First estimate of total viruses in mammals
Secrets of the Flying Fox
To address the challenges of describing and estimating virodiversity, a team of investigators from CII and EcoHealth Alliance began in jungles of Bangladesh - home to the flying fox. These bats are the largest flying mammal with a wingspan of up to 6 feet; they are also the source of several outbreaks of Nipah virus. The team collected 1,897 biological samples from the animals, which were captured and released. Back in the lab, they used polymerase chain reaction to identify 55 viruses in nine viral families. Of these, only five were previously known, including two human bocaviruses, an avian adenovirus, a human/bovine betacoronavirus, and an avian gammacoronavirus. Another 50 were newly discovered, including 10 in the same family as Nipah. Next the researchers adapted a statistical technique from the field of ecology to estimate that there were another three rare viruses unaccounted for in the samples, upping the estimate of viruses in the flying fox to 58. Finally, this number was extrapolated to all 5,486 known mammals, yielding a total of at least 320,000 viruses.
A Relative Bargain
The researchers then repeated the exercise for cost, extrapolating from an estimated $1.2 million for surveillance, sampling, and discovery of all 58 flying fox viruses to come up with a total of $6.3 billion for all mammals. Given the disproportionate cost of discovering rare viruses, they showed that limiting discovery to 85% of estimated viral diversity would bring the cost down to $1.4 billion.
"By contrast, the economic impact of the SARS pandemic is calculated to be $16 billion," says Dr. Anthony. "We're not saying that this undertaking would prevent another outbreak like SARS. Nonetheless, what we learn from exploring global viral diversity could mitigate outbreaks by facilitating better surveillance and rapid diagnostic testing."
"If we know what's out there, we'll be a lot better prepared when a virus jumps over into a human population," Dr. Anthony continues, adding that prevention is crucial when it comes to viral infections since antivirals are notoriously difficult to develop.
Plumbing the Depths of the Zoonotic Pool
A continued systematic effort to discover mammal viruses would provide a more accurate estimate on total number of viruses in what co-author Stephen Morse, PhD, co-director of the PREDICT Project and professor of Epidemiology at the Mailman School, calls the "zoonotic pool" of potential viral pathogens that threaten humans.
The researchers say the initial estimate of 320,000 is just a starting point and will likely be considerably higher after accounting for additional viral families and employing high throughput sequencing methods developed at CII. They also point to several unknowns, including whether or not the samples from flying foxes in Bangladesh are representative of all flying foxes, which range across Southern Asia; whether or not all mammal species harbor a similar number of viruses; and the extent to which viruses are shared from species to species (as seen with the human, bovine, and avian viruses in the flying fox). Furthermore, the cost of collecting samples could vary depending on habitat (the flying fox expedition in Bangladesh was relatively low compared with similar undertaking for an animal living in more remote areas).
To help fill in some of these blanks, the team is repeating the process in two follow-up studies - one in a species of primates in Bangladesh in order to see if their viral diversity is comparable to the flying fox's, and another in Mexico, where analysis of samples from six species of bats that share the same habitat will be undertaken to determine the extent to which they share viruses. With additional resources, they hope to expand the investigation to other species and viral families.