Genomic evidence for inbreeding depression and purging of deleterious genetic variation in Indian tigers
Anubhab Khan, Kaushalkumar Patel, Harsh Shukla, Ashwin Viswanathan, Tom van der Valk, Udayan Borthakur, Parag Nigam, Arun Zachariah, Yadvendradev V. Jhala, Marty Kardos, Uma Ramakrishnan
Abstract
= 0.46) populations. The small-isolated population had the lowest loss-of-function mutation load, likely due to purging of highly deleterious recessive mutations. The large populations had lower missense mutation loads than the small-isolated population, but were not identical, possibly due to different demographic histories. While the number of the loss-of-function alleles in the small-isolated population was lower, these alleles were at higher frequencies and homozygosity than in the large populations. Together, our data and analyses provide evidence of 1) high mutation load, 2) purging, and 3) the highest predicted inbreeding depression, despite purging, in the small-isolated population. Frequency distributions of damaging and neutral alleles uncover genomic evidence that purifying selection has removed part of the mutation load across Indian tiger populations. These results provide genomic evidence for purifying selection in both small and large populations, but also suggest that the remaining deleterious alleles may have inbreeding-associated fitness costs. We suggest that genetic rescue from sources selected based on genome-wide differentiation could offset any possible impacts of inbreeding depression.