Effects of inbreeding on fertilization, growth and survival in the tetraploid Pacific oyster Crassostrea gigas
摘要
Induced homologous tetraploid oysters are typically derived from a limited number of effective parents, with subsequent breeding steps likely to cause inbreeding, which may cause their own production performance to decline. To explore the performance of inbreeding, we established outbred (F0) and inbred lines (F1 and F2) in tetraploid Pacific oyster. Cleavage rate, shell height, survival rate, and total weight were compared. Inbreeding coefficients in F0, F1, and F2 were 0, 0.25, and 0.375, respectively. The results showed that there was no significant difference in cleavage rate between outbred line and inbred lines. The F1 showed distinct growth and survival depression only at larval stage, but no depression at grow-out stage. F1 growth and survival IDC values at larval stage were − 1.29% to 0.03% and − 0.31% to 0.01%, respectively. However, depressed growth and survival rate appeared in almost all F2 growth cycle; F2 growth and survival IDC values were − 1.10% to − 0.78% and − 3.14% to − 4.51% in larval stage and − 0.48% to − 0.25% and − 0.79% to − 0.64% in grow-out stage, respectively. Growth and survival rate at Longkou and Qingdao sites showed no depression in the F1 line during grow-out stage. The results indicate that inbreeding depressed growth and in particular survival in tetraploid oysters. With increased inbreeding levels, depressed growth and survival became more distinct. We provided important insights on the inbred lines construction and further breeding of tetraploid oysters.