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Studies on Embryo Development Following Intra Cytoplasmic Sperm Injection and Morphogenetic Analysis of Primordial Germ Cell Migration in Aves : 조류의 동결 해동 정자 미세 주입법을 이용한 배아 발생 및 생식세포의 초기 이동 기작에 대한 연구

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dc.contributor.advisor한재용-
dc.contributor.author강경수-
dc.date.accessioned2017-07-13T08:22:55Z-
dc.date.available2017-07-13T08:22:55Z-
dc.date.issued2015-02-
dc.identifier.other000000026800-
dc.identifier.urihttps://hdl.handle.net/10371/119493-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 농생명공학부, 2015. 2. 한재용.-
dc.description.abstractPrimordial germ cells (PGCs) migrate across the embryo to the gonads where they differentiate and function. Both of morphogenetic and actively through are used for their movement. We have examined the spatial and temporal action of PGCs. As results, PGCs migrated passively toward the anterior region from the preliminary location. However, PGCs and somatic cells are shown different migration speed when they reached the anterior region. PGCs demonstrated markedly faster migration than somatic cells. The results reveal that chicken PGCs use sequential passive and active migration toward the germinal crescent, and only PGCs migrated to germinal crescent.
Cryopreservation of avian semen for preserving the avian genetic resource has been studied for more than 80 years, and there have been many technical difficulties due to the complexity of avian reproductive system. We found that the mixture shown the highest fertility composes of 8% glycerol with 3% DMA in prefreezing diluents. However the mixture was a harmful effect with the addition of cryoprotectant especially with glycerol. Our results show that the sperm preserved in the mixture composed of 6% glycerol containing 5% DMA had 5% less motility. Thus we used that mixture and the sperm preserved in the mixture produced fertilized eggs. Additionally, we tested incubation time for glycerol removal by monitoring under scanning electron microscopy (SEM). We found that complete removal of glycerol requires at least 30 min incubation time.
We have investigated the ability of cryopreserved/thawed quail sperm by intracytoplasmic injection to the unfertilized ovum. An injected egg was incubated with egg shell surrogate system. We have used both PLC zeta (PLCζ) and inositol 1,4,5-trisphosphate (IP3). Embryo development ratio increased significantly compared to fresh sperm only (90% vs. 13%).
Avian species surrogate egg shell system has been adapted in many different experimental fields. However, the viability needs to be improved and the system should be more simplified for commercial uses. We have established the quail egg surrogate system for embryo developmental study. The system has produced high percentage of hatchability in both thick albumin capsulated and non-capsulated egg, 78% and 60% respectively. Furthermore, we have succeeded in higher hatchability in single cell stage of embryo incubation.
This study could provide deeper understanding of germ cell movement mechanism in early embryo developmental stage. And, we tested for ICSI by producing chick from cryopreserved sperm for avian genetic resource conservation. We have established knowledge in avian embryo development to understand embryo fertilization and developmental stratagem for atmosphere of ex ovo culture system used by surrogate egg shell system complementation. This study could bring deeper understanding in avian culture system with germ cell migration and possibilities of hatching chick by ICSI and surrogate egg shell system for conservation of genetic resource in the future.
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dc.description.tableofcontentsSUMMARY…………………………………………………...……………. i
CONTENT……………………………………………………….…….…... iii LIST OF FIGURES…………………..……………………………………. vi
LIST OF TABLES………………………………………………..……….. vii LIST OF ABBREVIATION…………………………….………...………. ix
CHAPTER 1. GENERAL INTRODUCTION………………..………...... 1
CHAPTER 2. LITERATURE REVIEW………………..….…….………. 8
1. Experimental animal………….…….…..…..……………............... 9
1.1. Korean Oge chicken……………………..…..……….....………..... 9
1.2. White Leghorn chicken………………………..………...…..…...... 9
1.3. Japanese quail………………………………….…………..... 10
2. Avian embryo surrogate egg shell incubation system... 11
2.1. The surrogate egg shell incubation system…………………. 11
2.2. The history of avian embryo culture system.……...…................... 11
2.3. The surrogate egg shell incubation extension and improvement… 12
2.4. The fertilization and development of avian embryo ….…….…… 12
2.5. The uses of avian embryo culture system……...…...……………. 13
3. An intracytoplasmic sperm injection (ICSI) method for avian species…………………………………………………………… 15
3.1. The history of ICSI method and application……………………… 15
3.2. An intracytoplasmic sperm injection (ICSI) method for avian species……………………………………………………….…… 15
3.3. An intracytoplasmic sperm injection (ICSI) method with cryopreserved sperm in avian species……..................................... 16
3.3.1. Avian sperm cryopreservation ………………………………….... 17
3.3.2. The purpose of avian sperm cryopreservation………...…………. 18
3.3.3 The history of sperm cryopreservation for artificial insemination (AI)…………………………………………………….…………. 19
3.3.4. The use of cryoprotectant for avian sperm……………………... 20
3.3.5. Avian semen cryopreservation methods………………………… 20
3.3.6. The mechanism of fertility capacity in sperm quality…………… 21
3.3.7. The mechanism of avian species oocyte fertilization ..…...……… 22
4. Primordial germ cells (PGC) migration..……..……….…........…. 24
4.1. Primordial germ cells ………………..…………...…….……….... 24
4.2 The uses of PGCs to produce germline chime…….…………….... 24
4.3 PGC isolation ………………………………..…….…..…………. 25
4.4 PGCs migration…………………………….…………..…….…… 25
5. References……………………………………………...……….... 27
CHAPTER 3. IMPROVEMENT OF SURVIVAL RATE AND HATCHABILITY IN SIMPLIFIED QUAIL EGG SURROGATE SYSTEM FOR SINGLE CELL STAGE OF EMBRYO DEVELOPMENT………………………………………………………… 42
1. Introduction………………………………………………….……. 43
2. Materials and methods…………………………………...…..…… 46
3. Results & Discussion....................................................................... 51
4. References……………………………………………………..….. 59

CHAPTER 4. FERTILIZATION BY INTRACYTOPLASMIC SPERM INJECTION (ICSI) OF CRYOPRESERVED SPERM INTO UNFERTILIZED QUAIL OVUM ………………………………...…..... 61
1. Introduction………………………………………………….….... 62
2. Materials and methods…………………………………...…..…... 64
3. Results & Discussion……………………………………...…....... 70
4. Conclusion…………………………………...…………….…...... 79
5. References……………………………………………………..…. 81

CHAPTER 5. SPATIAL AND TEMPORAL ACTION OF CHICKEN PRIMORDIAL GERM CELLS DURING INITIAL MIGRATION…... 86
1. Introduction………………………………………………….……. 87
2. Materials and methods…………………………………...…..…… 89
3. Results…………………………………………………...……….. 92
4. Discussion …………………………………...…………….…….. 104
5. References……………………………………………………..…. 109

CHAPTER 6. CONCLUSION….…………..…………………………... 112

CHAPTER 7. SUMMERY IN KOREAN……………………………… 117

ACKNOWLEGEMENTS…………………………………………......... 122
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dc.formatapplication/pdf-
dc.format.extent4219434 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectPrimordial germ cells migration-
dc.subjectcryopreservation of avian semen-
dc.subjectintracytoplasmic sperm injection-
dc.subjectsurrogate egg shell system-
dc.subject.ddc630-
dc.titleStudies on Embryo Development Following Intra Cytoplasmic Sperm Injection and Morphogenetic Analysis of Primordial Germ Cell Migration in Aves-
dc.title.alternative조류의 동결 해동 정자 미세 주입법을 이용한 배아 발생 및 생식세포의 초기 이동 기작에 대한 연구-
dc.typeThesis-
dc.contributor.AlternativeAuthorKang Kyung Soo-
dc.description.degreeDoctor-
dc.citation.pages119-
dc.contributor.affiliation농업생명과학대학 농생명공학부-
dc.date.awarded2015-02-
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