Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 30
Filter
Add more filters










Publication year range
1.
PeerJ ; 12: e17560, 2024.
Article in English | MEDLINE | ID: mdl-38912045

ABSTRACT

Determining the genetic diversity and source rookeries of sea turtles collected from feeding grounds can facilitate effective conservation initiatives. To ascertain the genetic composition and source rookery, we examined a partial sequence of the mitochondrial control region (CR, 796 bp) of 40 green turtles (Chelonia mydas) collected from feeding grounds around the Korean Peninsula between 2014 and 2022. We conducted genetic and mixed-stock analyses (MSA) and identified 10 CR haplotypes previously reported in Japanese populations. In the haplotype network, six, three, and one haplotype(s) grouped with the Japan, Indo-Pacific, and Central South Pacific clades, respectively. The primary rookeries of the green turtles were two distantly remote sites, Ogasawara (OGA) and Central Ryukyu Island (CRI), approximately 1,300 km apart from each other. Comparing three parameters (season, maturity, and specific feeding ground), we noted that OGA was mainly associated with summer and the Jeju Sea, whereas CRI was with fall and the East (Japan) Sea ground. The maturity did not show a distinct pattern. Our results indicate that green turtles in the feeding grounds around the Korean Peninsula originate mainly from the Japan MU and have genetic origins in the Japan, Indo-Pacific, and Central South Pacific clades. Our results provide crucial insights into rookeries and MUs, which are the focus of conservation efforts of the Republic of Korea and potential parties to collaborate for green turtle conservation.


Subject(s)
Haplotypes , Turtles , Animals , Turtles/genetics , Republic of Korea , Genetic Variation/genetics , DNA, Mitochondrial/genetics , Animal Migration , Feeding Behavior , Seasons , Conservation of Natural Resources
2.
Biosens Bioelectron ; 260: 116446, 2024 Sep 15.
Article in English | MEDLINE | ID: mdl-38820722

ABSTRACT

Understanding brain function is essential for advancing our comprehension of human cognition, behavior, and neurological disorders. Magnetic resonance imaging (MRI) stands out as a powerful tool for exploring brain function, providing detailed insights into its structure and physiology. Combining MRI technology with electrophysiological recording system can enhance the comprehension of brain functionality through synergistic effects. However, the integration of neural implants with MRI technology presents challenges because of its strong electromagnetic (EM) energy during MRI scans. Therefore, MRI-compatible neural implants should facilitate detailed investigation of neural activities and brain functions in real-time in high resolution, without compromising patient safety and imaging quality. Here, we introduce the fully MRI-compatible monolayer open-mesh pristine PEDOT:PSS neural interface. This approach addresses the challenges encountered while using traditional metal-based electrodes in the MRI environment such as induced heat or imaging artifacts. PEDOT:PSS has a diamagnetic property with low electrical conductivity and negative magnetic susceptibility similar to human tissues. Furthermore, by adopting the optimized open-mesh structure, the induced currents generated by EM energy are significantly diminished, leading to optimized MRI compatibility. Through simulations and experiments, our PEDOT:PSS-based open-mesh electrodes showed improved performance in reducing heat generation and eliminating imaging artifacts in an MRI environment. The electrophysiological recording capability was also validated by measuring the local field potential (LFP) from the somatosensory cortex with an in vivo experiment. The development of neural implants with maximized MRI compatibility indicates the possibility of potential tools for future neural diagnostics.


Subject(s)
Brain , Magnetic Resonance Imaging , Polymers , Magnetic Resonance Imaging/methods , Brain/diagnostic imaging , Brain/physiology , Humans , Animals , Polymers/chemistry , Biosensing Techniques/methods , Polystyrenes/chemistry , Electrodes, Implanted , Bridged Bicyclo Compounds, Heterocyclic/chemistry , Thiophenes/chemistry , Equipment Design , Electric Conductivity
3.
Viruses ; 16(5)2024 04 25.
Article in English | MEDLINE | ID: mdl-38793557

ABSTRACT

Frog virus 3 (FV3) in the genus Ranavirus of the family Iridoviridae causes mass mortality in both anurans and urodeles worldwide; however, the phylogenetic origin of FV3-like ranaviruses is not well established. In Asia, three FV3-like ranaviruses have been reported in farmed populations of amphibians and reptiles. Here, we report the first case of endemic FV3-like ranavirus infections in the Korean clawed salamander Onychodactylus koreanus, caught in wild mountain streams in the Republic of Korea (ROK), through whole-genome sequencing and phylogenetic analysis. Two isolated FV3-like ranaviruses (Onychodactylus koreanus ranavirus, OKRV1 and 2) showed high similarity with the Rana grylio virus (RGV, 91.5%) and Rana nigromaculata ranavirus (RNRV, 92.2%) but relatively low similarity with the soft-shelled turtle iridovirus (STIV, 84.2%) in open reading frame (ORF) comparisons. OKRV1 and 2 formed a monophyletic clade with previously known Asian FV3-like ranaviruses, a sister group of the New World FV3-like ranavirus clade. Our results suggest that OKRV1 and 2 are FV3-like ranaviruses endemic to the ROK, and RGV and RNRV might also be endemic strains in China, unlike previous speculation. Our data have great implications for the study of the phylogeny and spreading routes of FV3-like ranaviruses and suggest the need for additional detection and analysis of FV3-like ranaviruses in wild populations in Asian countries.


Subject(s)
DNA Virus Infections , Genome, Viral , Phylogeny , Ranavirus , Urodela , Animals , Ranavirus/genetics , Ranavirus/isolation & purification , Ranavirus/classification , Urodela/virology , Republic of Korea/epidemiology , DNA Virus Infections/veterinary , DNA Virus Infections/virology , DNA Virus Infections/epidemiology , Open Reading Frames , Whole Genome Sequencing
4.
Nat Commun ; 15(1): 10, 2024 01 02.
Article in English | MEDLINE | ID: mdl-38169465

ABSTRACT

Tactile function is essential for human life as it enables us to recognize texture and respond to external stimuli, including potential threats with sharp objects that may result in punctures or lacerations. Severe skin damage caused by severe burns, skin cancer, chemical accidents, and industrial accidents damage the structure of the skin tissue as well as the nerve system, resulting in permanent tactile sensory dysfunction, which significantly impacts an individual's daily life. Here, we introduce a fully-implantable wireless powered tactile sensory system embedded artificial skin (WTSA), with stable operation, to restore permanently damaged tactile function and promote wound healing for regenerating severely damaged skin. The fabricated WTSA facilitates (i) replacement of severely damaged tactile sensory with broad biocompatibility, (ii) promoting of skin wound healing and regeneration through collagen and fibrin-based artificial skin (CFAS), and (iii) minimization of foreign body reaction via hydrogel coating on neural interface electrodes. Furthermore, the WTSA shows a stable operation as a sensory system as evidenced by the quantitative analysis of leg movement angle and electromyogram (EMG) signals in response to varying intensities of applied pressures.


Subject(s)
Skin, Artificial , Humans , Bionics , Touch/physiology , Skin , Wound Healing , Sense Organs
5.
Sci Adv ; 9(39): eadi8918, 2023 09 29.
Article in English | MEDLINE | ID: mdl-37756405

ABSTRACT

Numerous wireless optogenetic systems have been reported for practical tether-free optogenetics in freely moving animals. However, most devices rely on battery-powered or coil-powered systems requiring periodic battery replacement or bulky, high-cost charging equipment with delicate antenna design. This leads to spatiotemporal constraints, such as limited experimental duration due to battery life or animals' restricted movement within specific areas to maintain wireless power transmission. In this study, we present a wireless, solar-powered, flexible optoelectronic device for neuromodulation of the complete freely behaving subject. This device provides chronic operation without battery replacement or other external settings including impedance matching technique and radio frequency generators. Our device uses high-efficiency, thin InGaP/GaAs tandem flexible photovoltaics to harvest energy from various light sources, which powers Bluetooth system to facilitate long-term, on-demand use. Observation of sustained locomotion behaviors for a month in mice via secondary motor cortex area stimulation demonstrates the notable capabilities of our device, highlighting its potential for space-free neuromodulating applications.


Subject(s)
Optogenetics , Wireless Technology , Mice , Animals , Optogenetics/methods , Movement , Electric Power Supplies
6.
Sci Rep ; 13(1): 12025, 2023 07 25.
Article in English | MEDLINE | ID: mdl-37491466

ABSTRACT

Conservation assessments are essential for preserving biodiversity. However, many reptile species have not been evaluated owing to data deficiencies. The Slender racer (Orientocoluber spinalis) is threatened in four out of six inhabiting countries. However, despite its apparent rarity and data deficiency, the International Union for Conservation of Nature (IUCN) has classified it as a Least Concern. In this study, we combined field surveys, habitat analysis, and ecological niche models (ENMs) to identify the critical habitat characteristics of O. spinalis, evaluate its distribution status in the Republic of Korea, and register it as a nationally endangered species. Across the country, we found a few small populations on the mainland but large populations on the islands. Orientocoluber spinalis is mainly found in low-altitude ecotone habitats between grasslands and forests. Based on previous genetic and climatic studies, we propose designating it as an endangered species to conserve this species in protected areas such as national parks, and its non-isolated mainland populations can be preserved as source populations.


Subject(s)
Colubridae , Endangered Species , Animals , Conservation of Natural Resources , Ecosystem , Biodiversity , Republic of Korea
7.
Ecol Evol ; 12(8): e9169, 2022 Aug.
Article in English | MEDLINE | ID: mdl-35919392

ABSTRACT

Species distribution models (SDMs) across past, present, and future timelines provide insights into the current distribution of these species and their reaction to climate change. Specifically, if a species is threatened or not well-known, the information may be critical to understand that species. In this study, we computed SDMs for Orientocoluber spinalis, a monotypic snake genus found in central and northeast Asia, across the past (last interglacial, last glacial maximum, and mid-Holocene), present, and future (2070s). The goal of the study was to understand the shifts in distribution across time, and the climatic factors primarily affecting the distribution of the species. We found the suitable habitat of O. spinalis to be persistently located in cold-dry winter and hot summer climatic areas where annual mean temperature, isothermality, and annual mean precipitation were important for suitable habitat conditions. Since the last glacial maximum, the suitable habitat of the species has consistently shifted northward. Despite the increase in suitable habitat, the rapid alterations in weather regimes because of climate change in the near future are likely to greatly threaten the southern populations of O. spinalis, especially in South Korea and China. To cope with such potential future threats, understanding the ecological requirements of the species and developing conservation plans are urgently needed.

8.
Animals (Basel) ; 12(16)2022 Aug 22.
Article in English | MEDLINE | ID: mdl-36009748

ABSTRACT

With most sea turtle populations declining, activities to conserve their habitat and nesting grounds and restore their populations are being implemented worldwide. To preserve the Northwestern Pacific populations, the National Marine Biodiversity Institute of Korea has been releasing artificially propagated sea turtles, but whether these individuals join the wild population remains unknown. The present study aimed to determine the movement patterns of artificially propagated juvenile loggerhead (Caretta caretta) and green (Chelonia mydas) turtles fitted with satellite transmitters on their carapaces and released in the waters of Jeju or Yeosu, Republic of Korea, between August 2018 and April 2022. Loggerheads traveled northward to the East Sea, whereas green turtles moved west or southwest. Two 36-month-old and two 48-month-old loggerheads moved toward their potential nursery grounds and toward their feeding grounds, respectively. Three green turtles with a curved carapace length (CCL) of <40 cm moved toward their nursery or feeding grounds, while three individuals (CCL > 45 cm) moved toward their inshore foraging areas. The travel paths were closely related to the direction of local sea currents. Our results implied that releasing artificially propagated sea turtles, considering their age and CCL, can positively contribute to the conservation of Northwestern Pacific populations.

9.
Viruses ; 14(5)2022 05 17.
Article in English | MEDLINE | ID: mdl-35632814

ABSTRACT

To cope with amphibian die-offs caused by ranavirus, it is important to know the underlying ranavirus prevalence in a region. We studied the ranavirus prevalence in tadpoles of two native and one introduced anuran species inhabiting agricultural and surrounding areas at 49 locations across eight provinces of South Korea by applying qPCR. The local ranavirus prevalence and the individual infection rates at infected locations were 32.6% and 16.1%, respectively, for Dryophytes japonicus (Japanese tree frog); 25.6% and 26.1% for Pelophylax nigromaculatus (Black-spotted pond frog); and 30.5% and 50.0% for Lithobates catesbeianus (American bullfrog). The individual infection rate of L. catesbeianus was significantly greater than that of D. japonicus. The individual infection rate of P. nigromaculatus was related to the site-specific precipitation and air temperature. The individual infection rate gradually increased from Gosner development stage 39, and intermittent infection was confirmed in the early and middle developmental stages. Our results show that ranavirus is widespread among wild amphibians living in agricultural areas of South Korea, and mass die-offs by ranavirus could occur at any time.


Subject(s)
Anura , DNA Virus Infections , Ranavirus , Animals , Anura/virology , DNA Virus Infections/epidemiology , DNA Virus Infections/veterinary , Prevalence , Rana catesbeiana/virology , Ranavirus/isolation & purification , Ranidae/virology , Republic of Korea/epidemiology
10.
Zookeys ; 1129: 21-35, 2022.
Article in English | MEDLINE | ID: mdl-36761844

ABSTRACT

Studies using complete mitochondrial genome data have the potential to increase our understanding on gene organisations and evolutionary species relationships. In this study, we compared complete mitochondrial genomes between all 22 squamate species listed in South Korea. In addition, we constructed Maximum Parsimony (MP), Maximum Likelihood (ML) and Bayesian Inference (BI) phylogenetic trees using 13 mitochondrial protein-coding genes. The mitochondrial genes for all six species in the suborder Sauria followed the same organisation as the sequenced Testudines (turtle) outgroup. In contrast, 16 snake species in the suborder Serpentes contained some gene organisational variations. For example, all snake species contained a second control region (CR2), while three species in the family Viperidae had a translocated tRNA-Pro gene region. In addition, the snake species, Elapheschrenckii, carried a tRNA-Pro pseudogene. We were also able to identify a translocation of a tRNA-Asn gene within the five tRNA (WANCY gene region) gene clusters for two true sea snake species in the subfamily Hydrophiinae. Our BI phylogenetic tree was also well fitted against currently known Korean squamate phylogenetic trees, where each family and genus unit forms monophyletic clades and the suborder Sauria is paraphyletic to the suborder Serpentes. Our results may form the basis for future northeast Asian squamate phylogenetic studies.

11.
Mitochondrial DNA A DNA Mapp Seq Anal ; 31(3): 120-130, 2020 04.
Article in English | MEDLINE | ID: mdl-32212876

ABSTRACT

To understand the genetic diversity and dispersal history of Schlegel's Japanese gecko (Gekko japonicus), we performed genetic analyses and paleo-species distributional modelling. For the genetic analysis, we analyzed mitochondrial DNA (mtDNA) (cytochrome b [Cytb] and NADH dehydrogenase 2 [ND2]) and seven microsatellite loci of 353 individuals from 11 populations (2 east coast China, 4 west and central coast Japan and 5 Korea). For the paleo-species distribution modelling, we used 432 occurrence data points (125 China, 291 Japan and 16 Korea) over the Pleistocene and Holocene. China is inferred to be the source population, which had higher genetic diversity (mtDNA) and more private alleles (mtDNA) compared to Japanese and Korean populations. Differences between the three counties were very small in the mtDNA haplotype network despite some genetic structure among the three countries. Microsatellite analysis inferred that genetic exchange has actively occurred among the Chinese, Japanese and Korean populations. Suitable habitats in Japan should have been plentiful by the mid-Holocene, but have only recently become available in Korea. These results suggest that dispersal of G. japonicus occurred after the Holocene warming from the east coast of China to the west and central coasts of Japan and Korea, and gene flow is actively occurring among the three countries.


Subject(s)
Cytochromes b/genetics , Lizards/genetics , NADH Dehydrogenase/genetics , Alleles , Animals , China , DNA, Mitochondrial/genetics , Ecosystem , Genes, Mitochondrial/genetics , Genetic Variation/genetics , Genetics, Population/methods , Genome, Mitochondrial/genetics , Haplotypes/genetics , Japan , Microsatellite Repeats/genetics , Mitochondria/genetics , Phylogeny , Phylogeography/methods , Republic of Korea , Sequence Analysis, DNA/methods
12.
Mitochondrial DNA B Resour ; 5(1): 891-892, 2020 Jan 27.
Article in English | MEDLINE | ID: mdl-33426277

ABSTRACT

In this study, we provide the first report of the complete mitochondrial genomic sequencing of a yellow-bellied sea snake (Hydrophis platurus) that has the broadest distribution range of all Squamata species. The mitogenome length was 18,101 bp and consisted of 13 protein-coding genes, 2 rRNA genes, 22 tRNA genes, and 3 non-coding regions. The sequence presented could be very useful for further phylogenetic and evolutionary studies.

13.
Mitochondrial DNA B Resour ; 4(2): 2658-2659, 2019 Jul 22.
Article in English | MEDLINE | ID: mdl-33365670

ABSTRACT

In this study, we provide the first report of the complete mitochondrial genome of Emydocephalus ijimae. The mitogenome length is 18,259 bp and includes 13 protein-coding genes, two rRNA genes, 22 tRNA genes, and three non-coding regions. The sequence presented could be very useful for further phylogenetic and evolutionary study.

14.
Mitochondrial DNA A DNA Mapp Seq Anal ; 29(5): 772-777, 2018 07.
Article in English | MEDLINE | ID: mdl-28903620

ABSTRACT

To investigate the phylogenetic relationships of the genus Laticauda to related higher taxa, we compared the sequences of four mitochondrial genes (12S rRNA, 16S rRNA, ND4, Cytb) from three Laticauda species (L. colubrina, L. laticaudata, and L. semifasciata) with those of 55 Asian and Australo-Melanesian elapid species. We also characterized the complete mitogenomes of the three Laticauda species and compared the sequences of 13 mitochondrial genes from Laticauda species with five terrestrial elapid and one viperid species to estimate phylogenetic relationships and divergence times. Our results showed that the genus Laticauda is paraphyletic to terrestrial elapids and diverged from the Asian elapids approximately 16.23 Mya. The mitogenomes of the three Laticauda species commonly encoded 13 proteins, 22 tRNAs, 12S and 16S rRNAs and two control regions and ranged from 17,170 and 17,450 bp in size. The L. colubrina mitogenome was more similar to that of L. laticaudata than that of L. semifasciata. The divergence time among the three Laticauda clades was estimated at 8-10 Mya, and a close phylogenetic relationship between L. colubrina and L. laticaudata was found. Our results contribute to our understanding of the evolutionary history of sea kraits.


Subject(s)
Elapidae/genetics , Genome, Mitochondrial/genetics , Laticauda/genetics , Animals , Biological Evolution , DNA , DNA Barcoding, Taxonomic/methods , DNA, Mitochondrial/genetics , Genes, Mitochondrial/genetics , Genetic Speciation , Mitochondria/genetics , Phylogeny , RNA, Ribosomal, 16S , Snakes/genetics
15.
PLoS One ; 12(6): e0179871, 2017.
Article in English | MEDLINE | ID: mdl-28644894

ABSTRACT

Marine reptiles are declining globally, and recent climate change may be a contributing factor. The study of sea snakes collected beyond their typical distribution range provides valuable insight on how climate change affects marine reptile populations. Recently, we collected 12 Laticauda semifasciata (11 females, 1 male) from the waters around southern South Korea-an area located outside its typical distribution range (Japan, China including Taiwan, Philippines and Indonesia). We investigated the genetic origin of Korean specimens by analyzing mitochondrial cytochrome b gene (Cytb) sequences. Six individuals shared haplotypes with a group found in Taiwan-southern Ryukyu Islands, while the remaining six individuals shared haplotypes with a group encompassing the entire Ryukyu Archipelago. These results suggest L. semifasciata moved into Korean waters from the Taiwan-Ryukyu region via the Taiwan Warm Current and/or the Kuroshio Current, with extended survival facilitated by ocean warming. We highlight several contributing factors that increase the chances that L. semifasciata establishes new northern populations beyond the original distribution range.


Subject(s)
Bungarus , Ecosystem , Oceans and Seas , Animal Distribution , Animals , Bungarus/genetics , Climate Change , Cytochromes b/genetics , Female , Haplotypes , Japan , Male , Republic of Korea , Taiwan
16.
Mitochondrial DNA A DNA Mapp Seq Anal ; 27(5): 3684-6, 2016 09.
Article in English | MEDLINE | ID: mdl-26366825

ABSTRACT

We have determined the complete mitochondrial genome of Gekko japonicus, whose status as an endemic or invasive species is currently under debate in Korea. The total genome size is 16 544 bp and consists of 13 protein-coding genes, 2 rRNA (12S and 16S RNA) genes, 22 tRNAs and 2 non-coding regions. The A + T content of the genome is 55.8% (A, 31.2%; C, 29.4%; T, 24.6%; G, 14.9%). Phylogenetic analysis shows that G. japonicus has a close phylogenetic relationship with both G. swinhonis and G. chinensis. Our result will facilitate further genetic studies of this species to ascertain its species status.


Subject(s)
Genome, Mitochondrial , Lizards/genetics , Animals , Base Composition , Codon, Initiator , Codon, Terminator , Electron Transport Complex IV/genetics , Evolution, Molecular , Female , Mitochondrial Proteins/genetics , NADH Dehydrogenase/genetics , Phylogeny , RNA, Ribosomal/genetics , RNA, Ribosomal, 16S/genetics , RNA, Transfer/genetics , Whole Genome Sequencing
17.
Mitochondrial DNA B Resour ; 1(1): 237-238, 2016 Mar 28.
Article in English | MEDLINE | ID: mdl-33473463

ABSTRACT

Here, we report the complete mitochondrial genomes of the skink species Scincella vandenburghi and S. huanrenensis. The mitogenomes were determined to be 17103 bp for S. vandenburghi and 17212 bp for S. huanrenensis. The mitogenomes consist of 13 protein-coding genes, two rRNA genes, 22 tRNA genes and two non-coding regions. We then used the mitogenome data to construct a phylogenetic tree for these two species and an additional 16 species within the suborder Lacertilia.

18.
Plant Pathol J ; 30(2): 136-50, 2014 Jun.
Article in English | MEDLINE | ID: mdl-25288996

ABSTRACT

Although multiple transcription factors (TFs) have been characterized via mutagenesis to understand their roles in controlling pathogenicity and infection-related development in Magnaporthe oryzae, the causal agent of rice blast, if and how forkhead-box (FOX) TFs contribute to these processes remain to be characterized. Four putative FOX TF genes were identified in the genome of M. oryzae, and phylogenetic analysis suggested that two of them (MoFKH1 and MoHCM1) correspond to Ascomycota-specific members of the FOX TF family while the others (MoFOX1 and MoFOX2) are Pezizomycotina-specific members. Deletion of MoFKH1 (ΔMofkh1) resulted in reduced mycelial growth and conidial germination, abnormal septation and stress response, and reduced virulence. Similarly, ΔMohcm1 exhibited reduced mycelial growth and conidial germination. Conidia of ΔMofkh1 and ΔMohcm1 were more sensitive to one or both of the cell cycle inhibitors hydroxyurea and benomyl, suggesting their role in cell cycle control. On the other hand, loss of MoFOX1 (ΔMofox1) did not show any noticeable changes in development, pathogenicity, and stress response. Deletion of MoFOX2 was not successful even after repeated attempts. Taken together, these results suggested that MoFKH1 and Mo-HCM1 are important in fungal development and that MoFKH1 is further implicated in pathogenicity and stress response in M. oryzae.

19.
J Microbiol Methods ; 105: 39-41, 2014 Oct.
Article in English | MEDLINE | ID: mdl-25019520

ABSTRACT

Using two-step-PCR screening which consists of direct and priority-based PCR and inverse PCR, fungal gene-deletion mutants were selected quickly and accurately. It omits genomic DNA extraction and Southern blotting steps and prevents misinterpretations caused by PCR failure. It is anticipated to facilitate large-scale reverse genetic studies in fungi.


Subject(s)
Fungi/genetics , Genes, Fungal , Genetic Testing/methods , Genetics, Microbial/methods , Molecular Biology/methods , Polymerase Chain Reaction/methods , Sequence Deletion , Reverse Genetics/methods
20.
Eukaryot Cell ; 12(11): 1547-53, 2013 Nov.
Article in English | MEDLINE | ID: mdl-24058171

ABSTRACT

Rapidly increasing fungal genome sequences call for efficient ways of generating mutants to translate quickly gene sequences into their functions. A reverse genetic strategy via targeted gene replacement (TGR) has been inefficient for many filamentous fungi due to dominant production of undesirable ectopic transformants. Although large-scale random insertional mutagenesis via transformation (i.e., forward genetics) facilitates high-throughput uncovering of novel genes of interest, generating a huge number of transformants, which is necessary to ensure the likelihood of mutagenizing most genes, is time-consuming. We propose a new strategy, entitled the Bidirectional-Genetics (BiG) platform, which combines both forward and reverse genetic strategies by recycling ectopic transformants derived from TGR as a source for random insertional mutants. The BiG platform was evaluated using the rice blast fungus Magnaporthe oryzae as a model. Over 10% of >1,000 M. oryzae ectopic transformants, generated during disruption of specific genes, displayed abnormality in vegetative growth, pigmentation, and/or asexual reproduction. In this pool of putative mutants, we isolated insertional mutants with mutations in three genes involved in histidine biosynthesis (MoHIS5), vegetative growth (MoVPS74), or conidiophore formation (MoFRQ) (where "Mo" indicates "M. oryzae"), supporting the utility of this platform for systematic gene function studies.


Subject(s)
Gene Targeting/methods , Magnaporthe/genetics , Mutagenesis, Site-Directed/methods , Genes, Fungal/genetics , Histidine/biosynthesis , Histidine/genetics , Reverse Genetics/methods
SELECTION OF CITATIONS
SEARCH DETAIL
...