Search bioRxiv⌕ Search

Biology subjects

Cardona, D. E. M.

Publications and source records attributed to Cardona, D. E. M..

3 recordsLinked to original sources

The complete chloroplast genome of Garcinia binucao (Blanco) Choisy, an indigenous fruit from the Philippines

Garcinia binucao (Blanco) Choisy is an indigenous species endemic to the Philippines. Its fruit is traditionally used as a souring agent in local cuisine and has been reported to possess nutritional and medicinal properties. Despite its ethnobotanical significance and promising bioactive properties, the species remains underutilized. To date, no genomic resources have been published for G. binucao, limiting its application in food systems, genetic studies, and conservation programs. This study reports the first complete chloroplast genome of G. binucao from an accession conserved at the Institute of Plant Breeding, University of the Philippines Los Banos. The assembled plastome is circular with a length of 156,570 base pairs (bp). It displays the typical quadripartite structure of most angiosperms, consisting of a large single-copy (LSC) region (85,357 bp), a small single-copy (SSC) region (17,129 bp), and a pair of inverted repeats (IR), each 27,042 bp in size. A total of 128 genes were annotated, including 83 protein-coding genes, 37 transfer RNAs (tRNAs), and eight ribosomal RNAs (rRNAs), consistent with the majority of Garcinia species. Of the protein-coding genes, 45 are involved in photosynthesis, 28 genes for self-replication, five genes with conserved open reading frames, and five genes are associated with other functions. The GC content was 36.2%. Leucine (10.6%) was the most abundant amino acid, with a codon usage bias toward UUA. Additionally, 98 simple sequence repeats (SSRs) were detected, 88.78% consisting of A/T motifs. Phylogenomic analysis based on assembled plastome and publicly available cpDNA sequences of 17 other species in the order Malpighiales revealed that G. indica is the closest relative of G. binucao. These findings provide a framework for future research on the species, including its conservation and potential use as a genetic resource.

genomics↗

CHLOROPLAST GENOME AND PHYLOGENETIC ANALYSIS OF KATMON (Dillenia philippinensis Rolfe), A PHILIPPINE ENDEMIC FRUIT

BackgroundKatmon (Dillenia philippinensis Rolfe) is a Philippine endemic fruit species with a relatively well-studied biochemical profile but poor genomic characterization. Studies involving the chloroplast genome can provide valuable insights into its evolution and support conservation efforts. MethodsThe complete chloroplast genome of D. philippinensis was sequenced using Illumina NovaSeqX. Reads were quality-checked, assembled with GetOrganelle, and annotated using CPGAVAS2 and GeSeq. Simple sequence repeats, codon usage, and inverted repeat boundaries were analyzed. Phylogenetic relationships were inferred using concatenated rbcL and matK sequences via maximum likelihood analysis. ResultThe chloroplast genome was 161,591 bp with a GC content of 36.3%. It exhibited the typical quadripartite structure, consisting of a large single-copy region (89,411 bp), a small single-copy region (19,208 bp), and a pair of inverted repeats (26,486 bp each). A total of 113 unique genes were identified, comprising 79 protein-coding, 30 tRNA, and four rRNA genes. Fifty-four SSRs, primarily A/T mononucleotide repeats, and 53,863 codons were observed. Phylogenetic analysis placed D. philippinensis as the closest relative to D. suffroticosa and the most distantly related to D. ovata. The complete chloroplast genome of D. philippinensis provides a valuable resource for phylogenetic studies, germplasm characterization, and future breeding and conservation programs.

plant biology↗

Nutritional and genetic variations within foxtail millet (Setaria italica) landraces collected from indigenous communities across the Philippines

Unknown to many, the Philippines is host to a few remaining accessions of the underutilized and understudied cereal foxtail millet (Setaria italica (L.) P. Beauv.). We collected together accessions from different eco-geographical locations within the Philippines, along with a few accessions from Lanyu, Taiwan, to undertake a study of the nutritional value and genetic diversity within accessions of foxtail millet grown in the Philippines. All accessions were field grown in 2022, dry season (DS) at the Institute of Plant Breeding (IPB) Experiment Station, Los Banos, Laguna, Philippines. The accessions were tested for micronutrients, including Zn and Fe, nitrogen as a proxy for protein, {beta}-carotene and a number of phenolic compounds with known nutritional potential. Of the 20 accessions tested, the accessions Bayaras and GB61438 had the highest level of Zn (107.1 mg/kg) and Fe (70.52 mg/kg), respectively, higher than levels found in traditional rice varieties. For {beta}-carotene the highest concentration was found in the accession Balles ([~]10{micro}g/g). Twelve phenolic compounds were detected, with catechin, syringic acid, ferulic acid and kaempferol having the highest concentrations and greatest variation between accessions. To assess the genetic diversity of these local foxtail millet accessions, we sequenced a core set of eight accessions to a depth of at least 25-fold. Analysis of the population structure, using genome-wide, high-quality SNPs, showed modest diversity among the accession, with two unadmixed groups. The accessions are monophyletic relative to their earliest common ancestor, with the very light brown accessions emerging earlier than the light brown and reddish-brown varieties. Analysis of Zinc/Iron permease (ZIP) transporters within the foxtail millet reference sequence, var. Yugu1 identified 17 putative ZIP transporters. Variant calling identified SNPs primarily within 3 and 5 regions, and introns, indicating variation between foxtail millet accessions within regulatory gene regions rather than in structural proteins. The local foxtail millet accessions found across the Philippines, therefore, represent a potential alternative source of nutrition that would help to address the problems of the double-burden of malnutrition found in the Philippines.

plant biology↗