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  2. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/sophie.html
    9 Sep 2013: The Jiggins Lab Webpage. Sophie Smith. Research Interests. Sophie provides support to research in the Evolutionary Genetics Laboratory in Madingley. She is primarily working on the mosquito Aedes aegypti. Education and Employment. BSc. MSc. Designed
  3. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/carlos.html
    10 May 2020: The Jiggins Lab Webpage. Carlos Luque. Research Interests. I am involved in the design and optimization of gene editing tools in Drosophila melanogaster, such as CRISPR/Cas9. We are harnessing the power of fly genetics to improve these techniques,
  4. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Mike.html
    9 Sep 2010: The Jiggins Lab Webpage. Dr Mike Magwire. Research Interests. Mike is interested in the genetic architecture of viral resistance in Drosophila melanogaster. Currently he is mapping several viral resistance genes in D. melanogaster using deficiency
  5. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Claire.html
    9 Sep 2010: The Jiggins Lab Webpage. Claire Webster. Employment. 2007-present Research Technician, Institute of Evolutionary Biology, University of Edinburgh. 2005 – 2006 Honours Project Student then Research Technician Chris Jiggins Group, Institute of
  6. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/hannah.html
    3 Dec 2011: The Jiggins Lab Webpage. Hannah Schweyen. Research Interests. Hannah is performing a genome-wide association study to identify polymorphisms in Drorosphila melanogaster that affect susceptibility to DAffSV. DAffSV is a sigma virus that naturally
  7. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Emma.html
    9 Sep 2010: The Jiggins Lab Webpage. Emma Louise Rhule. Research Interests. The aim of Emma's PhD is to assess the potential of the sexually-transmitted mite, Coccipolipus hippodamiae, as a classical biological control agent of the invasive ladybird, Harmonia
  8. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/chuan.html
    28 Nov 2011: The Jiggins Lab Webpage. Chuan Cao. Research Interests. The presence of evolutionary effects that pathogens and hosts have on one another provides an excellent model to study co-evolution. Among the limited knowledge we have now, virus-Drosophila
  9. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/suzan.html
    20 Sep 2013: The Jiggins Lab Webpage. Suzan Ok. Research Interests. My primary research interests include microbiology and host-symbiont dynamics. For my project, I am investigating the coevolutionary relationship between the fruit fly Drosophila and the
  10. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Dany.html
    1 Nov 2014: The Jiggins Lab Webpage. Daniel Fabian. Research Interests. I am interested in the genetic basis of traits and the selective mechanisms causing adaptation, particularly in the context of immunity and life history. To study these topics I am using
  11. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Natasa.html
    9 Sep 2010: The Jiggins Lab Webpage. Anastasia Fytrou. Research Interests. Natasa is interested in the evolution of host-parasite interactions, using Drosophila and parasitic wasps as a model system to investigate the genetic determination of resistance. Her
  12. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Lena.html
    9 Sep 2010: The Jiggins Lab Webpage. Dr Lena Wilfert. Research Interests. Lenas research focuses on the evolution of host-parasite interactions. She is particularly interested in the maintenance of genetic variation and recombination in natural populations, two
  13. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Fergal.html
    9 Apr 2013: The Jiggins Lab Webpage. Fergal Waldron. Research Interests. It is of major biological interest to uncover the extent to which genetic variation influences host susceptibility and pathogen virulence and also the degree to which evolution can create
  14. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Punita.html
    12 Apr 2011: The Jiggins Lab Webpage. Dr Punita Juneja. Research Interests. I am broadly interested in the genetic basis and evolution of adaptive traits. For my PhD, I studied short term evolution of the immune response of Drosophila melanogaster and addressed
  15. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/julien.html
    8 Mar 2017: The Jiggins Lab Webpage. Julien Martinez. Research Interests. I have a broad interest in evolutionary biology and specifically in host-symbiont coevolution. My current research focuses on the association between the intracellular bacterium Wolbachia
  16. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Ben.html
    22 Feb 2016: The Jiggins Lab Webpage. Ben Longdon. Research Interests. I have a broad interest in host-parasite ecology and evolution. My current interest focuses on how parasites switch between host species, what factors affect the ability of parasites to
  17. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/William.html
    12 Jun 2014: The Jiggins Lab Webpage. William J. Palmer. Research Interests. My current research seeks to understand the variation seen in the innate immune system of insects and assessing to what extent pathogens and the environment are responsible for shaping
  18. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/helen.html
    12 Jan 2015: The Jiggins Lab Webpage. Helen Leggett. Research Interests. I work on the evolutionary ecology of microbes by primarily studying evolution in real-time in controlled lab experiments (experimental evolution) with various strains of bacteria
  19. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/JennyB.html
    9 Sep 2010: The Jiggins Lab Webpage. Dr Jenny Bangham. Research Interests. In nature, there is a great deal of genetic variation for susceptibility to pathogens, and this has implications for medicine, agriculture, and evolution. Finding the genes responsible
  20. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/rodrigo.html
    20 Sep 2013: The Jiggins Lab Webpage. Dr Rodrigo Cogni. Research Interests. I have broad interests in evolutionary biology and ecology. To study fundamental questions in these fields I use insects. Insects are the most diverse group of animals on the planet, and
  21. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/jon.html
    6 May 2020: The Jiggins Lab Webpage. Jon Day. Research Interests. My current work aims to more fully understand the genetic basis of the resistance of the fruit fly Drosophila melanogaster to infection by its nemesis, the parasitic wasp Leptopilina boulardi.
  22. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/Cristina.html
    19 Mar 2012: The Jiggins Lab Webpage. Cristina Ariani. Research Interests. Mosquitoes are vector of a great number of human diseases, such as dengue fever, yellow fever and filariasis. The insect抯 immune system relies on humoral and cellular responses, which
  23. The Jiggins Lab Webpage

    www.jiggins.gen.cam.ac.uk/publications.html
    6 Oct 2022: The Jiggins Lab Webpage. Publications. 2021. Brosh, O, Fabian, DK, Cogni R, Tolosana, I, Day JP, Olivieri, F, Merckx, M, Akilli, N, Szkuta, P, Jiggins FM. 2022 A novel transposable element-mediated mechanism causes antiviral resistance in Drosophila
  24. The spread of Wolbachia through mosquito populations

    www.jiggins.gen.cam.ac.uk/pdfs/jiggins2017.pdf
    3 Jun 2017: to human health. Dengue virus, which infects millions of people every year, has greatly.
  25. Potential role of the sexually transmitted mite Coccipolipus…

    www.jiggins.gen.cam.ac.uk/pdfs/rhule%202010.pdf
    17 Mar 2010: axy-ridis. Negative effects on humans have also been reported, includ-ing the aggregation of beetles inside people’s homes during thewinter months, occasional allergic reactions to bites (Yarbroughet al., 1999; ... axyridis. Chemical insec-ticides are
  26. PNAS202122734_proof

    www.jiggins.gen.cam.ac.uk/pdfs/alves2022.pdf
    24 Aug 2022: The rabbit colonization of Australiawas accompanied by detailed historical literature on the eventsand people involved, providing a unique opportunity to combine.
  27. Molecular Ecology (2007) 16 , 3497–3510 doi:…

    www.jiggins.gen.cam.ac.uk/pdfs/Obbard_2007.pdf
    18 Feb 2008: Abstract. Anopheles. mosquitoes are the primary vectors for malaria in Africa, transmitting the diseaseto more than 100 million people annually. ... Plasmodium. species in sub-Saharan Africa, and as such areindirectly responsible for the deaths of more
  28. ppat.1004395 1..8

    www.jiggins.gen.cam.ac.uk/pdfs/longdon2014.pdf
    6 Nov 2014: killed tens of millions of people. Other important human. pathogens have originated from other host species, including.
  29. OP-VEVO150015 1..12

    www.jiggins.gen.cam.ac.uk/pdfs/longdon2015b.pdf
    18 Nov 2015: people per year with an estimated economic cost of $8.6billion (US) (Hampson et al.
  30. 11 Nov 2015: Lymphatic filariasis is a highly debilitating disease, which affects120 million people in the world (Ichimori, 2010).
  31. pntd.0002652 1..11

    www.jiggins.gen.cam.ac.uk/pdfs/juneja2014.pdf
    26 Feb 2014: Dengue is estimated to occur in. 50 million people each year, representing a 30-fold increase over.
  32. 21 Jul 2010: Jarrod Hadfield. and Shinichi Nakagawa provided invaluable statistical. advice. We are grateful to the people who helped.
  33. REV_ISS_WEB_MEC_12709_23-8 2093..2104

    www.jiggins.gen.cam.ac.uk/pdfs/wilfert2014.pdf
    8 May 2014: on statistics and phylogenetic reconstruction. We are very. grateful to the people who helped collecting viral isolates in.
  34. Population genomics reveals that an anthropophilic population of…

    www.jiggins.gen.cam.ac.uk/pdfs/crawford2017.pdf
    3 Mar 2017: Dengue virus, which is responsiblefor the most common human arboviral disease infectingmillions of people every year, has greatly increased itsrange in tropical and subtropical regions [3, 4].Ae.
  35. ppat.1002260 1..9

    www.jiggins.gen.cam.ac.uk/pdfs/longdon2011c.pdf
    26 Sep 2011: DOC). Acknowledgments. We would like to thank the following people who kindly supplied flies; Mike.
  36. Molecular Ecology (2007) 16 , 1327–1339 doi:…

    www.jiggins.gen.cam.ac.uk/pdfs/Wilfert2007molecol.pdf
    10 Oct 2007: Molecular Ecology (2007). 16. , 1327–1339 doi: 10.1111/j.1365-294X.2007.03234.x. 2007 The AuthorsJournal compilation 2007 Blackwell Publishing Ltd. Blackwell Publishing Ltd. Natural variation in the genetic architecture of a host–parasite
  37. pgen.1000698 1..13

    www.jiggins.gen.cam.ac.uk/pdfs/obbard2009plos.pdf
    30 Oct 2009: Quantifying Adaptive Evolution in the DrosophilaImmune SystemDarren J. Obbard1, John J. Welch1, Kang-Wook Kim1,2, Francis M. Jiggins3. 1 Institute of Evolutionary Biology, University of Edinburgh, Edinburgh, United Kingdom, 2 Department of Animal
  38. Exome and Transcriptome Sequencing of Aedes aegypti Identifies a…

    www.jiggins.gen.cam.ac.uk/pdfs/Juneja2015.pdf
    30 Mar 2015: It is estimated to affect 120 million people worldwide, and symptoms include lymph-edema and swelling of the extremities [9].
  39. pbio.1002005 1..24

    www.jiggins.gen.cam.ac.uk/pdfs/chipman2014.pdf
    25 Nov 2014: Funding: This work was supported by the following grants: NHGRI U54 HG003273 to R.A.G.; EU Marie Curie ITN #215781 ‘‘Evonet’’ to M.A.; a Wellcome TrustValue in People (VIP)

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