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Adaptation and mal-adaptation to ambient hypoxia; Andean, Ethiopian and Himalayan patterns

  • Guoqiang Xing
  • , Clifford Qualls
  • , Luis Huicho
  • , Maria River-Ch
  • , Tsering Stobdan
  • , Marat Slessarev
  • , Eitan Prisman
  • , Soji Ito
  • , Hong Wu
  • , Angchuk Norboo
  • , Diskit Dolma
  • , Moses Kunzang
  • , Tsering Norboo
  • , Jorge L. Gamboa
  • , Victoria E. Claydon
  • , Joseph Fisher
  • , Guta Zenebe
  • , Amha Gebremedhin
  • , Roger Hainsworth
  • , Ajay Verma
  • Otto Appenzeller
  • Uniformed Services University of the Health Sciences
  • University of New Mexico
  • Univ. Nacional Mayor de San Marcos
  • Ladakh Institute of Prevention and Ladakh Heart Foundation
  • University of Toronto Faculty of Medicine
  • Nagoya City University Graduate School of Medical Sciences
  • Sonam Norboo Memorial Hospital
  • Ladakh Autonomous Hill Development Council
  • University of Kentucky College of Medicine
  • Simon Fraser University
  • Addis Ababa University
  • University of Leeds
  • Uniformed Services University of the Health Sciences
  • New Mexico Health Enhancement and Marathon Clinics Research Foundation

Research output: Contribution to journalArticlepeer-review

67 Scopus citations

Abstract

The study of the biology of evolution has been confined to laboratories and model organisms. However, controlled laboratory conditions are unlikely to model variations in environments that influence selection in wild populations. Thus, the study of "fitness" for survival and the genetics that influence this are best carried out in the field and in matching environments. Therefore, we studied highland populations in their native environments, to learn how they cope with ambient hypoxia. The Andeans, African highlanders and Himalayans have adapted differently to their hostile environment. Chronic mountain sickness (CMS), a loss of adaptation to altitude, is common in the Andes, occasionally found in the Himalayas; and absent from the East African altitude plateau. We compared molecular signatures (distinct patterns of gene expression) of hypoxia-related genes, in white blood cells (WBC) from Andeans with (n=10), without CMS (n=10) and sea-level controls from Lima (n=20) with those obtained from CMS(n=8) and controls(n=5), Ladakhi subjects from the Tibetan altitude plateau. We further analyzed the expression of a subset of these genes in Ethiopian highlanders (n=8). In all subjects, we performed the studies at their native altitude and after they were rendered normoxic. We identified a gene that predicted CMS in Andeans and Himalayans (PDP2). After achieving normoxia, WBC gene expression still distinguished Andean and Himalayan CMS subjects. Remarkably, analysis of the small subset of genes (n=8) studied in all 3 highland populations showed normoxia induced gene expressionc change in Andeans, but not in Ethiopians nor Himalayan controls. This is consistent with physiologic studies in which Ethiopians and Himalayans show a lack of responsiveness to hypoxia of the cerebral circulation and of the hypoxic ventilatory drive, and with the absence of CMS on the East African altitude plateau.

Original languageEnglish
Article numbere2342
JournalPLoS ONE
Volume3
Issue number6
DOIs
StatePublished - 4 Jun 2008

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