Abstract
Nile tilapia (Oreochromis niloticus) natural genetic resources are found in Africa. These resources are threatened due to modifications of the natural habitats of fishes and uncontrolled introductions of alien species or strains. Nile tilapia populations living in extreme habitats are emblematic of this situation. They represent original and potentially useful genetic resources for Aquaculture. However, the populations are threatened either by strong modifications or introduction of alien species in their habitats. Characterizing these populations constitutes the very first step of their protection and consequently their utilization in aquaculture. In our study we concentrated on two different populations of Nile Tilapia. One living in the alkaline Crocodile Lake (10,590 µS/cm, 10 pH) which is a Crater Lake located in the central Island of Lake Turkana. The second group of population inhabit the hot springs of Loboi Swamp near Lake Bogoria in Kenya. These fish are living in water characterized by high temperatures, around 36°c. All above populations (Crocodile Lake and Loboi Swamp Hot springs) may have experienced some selective pressures to cope with their challenging environments. For Crocodile Lake, fish may have found a way to excrete their nitrogenous wastes because at pH 10, excretion is not possible by simple diffusion. For the hot spring populations, most individuals should have been males as high temperature is known to induce masculinization in O. niloticus. This population may have accumulated adequate mutations to enable them overcome masculinizing effects of high water temperature. To study these populations we used geometric morphometrics and genetic markers (16 microsatellites and mtDNA) and compared them with other related populations from the region. In addition, three sex-linked genes (Cyp19a, Wt1b, amh) were analysed using SNP markers in three populations of Nile tilapia inhabiting hot springs of Loboi Swamp, and compared them to eight other populations from East Africa, Sudano-Sahelian and Ethiopian regions. Significant morphological differences were observed in all populations studied, including three closely related populations of Loboi Swamp, and two genetically related populations from Lake Turkana basin. Both genetic differences and environmental factors were responsible for the observed morphological differences. Similarly, all studied populations were genetically differentiated, and we demonstrated that populations from Loboi Swamp and Lake Baringo have been introgressed by O. leucostictus genes. Analyses of the sex-linked clustered revealed that amh gene is a candidate gene for sex determination in Nile tilapia, with 12 SNPs showing strong associations to phenotypic sex. Nevertheless there is no general pattern of sex determination, rather it seems that sex determination mechanisms are different with respect to populations, but is not characteristic or unique for the entire species.