Related Experiment Video
Updated: Jan 19, 2026
Export of Mitochondrial and Chloroplast Genes
Ancient Mitochondrial Gene Transfer between Fungi and the Orchids
Brandon T Sinn1,2, Craig F Barrett1
1Department of Biology, West Virginia University, Morgantown, WV.
Abstract:
The mitochondrial genomes (mitogenomes) of plants are known to incorporate and accumulate DNA from intra- and extracellular donors. Despite the intimate relationships formed between flowing plants (angiosperms) and fungi, lengthy fungal-like sequence has not been identified in angiosperm mitogenomes to date. Here, we present multiple lines of evidence documenting horizontal gene transfer (HGT) between the mitogenomes of fungi and the ancestors of the orchids, plants that are obligate parasites of fungi during their early development. We show that the ancestor of the orchids acquired an ∼270-bp fungal mitogenomic region containing three transfer RNA genes. We propose that the short HGT was later replaced by a second HGT event transferring >8 kb and 14 genes from a fungal mitogenome to that of the ancestor of the largest orchid subfamily, Epidendroideae. Our results represent the first evidence of genomic-scale HGT between fungal and angiosperm mitogenomes and demonstrate that the length intergenic spacer regions of angiosperm mitogenomes can effectively fossilize the genomic remains of ancient, nonplant organisms.
Related Concept Videos
Export of Mitochondrial and Chloroplast Genes
Horizontal Gene Transfer
Filamentous Fungi
Demonstrating Author: Bradley Schmitz
Fungi are heterotrophic eukaryotic organisms, and with the exception of yeasts, are aerobic. They are abundant in surface soils and are important for their role in nutrient cycling and the decomposition of organic matter and organic contaminants. White rot fungi (phanerochaete chryosporium) for example, (Figure 1) are known to degrade aromatics.
07:19Asymbiotic Germination and Leaf Explant-Based Regeneration of the Endangered Medicinal Orchid Hemipilia cucullata from Mature Seeds
02:13Centrifugation-Assisted Mitochondrial Transfer to Glioblastoma Stem Cells
Animal Mitochondrial Genetics
