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1.
前期报道了利用尼罗罗非鱼LG22上性别连锁的分子标记检测到养殖群体存在天然XY雌鱼,但其能否用于培育YY超雄罗非鱼尚不清楚。本研究首先引入遗传性别受LG22染色体严格控制的CQ尼罗罗非鱼群体和具有天然XY雌鱼的WC群体,将CQ群体XY雄鱼与WC XY雌鱼杂交,检验杂交F1 YY超雄鱼是否可用于控制后代性别,并比较杂交F1 XY和YY罗非鱼体质量、性腺指数、血清激素水平和性腺基因表达情况。研究发现,CQ XY雄鱼和WC XY雌鱼交配,获得的F1 中具有25%的YY超雄鱼,经鉴定为全雄且可育。将F1 YY超雄鱼与WC XX雌鱼、WC XY雌鱼(母本)、杂交F1 XX雌鱼和CQ XX雌鱼交配,后代几乎全雄,仅在与F1 XX雌鱼交配后代中有2尾雌鱼(雄性率98%)。在孵化后180 d,杂交F1中XY和YY个体的体重、性腺指数、血清激素水平差异不显著。基因表达分析发现,YY鱼精巢中AmhX/AmhY mRNA表达显著高于XY鱼,而Dmrt1 和Cyp11b2 mRNA表达水平差异不显著。杂交F1 YY和XY鱼生理指标无明显差异。因此,采用尼罗罗非鱼天然XY雌鱼能够培育YY超雄鱼,且该YY超雄鱼能够用于罗非鱼性别控制。  相似文献   

2.
为大量繁殖尼罗罗非鱼(Oreochromis niloticus)超雄鱼,利用雌性激素处理刚孵化出膜的YY型鱼苗可使其转化为雌鱼,且具有生殖功能这一关键技术,使原先的"三系配套"技术简化为两系配套,并运用于实际生产。使用该技术建立了YY♂/YY△♀种质库,储备超雄鱼近20万尾,YY型生理雌鱼近万尾,生产XY型全雄鱼近3亿尾,现已应用于福建、海南和广东等省区。  相似文献   

3.
WY♀-YY♂型罗非鱼繁殖体系研究   总被引:2,自引:0,他引:2  
为实现超雄罗非鱼的自然繁殖,按照尼罗罗非鱼(Oreochromis Niloticus)的遗传基础和种质标准,不断选育尼罗WY雌性鱼,然后与尼罗YY超雄鱼相组合,形成尼罗罗非鱼WY♀-YY♂繁殖体系。研究结果显示:WY♀-YY♂繁殖体系能自然繁殖YY超雄鱼和WY雌鱼;能保持性比平衡;不用测交直选超雄鱼。此种繁殖体系可使超雄鱼规模化制种,实现三系配套转变为二系配套制种。  相似文献   

4.
尼罗罗非鱼新品种“鹭雄1号”的制种研究   总被引:1,自引:0,他引:1  
采用多年定向选育的尼罗罗非鱼(Oreochromis niloticus)雌鱼做母本,采用由性别二系配套技术繁殖的尼罗罗非鱼超雄鱼做父本,构成XX♀/YY♂尼罗罗非鱼新品种繁育体系,可规模化繁育全雄性尼罗罗非鱼新品种"鹭雄1号"。"鹭雄1号"的突出特点是遗传雄性率高,达到99.00%以上,较其它所有尼罗罗非鱼品系的雄性率高出1倍左右,同时具有生长迅速和出肉率高的优良性状。  相似文献   

5.
在尼罗罗非鱼性转化试验工作的基础上,有倾向性地选择试验中生长快、个体大或具有雄性副性特征的雌鱼与正常的雄性XY个体自然杂交。通过早期鱼苗性腺压片观察和子代性成熟后雌雄鉴定及个体解剖观察,试验组中出现了典型的XY雄与XY雌鱼杂交的子代1/4雌和3/4雄分布比例,佐证了尼罗罗非鱼遗传型为XX雌-XY雄型。结果表明,XY型雌鱼可存活,性腺可正常发育,并有生殖能力;子代出现3/4的雄性个体也侧证了1/4YY超雄个体存在并可存活的可能性,为进一步试验研究提供了实践依据;XY雌鱼与XX雌鱼存在外观差异,在一定程度上可通过这些性状选择XY雌鱼,为后期单倍体、雌核二倍体试验提供方便。  相似文献   

6.
《海洋与渔业》2011,(6):33-33
黄颡鱼“全雄1号”是今年农业部审定通过的水产新品种,品种登记号:GS-04-001-2010。它是相关科技人员历时十余年攻关而成的智慧结晶。科研人员先采用性逆转、人工雌核发育等技术获得染色体均为YY的超雄鱼与生理雌鱼,再将两者交配后生产的YY超雄鱼作父本与正常雌鱼母本交配,最终培育出黄颡鱼“全雄1号”。  相似文献   

7.
渔业生物学     
030007尼罗罗非鱼性别表型和遗传型以及性比对其生长的影响=Innuenee of sexualphenotype and genot即e,and sex ratioongrowth performanees in til即iao掩ochromis,:izoticu:[刊,英〕门几guyeniA,Faucon-neauB,FostievA…// Aquac.一2002, 6207(3/4)一249一261 罗非鱼早熟,连续产卵,产卵不同步,使具在饵料不足的池塘中的密度过大,成为限制其养殖发展的主要因素之一。有关第1个试验分析了性别遗传型对表型雄鱼生长率的影响。雄鱼有3种不同的遗传型:YYloo(YY雄X YY雌)、XY100(YY雄x XX雌)以及XXloo(激素性诱变的雌鱼)。将它们与传…  相似文献   

8.
罗非鱼“粤闽1号”是用尼罗罗非鱼(Oreochromis niloticus)和奥利亚罗非鱼(O. aureus)培育的全雄罗非鱼新品种。采用同工酶电泳技术和线粒体DNA控制区序列分析方法,对罗非鱼“粤闽1号”及其繁育群体的遗传多样性、遗传结构及群体之间的遗传关系进行研究。同工酶电泳结果显示,酯酶(EST)和乳酸脱氢酶(LDH)的酶谱具有组织和群体特异性。肌肉和脾脏中的EST表达量极低,而肝脏中的EST表达量较高,LDH在3种组织中均有较高表达,但酶谱存在差异。在罗非鱼“粤闽1号”及其繁育群体中,共检测到10条EST酶带和5条LDH酶带,多态性位点比例(P)为12.50%~71.43%,平均观测杂合度(Ho)为0.0417~0.6143,Hardy-Weinberg遗传偏离指数(D)为?0.2347~0.9072。线粒体DNA控制区序列分析结果显示,mtDNA D-loop区的碱基组成无显著差异,均呈现出A+T碱基偏向性(63.39%)。在罗非鱼“粤闽1号”及其繁育群体中,共发现20种单倍型,核苷酸多样性指数(Pi)为0~0.0519,奥尼罗非鱼雌鱼(WY1)、尼罗罗非鱼雌鱼(XX)、尼罗罗非鱼雄鱼(XY)和罗非鱼“粤闽1号”(XY2)群体的Pi值(0.0440~0.0519)明显高于超雄尼罗罗非鱼(YY1)、超雄奥尼罗非鱼(YY2)和奥利亚罗非鱼雌鱼(WZ)群体的Pi值(0~0.0009)。各群体之间的遗传分化指数(FST)为?0.0115~0.9963,XY2与WY1群体之间、XX与XY群体之间以及WZ和YY2群体之间的遗传分化不显著(FST<0.05, P>0.05)。XY2群体与尼罗罗非鱼群体(XX群体和XY群体)和奥利亚罗非鱼群体(WZ群体)之间的平均遗传距离分别为0.0639和0.0695。在NJ系统进化树中,XX、XY、YY1和XY2群体聚为一支,WY1、WZ和YY2群体聚为另一支。本研究揭示了罗非鱼“粤闽1号”的生化和分子遗传特征,为其种质鉴定、繁育群体的构建和优良性状的稳定遗传提供理论基础。  相似文献   

9.
<正>在养殖过程中发现,黄颡鱼雄鱼比雌鱼生长快,相同条件下,雌雄生长差异达2~3倍。全雄黄颡鱼就是利用黄颡鱼性逆转技术获得XY生理雌鱼,然后通过XY生理雌鱼雌核发育产生了YY超雄鱼,并且通过与XX雌鱼测交得到了全雄子代。2012年,江苏省洪泽县开展了全雄黄颡鱼成鱼养殖试验,取得了平均每亩养成黄颡鱼621千克、花白鲢225千克、效益5082元的试验结果。现将试  相似文献   

10.
何谓奥尼杂交鱼?目前讲的奥尼杂交鱼是用奥利亚罗非鱼雄鱼与尼罗罗非鱼雌鱼杂交得到的子代。奥尼杂交鱼雄性率高、生长快、起捕率高,深受人们欢迎。那么,怎样提高奥尼杂交鱼的雄性率呢?1.双亲纯度要高。奥尼杂交鱼的双亲为奥利亚罗非鱼和尼罗罗非鱼,由于奥利亚罗非鱼的性染色体组成雄鱼为ZZ,雌鱼为ZW,与尼罗罗非鱼及我国“四大家鱼”不同(尼罗罗非鱼雄免性染色体组成为XY,雌鱼为XX)。利用奥利亚罗非鱼雄鱼(ZZ)与尼罗罗非鱼雌免(XX)杂交,它们后代性染色体组成为ZX,在理论上应是百分之百为雄鱼,但实际上获得100%雄性…  相似文献   

11.
为分析罗非鱼群体的遗传多样性以及筛选与罗非鱼性别相关的微卫星标记。应用24对微卫星引物,使用常规PCR及聚丙烯酰胺凝胶电泳的方法在两个尼罗罗非鱼(Oreochromis niloticus)群体和两个奥利亚罗非鱼(O.aureus)群体中初步筛选到UNH931、GM128、GM201、GM258、GM597以及UNH898共6个与性别相关的微卫星标记。然后使用降落PCR以及毛细管电泳的方法在两个尼罗罗非鱼群体、两个奥利亚罗非鱼群体以及ZY 1、WY 1、YY 1和YY 2型罗非鱼群体中进一步扩增这6个微卫星标记,统计各群体的遗传多样性参数:6个微卫星标记在上述群体共297个样本中检测到95个等位基因,其大小在97~302 bp之间,各位点在各群体等位基因数在1~13个之间,各群体平均观测等位基因数为2.167~9.333,平均有效等位基因数为1.624~4.966,平均观测杂合度为0.324~0.983,平均期望杂合度为0.329~0.782,平均多态信息含量为0.275~0.753;两个尼罗罗非鱼群体、WY 1和YY 2群体达到高度多态(PIC>0.5),两个奥利亚罗非鱼群体、ZY 1和YY 1群体为中度多态(0.25相似文献   

12.
WY型罗非鱼的性别鉴定   总被引:1,自引:1,他引:0  
以尼罗罗非鱼(Oreochromis niloticus)和奥利亚罗非鱼(O.aurea)为材料,进行WZ♀×XY♂、WZ♀×YY♂、WY×ZY♂、WY×YY♂杂交实验及其子代分析,确认WY型罗非鱼的性别为雌性。  相似文献   

13.
Hybridization between Nile tilapia Oreochromis niloticus (Local and Stirling University strains) and blue tilapia O. aureus was found to be a tool to produce monosex populations. In order to select a purebred that produces all- or nearly all-male hybrids with high productivity, O. niloticus females and their diploid gynogenetics (meiogynes and mitogynes) were hybridized with O. aureus males. The sex ratio of progenies was evaluated from inter- and intraspecific crosses of two strains of Nile tilapia. Single-pair matings and group spawns under hatchery conditions showed no deviation ( P > 0.01) from the expected sex ratio of intraspecific crosses among two strains of Nile tilapia. However, a higher proportion of male progenies in blue tilapia was observed in group spawns in pond ( P < 0.004) and hatchery conditions ( P < 0.01). Only the Stirling strain and mitogynes produced all-male progenies under laboratory conditions. There were significant differences ( P < 0.05) in growth among hybrid progeny groups, when gynogens and their regular O. niloticus (Local strain) females were crossed with O. aureus males. Six-month hybrid offspring from mitogyne female parents grew better than those from regular and meiogyne female broods.  相似文献   

14.
Abstract –  Nile tilapia ( Oreochromis niloticus L.) is the dominant of the introduced tilapiines in many East African lakes and has flourished in the presence of introduced Nile perch ( Lates niloticus L.). We explored the hypothesis that O. niloticus exhibits increased omnivory in response to a decline in abundance of haplochromine cichlids. First, we quantified variation in habitat use and diet of O. niloticus in Lake Nabugabo, Uganda. Second, we compared the diet of O. niloticus in lakes with (Nabugabo, Victoria) and without (Mburo, Wamala, Nyamusingiri, Kyasanduka) introduced Nile perch. In Lake Nabugabo, a higher level of phytoplanktivory was observed in small juveniles than in larger fish and in wetland ecotone areas where haplochromines were most abundant. An omnivorous diet dominated by detritus and invertebrates was recorded for O. niloticus in lakes Nabugabo and Victoria, while a predominantly herbivorous diet was characteristic of O. niloticus in lakes without Nile perch. Availability of a broad food base in lakes where inshore insectivores have been reduced may explain the increased omnivory recorded in lakes Nabugabo and Victoria.  相似文献   

15.
An electrophoretic analysis of six populations of Oreochromis mossambicus (Peters) and four populations of O. niloticus (L.) from several rivers and a fish hatchery in Sri Lanka was conducted to determine the degree of mixing within and between stocks. Genetic characterization of the O. mossambicus stocks showed that some degree of mixing with O. niloticus occurred in all but two of the populations examined, while in the case of the O. niloticus, all the populations had some degree of mixing of O. mossambicus alleles. Genetic identity calculated using Nei's coefficient gave values ranging from 0.9484 to 0.9895 for O. niloticus populations and 1.0 to 0.9940 for O. mossambicus populations, while interspecies comparisons ranged from 0.7531 to 0.9002. The implications of these results for fisheries management and aquaculture are discussed.  相似文献   

16.
Abstract. The comparative growth performance of the juveniles of six pure tilapia species, Oreochromis mossambicus , O. spilurus , O. macrochir , O. aureus , O. niloticus and Sarotherodon galilaeus were assessed under standardized conditions in a recirculated water system. The effects of standardized treatments of 17α methyltestosterone and 17β estradiol were assessed by comparison with untreated controls of O. niloticus , O. mossambicus and O. aureus and the growth performance of nine interspecific hybrids in comparison to their parental species were studied.
The results showed significant differences in growth rate for the strains of the pure species under the conditions used. Standardized hormone treatment had significant effects on sex ratios and growth performance of all the species studied but did not change their overall performance ranking when compared to the pure species. No hybrid performed significantly better than the best parent for SGR although O. aureus × O. niloticus hybrid was significantly better than O. niloticus when corrected weight gain was used. This work shows that species choice hormone treatment and hybridization have implications for tilapia culture.  相似文献   

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