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Human major infections: Tuberculosis, treponematoses, leprosy-A paleopathological perspective of their evolution
Maciej Henneberg1,2,3, Kara Holloway-Kew4, Teghan Lucas3,5
1Biological and Comparative Anatomy Research Unit, Adelaide Medical School, University of Adelaide, Adelaide, Australia.
Abstract:
The key to evolution is reproduction. Pathogens can either kill the human host or can invade the host without causing death, thus ensuring their own survival, reproduction and spread. Tuberculosis, treponematoses and leprosy are widespread chronic infectious diseases whereby the host is not immediately killed. These diseases are examples of the co-evolution of host and pathogen. They can be well studied as the paleopathological record is extensive, spanning over 200 human generations. The paleopathology of each disease has been well documented in the form of published synthetic analyses recording each known case and case frequencies in the samples they were derived from. Here the data from these synthetic analyses were re-analysed to show changes in the prevalence of each disease over time. A total of 69,379 skeletons are included in this study. There was ultimately a decline in the prevalence of each disease over time, this decline was statistically significant (Chi-squared, p<0.001). A trend may start with the increase in the disease's prevalence before the prevalence declines, in tuberculosis the decline is monotonic. Increase in skeletal changes resulting from the respective diseases appears in the initial period of host-disease contact, followed by a decline resulting from co-adaptation that is mutually beneficial for the disease (spread and maintenance of pathogen) and host (less pathological reactions to the infection). Eventually either the host may become immune or tolerant, or the pathogen tends to be commensalic rather than parasitic.
Insights
Chronic infectious diseases like tuberculosis, treponematoses, and leprosy show declining prevalence over time. This evolution reflects host-pathogen co-adaptation, leading to reduced disease severity and better host survival.
Area of Science:
- Paleopathology
- Evolutionary Biology
- Infectious Disease Dynamics
Background:
- Pathogen survival depends on host reproduction, not immediate host death.
- Chronic infectious diseases (tuberculosis, treponematoses, leprosy) exemplify host-pathogen co-evolution.
- Extensive paleopathological records allow study of these diseases over human generations.
Observation:
- Re-analysis of published synthetic analyses of 69,379 skeletons.
- Examined changes in disease prevalence over time for tuberculosis, treponematoses, and leprosy.
- Observed statistically significant declines in the prevalence of these chronic infections.
Findings:
- Disease prevalence initially increased, then significantly declined over time (p<0.001).
- Tuberculosis showed a monotonic decline in prevalence.
- Skeletal evidence indicates initial increase in disease manifestation followed by a decline due to co-adaptation.
Implications:
- Co-adaptation benefits both host (reduced pathology) and pathogen (sustained spread).
- Host-pathogen interactions evolve towards mutualism or commensalism.
- This evolutionary trajectory suggests increased host immunity or pathogen tolerance over time.
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