Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Next-generation technologies applied to age-old challenges in Madagascar

Domain:

environment and energy
Creator:
MarLydFidEli
Publisher:
Spr
Host:
Abstract Madagascar is a biodiversity hotspot that is facing rapid rates of deforestation, habitat destruction, and poverty. Urgent action is required to document the status of biodiversity to facilitate efficacious conservation plans. With the recent advent of portable and affordable genetic technologies, it is now possible to take genomic approaches out of the lab and into the field. Mobile genetics labs can produce scientifically reproducible data under field conditions, dramatically minimizing the time between sample collection and data analysis. Here, we show “proof of concept” by deploying miniPCR bio’s miniaturized thermal cycler alongside Oxford Nanopore’s MinION DNA sequencer in Madagascar. Specifically, we deployed this technology at Anjajavy, northwestern Madagascar for rapid biodiversity assessment. We successfully extracted mouse lemur DNA, amplified and sequenced a phylogenetically informative mitochondrial gene (cytochrome-b; cytb), and thereby confirmed the presence of Danfoss’ mouse lemur ( M. danfossi ) within the Anjajavy Reserve. We show that a mobile genetics lab can provide expeditious results, and allow scientists to conduct genetic analyses, potentially allowing for rapid interventions under emergency conditions in situ. Additionally, mobile labs offer powerful training opportunities for in-country scientists for whom training opportunities were previously confined to ex-situ locations. By bringing genomic technologies to Madagascar and other economically challenged and biodiverse regions of the world, the next generation of scientists and conservationists can more fully implement their leadership roles. Local laboratory and training facilities are changing the polarity of research programs in Madagascar and empowering national researchers to take charge of environmental stewardship.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by/4.0https://creativecommons.org/licenses/by/4.0

Similar

Identification of SNP and SSR markers in finger millet using Next generation sequencing technologiesA multifaceted investigation of the genomics of malaria, from parasite to host, using next-generation sequencing technologiesNext generation sequencing in dilated cardiomyopathy: utility and challenges in the African contextSoftware Holography: Interferometric Data Analysis for the Challenges of Next Generation ObservatoriesGMIA-NEXT: Next-Generation Global Map of Irrigated AreasThe Next Generation Drought Index Project

Identification of SNP and SSR markers in finger millet using Next generation sequencing technologies

Finger millet is an important cereal crop in eastern Africa and southern India with excellent grain

A multifaceted investigation of the genomics of malaria, from parasite to host, using next-generation sequencing technologies

Despite decades of progress and a drastic reduction in malaria burden worldwide since the implementa

Next generation sequencing in dilated cardiomyopathy: utility and challenges in the African context

Dilated cardiomyopathy (DCM) is a leading cause of heart failure worldwide and has a disproportionat

Software Holography: Interferometric Data Analysis for the Challenges of Next Generation Observatories

Next generation radio observatories such as the MWA, LWA, LOFAR, CARMA and SKA provide a number of

GMIA-NEXT: Next-Generation Global Map of Irrigated Areas

GMIA-NEXT is a medium-resolution (30 m) global irrigation data

The Next Generation Drought Index Project

<p>There is ample evidence about the added-value of anticipatory financing mechanism t