MEDLINE | ID: mdl-28185554

ABSTRACT

BACKGROUND: The diversity in eukaryotic life reflects a diversity in regulatory pathways. Nocedal and Johnson argue that the rewiring of gene regulatory networks is a major force for the diversity of life, that changes in regulation can create new species. RESULTS: We have created a method (based on our new "ping-pong algorithm) for detecting more complicated rewirings, where several transcription factors can substitute for one or more transcription factors in the regulation of a family of co-regulated genes. An example is illustrative. A rewiring has been reported by Hogues et al. that RAP1 in Saccharomyces cerevisiae substitutes for TBF1/CBF1 in Candida albicans for ribosomal RP genes. There one transcription factor substitutes for another on some collection of genes. Such a substitution is referred to as a "rewiring". We agree with this finding of rewiring as far as it goes but the situation is more complicated. Many transcription factors can regulate a gene and our algorithm finds that in this example a "team" (or collection) of three transcription factors including RAP1 substitutes for TBF1 for 19 genes. The switch occurs for a branch of the phylogenetic tree containing 10 species (including Saccharomyces cerevisiae), while the remaining 13 species (Candida albicans) are regulated by TBF1. CONCLUSIONS: To gain insight into more general evolutionary mechanisms, we have created a mathematical algorithm that finds such general switching events and we prove that it converges. Of course any such computational discovery should be validated in the biological tests. For each branch of the phylogenetic tree and each gene module, our algorithm finds a sub-group of co-regulated genes and a team of transcription factors that substitutes for another team of transcription factors. In most cases the signal will be small but in some cases we find a strong signal of switching. We report our findings for 23 Ascomycota fungi species.


Subject(s)
Algorithms , Evolution, Molecular , Saccharomyces cerevisiae Proteins/genetics , Saccharomyces cerevisiae/genetics , Transcription Factors/genetics , Candida albicans/classification , Candida albicans/genetics , Candida albicans/metabolism , Gene Regulatory Networks , Phylogeny , Saccharomyces cerevisiae/classification , Saccharomyces cerevisiae/metabolism , Saccharomyces cerevisiae Proteins/metabolism , Shelterin Complex , Telomere-Binding Proteins/genetics , Transcription Factors/metabolism , Transcription, Genetic
3.
BMC Genomics ; 17(Suppl 10): 782, 2016 11 11.
Article in English | MEDLINE | ID: mdl-28185558

ABSTRACT

BACKGROUND: Of the approximately two hundred sequenced plant genomes, how many and which ones were sequenced motivated by strictly or largely scientific considerations, and how many by chiefly economic, in a wide sense, incentives? And how large a role does publication opportunity play? RESULTS: In an integration of multiple disparate databases and other sources of information, we collect and analyze data on the size (number of species) in the plant orders and families containing sequenced genomes, on the trade value of these species, and of all the same-family or same-order species, and on the publication priority within the family and order. These data are subjected to multiple regression and other statistical analyses. We find that despite the initial importance of model organisms, it is clearly economic considerations that outweigh others in the choice of genome to be sequenced. CONCLUSIONS: This has important implications for generalizations about plant genomes, since human choices of plants to harvest (and cultivate) will have incurred many biases with respect to phenotypic characteristics and hence of genomic properties, and recent genomic evolution will also have been affected by human agricultural practices.


Subject(s)
Genome, Plant , Genomics/economics , Plants/genetics , Agriculture/economics , Databases, Genetic , High-Throughput Nucleotide Sequencing , Plants/classification , Regression Analysis , Sequence Analysis, DNA
4.
BMC Genomics ; 16 Suppl 10: S8, 2015.
Article in English | MEDLINE | ID: mdl-26449933

ABSTRACT

BACKGROUND: Following whole genome duplication (WGD), there is a compact distribution of gene similarities within the genome reflecting duplicate pairs of all the genes in the genome. With time, the distribution broadens and loses volume due to variable decay of duplicate gene similarity and to the process of duplicate gene loss. If there are two WGD, the older one becomes so reduced and broad that it merges with the tail of the distributions resulting from more recent events, and it becomes difficult to distinguish them. The goal of this paper is to advance statistical methods of identifying, or at least counting, the WGD events in the lineage of a given genome. METHODS: For a set of 15 angiosperm genomes, we analyze all 15 × 14 = 210 ordered pairs of target genome versus reference genome, using SynMap to find syntenic blocks. We consider all sets of B ≥ 2 syntenic blocks in the target genome that overlap in the reference genome as evidence of WGD activity in the target, whether it be one event or several. We hypothesize that in fitting an exponential function to the tail of the empirical distribution f (B) of block multiplicities, the size of the exponent will reflect the amount of WGD in the history of the target genome. RESULTS: By amalgamating the results from all reference genomes, a range of values of SynMap parameters, and alternative cutoff points for the tail, we find a clear pattern whereby multiple-WGD core eudicots have the smallest (negative) exponents, followed by core eudicots with only the single "γ" triplication in their history, followed by a non-core eudicot with a single WGD, followed by the monocots, with a basal angiosperm, the WGD-free Amborella having the largest exponent. CONCLUSION: The hypothesis that the exponent of the fit to the tail of the multiplicity distribution is a signature of the amount of WGD is verified, but there is also a clear complicating factor in the monocot clade, where a history of multiple WGD is not reflected in a small exponent.


Subject(s)
Evolution, Molecular , Genome, Plant , Phylogeny , Polyploidy , Gene Duplication , Magnoliopsida/genetics
5.
Int J Clin Exp Med ; 7(4): 1140-4, 2014.
Article in English | MEDLINE | ID: mdl-24955196

ABSTRACT

Sjögren's Syndrome (SS) is an autoimmune pathology of varying prevalence. Its involvement in exocrine glands requires that greater attention be paid to patients' oral health. A cross-sectional study was designed to assess the oral health of subjects with SS in constant medical follow-ups. Variables such as the presence of periodontal infections, decay and alterations in the oral mucosa were analyzed, and the individual's salivary flow was measured. The data were analyzed descriptively and with the chi-squared test, considering p<0.05 as statistically significant. 35 subjects of both sexes were studied, aged between 25 and 82 years, with an age average of 53.9 years; they presented on average 7.9 years after the initial diagnosis. The subjects reported a dental check-up every 6 months in only 9% of cases, whereas the rest had one every 1 or 2 years. All the subjects recounted presenting with dry mouth and associated significantly the ingestion of fluids and teeth brushing to improve the sensation of dryness. The salivary flow was objectively seen to be compromised, showing a significant reduction in those with more time since diagnosis of the disease; more than 90% of subjects exhibited periodontal inflammation and a high level of caries. The mucosa presented a low level of pathology. In conclusion, education in oral health is imperative for subjects with this pathology and more frequent check-ups may be useful in decreasing the levels of oral pathology.

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