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Production of common carp donor-derived offspring from goldfish surrogate broodstock
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Abstract
Background: Common carp is the fourth most-produced species in worldwide aquaculture. Significant efforts are invested in breeding and preservation of genetic integrity of this important species. However, maintaining carp gene bank in situ can be considered as demanding due to its big body size. Recent progress in reproductive biotechnologies in fish allows improving some unfavourable characteristics of a target species using surrogate reproduction. Germ stem cells (gamete precursors) from one species are transplanted into different surrogate species with small body size. After maturation, surrogates are producing donor-derived progeny. Efficient protocols for cryopreservation of carp male and female germ stem cells have been developed lately. Thus, the next logical goal was to assess the potential of goldfish surrogate to produce donor-derived gametes of common carp after intraperitoneal transplantation of testicular cells. Results: High transplantation success was achieved when 44% of the surviving goldfish produced pure donor-derived gametes of common carp. More importantly, both viable eggs and sperm giving rise to pure common carp progeny were produced, witnessing sustainability of the presented method. Donor-derived identity of the offspring was confirmed by genotyping and typical phenotype corresponding to the donor species. Reproductive performance of chimeras was similar to goldfish controls. Assessment of gamete characteristics showed that the size of donor-derived eggs is between control carp and goldfish eggs. Interestingly, flagellum length in donor-derived spermatozoa was comparable to common carp flagellum and significantly shorter than goldfish flagellum. Conclusions: In this study, we succeeded in the production of pure common carp progeny from surrogate goldfish recipients transplanted intraperitoneally by testicular germ cells. Here we reported production of viable eggs between most distant species up to date. Good reproductive performance of goldfish germline chimeras gives a promising prospect for further analysis about the long-term reproductive performance of surrogates, recovery of cryopreserved germ cells or production of monosex stocks. Presented technology is ready to ease needs for carp breeds preservation and their recovery using many times smaller goldfish surrogates.
Title: Production of common carp donor-derived offspring from goldfish surrogate broodstock
Description:
Abstract
Background: Common carp is the fourth most-produced species in worldwide aquaculture.
Significant efforts are invested in breeding and preservation of genetic integrity of this important species.
However, maintaining carp gene bank in situ can be considered as demanding due to its big body size.
Recent progress in reproductive biotechnologies in fish allows improving some unfavourable characteristics of a target species using surrogate reproduction.
Germ stem cells (gamete precursors) from one species are transplanted into different surrogate species with small body size.
After maturation, surrogates are producing donor-derived progeny.
Efficient protocols for cryopreservation of carp male and female germ stem cells have been developed lately.
Thus, the next logical goal was to assess the potential of goldfish surrogate to produce donor-derived gametes of common carp after intraperitoneal transplantation of testicular cells.
Results: High transplantation success was achieved when 44% of the surviving goldfish produced pure donor-derived gametes of common carp.
More importantly, both viable eggs and sperm giving rise to pure common carp progeny were produced, witnessing sustainability of the presented method.
Donor-derived identity of the offspring was confirmed by genotyping and typical phenotype corresponding to the donor species.
Reproductive performance of chimeras was similar to goldfish controls.
Assessment of gamete characteristics showed that the size of donor-derived eggs is between control carp and goldfish eggs.
Interestingly, flagellum length in donor-derived spermatozoa was comparable to common carp flagellum and significantly shorter than goldfish flagellum.
Conclusions: In this study, we succeeded in the production of pure common carp progeny from surrogate goldfish recipients transplanted intraperitoneally by testicular germ cells.
Here we reported production of viable eggs between most distant species up to date.
Good reproductive performance of goldfish germline chimeras gives a promising prospect for further analysis about the long-term reproductive performance of surrogates, recovery of cryopreserved germ cells or production of monosex stocks.
Presented technology is ready to ease needs for carp breeds preservation and their recovery using many times smaller goldfish surrogates.
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