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1.
Philos Trans R Soc Lond B Biol Sci ; 379(1904): 20230102, 2024 Jun 24.
Article in English | MEDLINE | ID: mdl-38705182

ABSTRACT

Insect monitoring is pivotal for assessing biodiversity and informing conservation strategies. This study delves into the complex realm of insect monitoring in the Global South-world developing and least-developed countries as identified by the United Nations Conference on Trade and Development-highlighting challenges and proposing strategic solutions. An analysis of publications from 1990 to 2024 reveals an imbalance in research contributions between the Global North and South, highlighting disparities in entomological research and the scarcity of taxonomic expertise in the Global South. We discuss the socio-economic factors that exacerbate the issues, including funding disparities, challenges in collaboration, infrastructure deficits, information technology obstacles and the impact of local currency devaluation. In addition, we emphasize the crucial role of environmental factors in shaping insect diversity, particularly in tropical regions facing multiple challenges including climate change, urbanization, pollution and various anthropogenic activities. We also stress the need for entomologists to advocate for ecosystem services provided by insects in addressing environmental issues. To enhance monitoring capacity, we propose strategies such as community engagement, outreach programmes and cultural activities to instill biodiversity appreciation. Further, language inclusivity and social media use are emphasized for effective communication. More collaborations with Global North counterparts, particularly in areas of molecular biology and remote sensing, are suggested for technological advancements. In conclusion, advocating for these strategies-global collaborations, a diverse entomological community and the integration of transverse disciplines-aims to address challenges and foster inclusive, sustainable insect monitoring in the Global South, contributing significantly to biodiversity conservation and overall ecosystem health. This article is part of the theme issue 'Towards a toolkit for global insect biodiversity monitoring'.


Subject(s)
Biodiversity , Insecta , Insecta/physiology , Animals , Conservation of Natural Resources/methods , Environmental Monitoring/methods , Developing Countries , Entomology/methods , Ecosystem , Climate Change
2.
J Biosci ; 482023.
Article in English | MEDLINE | ID: mdl-38018542

ABSTRACT

In this study, the complete mitochondrial genomes of five noctuoid moth species, namely, Paectes cristatrix, Hemichloridia euprepia, Trigonodes hyppasia, Mythimna unipuncta, and Risoba obstructa, were newly sequenced and characterized. Based on our investigations, the five mitogenomes showed sizes of 15409, 15619, 15654, 15403, and 15233 bp, respectively, and encoded 37 genes (13 protein-coding, 2 ribosomal RNA, and 22 transfer RNA genes) and a control region. All protein-coding genes (PCGs) in these mitogenomes had typical ATN start codons except for cox1 and nad1. The non-canonical codon CGA was the starter in H. euprepia and M. unipuncta and TTG was the starter in T. hyppasia for cox1. The unusual codon GTG was the starter in R. obstructa for nad1. All tRNA genes showed distinctive putative cloverleaf structures except trnS1 (AGN), which lacked the dihydrouridine (DHU) stem. Bayesian inference (BI) and maximum likelihood (ML) analyses were employed based on 13 PCGs using 159 taxa among the five families of the superfamily Noctuoidea, and the results showed the monophyly of this superfamily with well-supported values. Phylogenetic analyses showed that the newly sequenced endemic species Hemichloridia euprepia clustered separately along with the subfamilies Cuculliinae and Acronictinae with fairly supported values.


Subject(s)
Genome, Mitochondrial , Moths , Animals , Moths/genetics , Genome, Mitochondrial/genetics , Phylogeny , Bayes Theorem , RNA, Transfer/genetics , Codon/genetics
3.
Biochem Genet ; 2023 Oct 27.
Article in English | MEDLINE | ID: mdl-37891448

ABSTRACT

In this study, the complete mitogenomes of Sympis rufibasis, Lacera noctilio, Oxyodes scrobiculata, Mocis undata, and Artena dotata were newly sequenced to bring up-to-date the database using the next-generation sequencing methods. The gene order of all sequenced mitogenomes was identical consisting of 13 protein-coding genes (PCGs), 22 transfer RNA genes (tRNAs), two ribosomal RNA genes (rRNAs), and a non-coding A+T-rich region, which were common to other Lepidopteran insects. All protein-coding genes (PCGs) initiated with a canonical ATN codon and ended with TAN or an incomplete stop codon, single T. The A+T-rich region of S. rufibasis, L. noctilio, O. scrobiculata, M. undata, and A. dotata are 406 bp, 462 bp, 372 bp, 410 bp, and 406 bp long, respectively, containing number of characteristics that are distinctive to Noctuoidea moths. We analyzed concatenated amino acid sequences of protein-coding genes not including rRNAs, using Maximum Likelihood and Bayesian Inference methods. The phylogenetic analyses indicated that the tribe relationships within Erebinae were reconstructed as (Sypnini+((Erebini 1+Poaphilini 1)+((Euclidiini+Catocalini+(Hypopyrini+Erebini 2))+((Hulodini+(Poaphilini 2+Ophiusini))))). Phylogenetic analyses supported and confirmed the monophyly of the subfamilies' relationships as follows: (Hypeninae+Lymantriinae)+((Scoliopterginae+((Calpinae+Erebinae)+((Herminiinae+Aganainae)+Arctiinae)))) within Erebidae.

4.
Genetica ; 151(2): 105-118, 2023 Apr.
Article in English | MEDLINE | ID: mdl-36708484

ABSTRACT

We sequenced the mitogenomes of two Erebid species, namely Ischyja manlia (Cramer, 1776) and Rusicada privata (Walker, 1865) to analyse the phylogenetic relationship and to establish the taxonomic position of incertae sedis members of the family Erebidae. The two circular genomes of I. manlia and R. privata were 15,879 bp and 15,563 bp long, respectively. The gene order was identical, containing 13 protein-coding genes (PCGs), 22 tRNA genes, two rRNA genes, and an A + T-rich region. The nucleotide compositions of the A + T-rich region of both mitogenomes were similar: 80.65% for R. privata, and 81.09% for I. manlia. The AT skew and GC skew were slightly positive in I. manlia and negative in R. privata. In I. manlia and R. privata, except for cox1 which started with CGA and TTG codons, all the other 12 PCGs started with ATN codon. The A + T-rich regions of I. manlia and R. privata were 433 and 476 bp long, respectively, and contained common characteristics of Noctuoidea moths. At present, Ischyja is treated as Erebinae incertae sedis. However, phylogenetic analysis conducted in the present study reveals that the genus Ischyja is most likely to be a member of the subfamily Erebinae.


Subject(s)
Genome, Mitochondrial , Moths , Animals , Moths/genetics , Phylogeny , Base Sequence , RNA, Transfer/genetics , Codon
5.
Sci Rep ; 12(1): 18926, 2022 11 07.
Article in English | MEDLINE | ID: mdl-36344589

ABSTRACT

In the present study, the newly sequenced mitogenomes of three Noctuoid and one Hyblaeoid (Insecta: Lepidoptera) species were annotated based on next-generation sequence data. The complete mitogenome lengths of Oraesia emarginata, Actinotia polyodon, Odontodes seranensis, and Hyblaea puera were 16,668 bp, 15,347 bp, 15,419 bp, and 15,350 bp, respectively. These mitogenomes were found to encode 37 typical mitochondrial genes (13 protein-coding, 22 transfer RNA, 2 ribosomal RNA) and a control region, similar to most Lepidoptera species. Maximum likelihood (ML) methods and Bayesian inference (BI) were used to reconstruct the phylogenetic relationships of the moths. This study showed the relationships of Noctuoid families as follows: (Notodontidae + (Erebidae + (Nolidae + (Euteliidae + Noctuidae)))). Furthermore, the species H. puera was separately clustered from the Noctuoidea member groups. Till now, the species from the superfamily Hyblaeoidea have not been discussed for their phylogenetic relationships. In this study, the complete mitochondrial genome of one species from the superfamily Hyblaeoidea was analysed.


Subject(s)
Genome, Mitochondrial , Moths , Animals , Genome, Mitochondrial/genetics , Phylogeny , Bayes Theorem , Moths/genetics , RNA, Ribosomal/genetics , RNA, Transfer/genetics
6.
Mol Biol Rep ; 48(5): 4449-4463, 2021 May.
Article in English | MEDLINE | ID: mdl-34109499

ABSTRACT

The species Eudocima salaminia (Cramer, 1777) commonly known as the fruit-piercing moth belongs to family Erebidae. Its distribution varies from India and across South-east Asia, pacific islands and parts of Australia. The insect is a devastating pest of citrus, longans and lychees. In the present study, complete mitochondrial genome of Eudocima salaminia was sequenced and analyzed using Illumina sequencer. The phylogenetic tree was reconstructed based on nucleotide sequences of 13 PCGs using Maximum likelihood method-General Reversible mitochondrial (mtREV) model. The mitogenome has 15,597 base pairs (bp) in length, comprising of 13 protein-coding genes (PCGs), 22 transfer RNA (tRNA) genes, two ribosomal RNA (rRNA) genes and A + T-rich region. All protein-coding genes (PCGs) initiate with canonical start codon ATN. The gene order (trnQ-trnI-trnM) of tRNA shows a different rearrangement compared to ancestral insect gene order (trnI-trnQ-trnM). Almost all tRNAs have a typical cloverleaf secondary structure except for trnS1 (AGN) which lacks the dihydrouridine arm. At the beginning of the control region, we observed a conserved polyT", motif "ATTTA" and microsatellite (TA)n element. There are 21 intergenic regions and five overlapping regions ranging from 1 to 73 bp and 1 to 8 bp, respectively. The phylogenetic relationships based on nucleotide sequences of 13 PCGs using Maximum likelihood method showed the family level relationships as (Notodontidae + (Euteliidae + Noctuidae + (Erebidae + Nolidae))). The present study represents the similarity to phylogenetic analysis of Noctuoidea mitogenome. Moreover, the family Erebidae is the sister to the families of (Euteliidae + Noctuidae + Nolidae).


Subject(s)
Gene Rearrangement , Genes, Insect , Genome, Mitochondrial , Mitochondria/genetics , Moths/classification , Moths/genetics , Phylogeny , Animals , Base Pairing/genetics , Gene Order , India , Insect Proteins/genetics , Microsatellite Repeats/genetics , RNA, Ribosomal/genetics , RNA, Transfer/genetics
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