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1.
Although abalone fisheries in South Africa have existed since 1949, cultivation started by successful spawning of captured specimens in 1981 to produce spat and juveniles. Twelve abalone farms, with an estimated investment of US$12 million, have since been established on the coast of South Africa, with a projected production of 500–800 tons. While Haliotis midae could reach a maximum size of about 200 mm shell length at an age of over 30 years in the wild, farm production is concentrating on an average size of 100 mm after 5 years. Growth rates of 0.08–4.5% body weight day ?1 for abalone of 10–17 mm shell length have been found under stimulated farming conditions on formulated diets, while the corresponding feed conversion ratio (FCR) was 0.9–2.4. Growth rate, FCR and protein efficiency ratio decline at water temperatures above 20 °C. Anaesthetics, for example magnesium sulphate, are used to prevent injury during removal from tanks. Prostrate diatoms, such as Cocconeis sublittoralis (Hendey), Amphora proteoides (Hustedt) and Achnanthes brevipes (Agardh) are preferred after the larval stage (5–7 days, depending on temperature) are finished. South Africa abalone growers prefer formulated feeds in pellet form, which is convenience and cost favourable to farm operations and management. Although fish meal has been found to be the most suitable protein source for inclusion in formulated diets, plant proteins such as soy bean meal, cottonseed meal and sunflower meal presented good growth and apparent protein digestibility. The parasite sabellid polychaete, Terebrasabella heterouncinata, recently named by Australian and American researchers, is indigenous to a variety of South African intertidal molluscs and impedes growth by causing irritation beneath the mantle in abalone. Prevention to some degree is possible by high standards of hygiene and husbandry of abalone in the tanks, but new techniques to control large infestations now include ultrasound. In spite of a reputation for toughness, abalone meat frozen immediately after shucking is tender relative to red meat. The success of abalone farming in South Africa has been as a result of a high degree of cooperation between the private sector and government‐backed research institutions, and it is anticipated that this collaboration will continue.  相似文献   
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皱纹盘鲍内脏酶的酶学性质及褐藻胶裂解酶的分离纯化   总被引:6,自引:0,他引:6  
采用(NH4)2SO4分段盐析、透析、阴离子(DEAE-52)交换柱层析、SephadexG-200凝胶柱层析等分离纯化技术,通过SDS-PAGE电泳分析了皱纹盘鲍内脏酶的组成,结果表明鲍内脏酶主要含有两种褐藻胶裂解酶Ⅰ, Ⅱ,一种纤维素酶,一种琼脂酶。对酶的酶学性质分析结果表明两种褐藻胶裂解酶Ⅰ, Ⅱ的最适pH分别为8.6, 7.2,最适温度为35 ℃,分子量分别为35.2 ku, 67 ku;两种褐藻胶裂解酶的热稳定性比较差,且易受金属离子影响;纤维素酶的最适pH为5.0,最适温度为40 ℃。并确定了皱纹盘鲍内脏酶分离纯化的方法及参数,为进一步研究鲍内脏复合酶的性能提供了基础参数。图14表3参12 关键词:皱纹盘鲍; 褐藻胶裂解酶; 纤维素酶; 纯化 E-mail:wqk320@dlfu.edu.cn  相似文献   
4.
  • 1. Loop models of ecological and socio‐economic systems were developed to analyse and predict the impact of a possible accidental introduction (escapes) of the abalone Haliotis discus hannai into a benthic community of north‐central Chile.
  • 2. Although the ‘new’ ecological system resulting from a successful invasion of abalone would be locally stable, the establishment of a self‐enhanced dynamic of recruits would transform this into an unstable system.
  • 3. The harvest of the kelp, Lessonia trabeculata and other macroalgae is not recommended because this destabilizes the system. The harvest of abalone adults is only sustainable if they do not exert a negative effect upon other native invertebrates.
  • 4. The eco‐social model showed three important results: (1) if the variables ‘Price’ and ‘Farming’ are in expansion and stationary dynamics, then the models were found unstable; (2) a self‐enhanced dynamic of abalone recruits tends toward instability; and (3) the harvest of the kelp L. trabeculata and other macroalgae would be non‐sustainable.
  • 5. Based on our results, the sustainable development of extensive farming of H. discus hannai in the sea would be not reached. If it is done, an intensive monitoring of the community after introduction into the system is strongly recommended. Likewise, the farming of macroalgal species (source of food for abalone) should be promoted in order to avoid harvesting of macroalgae from natural systems.
Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   
5.
皱纹盘鲍食道的结构与功能   总被引:3,自引:0,他引:3  
崔龙波 《水产学报》2002,26(1):7-14
以组织学,组织化学,扫描电镜和透射电镜观察及酶活性测定等方法研究了皱纹盘鲍的食道,食道可分为前,中后,三段,中段又可分为食物通道和食道侧囊,食道粘膜上皮由纤毛柱状细胞,粘液细胞,闰状腺细胞,微绒毛细胞和分泌细胞组成,纤毛柱状细胞参与运输食物和分泌物,并呈现吸收细胞的结构特征;粘液细胞分泌中性和酸性粘多糖;颗粒状腺细胞内充盈分泌颗粒;微绒毛细胞呈现吸收细胞的特征;分泌细胞具有强的蛋白酶等酶活性,能以楔浆分泌形式分泌消化酶,该细胞还具有吸收和细胞内消化作用。食道中段还呈现3种植物多糖酶活性。  相似文献   
6.
皱纹盘鲍(Haliotis discus)脓疱病的研究   总被引:19,自引:0,他引:19  
1993年夏季,大连水产养殖公司槽式养殖的鲍(Haliotis)发生脓疱病,死亡率高达50-60%,经分离纯化得9301和9302二个菌株,镜检结果表明,两个菌株均匀极生单鞭毛的革兰氏阴性短杆形细菌。在人工感染试验中,健康鲍足肌分别注射两个菌株的菌液,感染率均高达100%,病症与自然发病的安全相同,因此,证明9301和9302菌株即为脓疱病的病原菌,药敏试验表明,两个菌株对氯霉素,复方新诺明高度敏  相似文献   
7.
杂色鲍与盘鲍种间杂交受精率的影响因素   总被引:4,自引:0,他引:4       下载免费PDF全文
研究卵子排放后的时间、精子排放后的时间、授精精子浓度、胰蛋白酶、钙离子、pH和水温等因子对杂色鲍(Haiotisdiversicolor,以下简称S)与盘鲍(H.discus discu,以下简称J)种间杂交受精率的影响。结果表明,卵子排放后的时间和授精精子浓度是影响杂交受精率两个最重要的因素。与自繁组合相比,正反杂交受精率均较低且下降速度快得多。水温21.5℃时,两亲本自繁对照组中,卵子排放1 h对受精率均无显著影响。而SJ杂交,卵子排放时间2 min时,受精率为55.9%±8.1%,4.7 min时受精率已下降了50%;JS杂交,卵子排放时间为4 min时,受精率为31.5%±9.7%,10 min时受精率下降至4 min时的29.1%。相比之下,精子排放时间对杂交受精率的影响小得多,3 h内对正反交杂交受精率没有显著影响。杂交适宜精子浓度约为母本自繁的100倍,其中SJ杂交适宜授精精子浓度为6.0×106~2.4×107mL-1,JS杂交适宜授精精子浓度为3.8×107~7.5×107mL-1。水温对于杂交受精率也有影响,短时间内将水温控制在26~29℃可以得到较高受精率。其他实验因素,如添加胰蛋白酶、Ca2+或改变授精体系pH对杂交受精率均无正向作用。  相似文献   
8.
杂色鲍与九孔鲍种质资源研究进展   总被引:5,自引:0,他引:5  
苏天凤 《南方水产》2006,2(2):64-67
杂色鲍和九孔鲍是我国南方鲍养殖业的主要对象,九孔鲍与杂色鲍的分类关系,学术界一直存在着不同看法。文章综述了我国杂色鲍和九孔鲍在形态学、染色体核型、生化遗传学及分子遗传学方面种质研究的主要进展,得出二者间差异属于种群差异,台湾的九孔鲍和大陆的杂色鲍的种质差异达不到亚种水平的结论。提出了自己的观点,并提出了合理引种及保护原种的建议。  相似文献   
9.
Three terrestrial leaf meals, Carica papaya, Leucaena leucocephala, Moringa oliefera and a freshwater aquatic fern, Azolla pinnata were evaluated as potential ingredients for farmed abalone diet. All diets were formulated to contain 27% crude protein, 13% of which was contributed by the various leaf meals. Fresh seaweed Gracilariopsis bailinae served as the control feed. Juvenile Haliotis asinina (mean body weight=13.4±1.6 g, mean shell length= 38.8±1.4 mm) were fed the diets at 2–3% of the body weight day–1. Seaweed was given at 30% of body weight day–1. After 120 days of feeding, abalone fed M. oliefera, A. pinnata‐based diets, and fresh G. bailinae had significantly higher (P<0.01) specific growth rates (SGR%) than abalone fed the L. leucocephala‐based diet. Abalone fed the M. oliefera‐based diet had a better growth rate in terms of shell length (P<0.05) compared with those fed the L. leucocephala‐based diet but not with those in other treatments. Furthermore, protein productive value (PPV) of H. asinina was significantly higher when fed the M. oliefera‐based diet compared with all other treatments (P<0.002). Survival was generally high (80–100%) with no significant differences among treatments. Abalone fed the M. oliefera‐based diet showed significantly higher carcass protein (70% dry weight) and lipid (5%) than the other treatments. Moringa oliefera leaf meal and freshwater aquatic fern (A. pinnata) are promising alternative feed ingredients for practical diet for farmed abalone as these are locally available year‐round in the Philippines.  相似文献   
10.
Optimal conditions of 6‐dimethylaminopurine (6‐DMAP) for triploidy induction in the blacklip abalone Haliotis rubra (Leach, 1814) were investigated, targeting inhibition of second polar body (PB2) formation. Two experiments were conducted at a water temperature of 17.5–18.5°C where factorial combination of (1) four dosages (DSs) of 100, 150, 200 and 250 μM 6‐DMAP, four starting times (STs) of 15, 20, 25 and 30 min post fertilization, and two treatment durations (TDs) of 20 and 30 min and (2) three DSs of 50, 100 and 150 μM 6‐DMAP, three STs of 15, 20 and 25 min post fertilization, and three TDs of 10, 20 and 30 min, were applied respectively. Day 3 larvae were sampled for triploidy and survival. Percent triploidy was verified using flow cytometry (FCM). Results show that optimal inductions that combine both high rates of triploidy and reasonable survival were those treatments commenced 15 or 20 min post fertilization and continued for 20 or 30 min, using 100 μM 6‐DMAP. These conditions induced rates of triploidy and relative survival of 80.5–93.3% and 36.5–40.2%, respectively, in the first experiment, and corresponding rates were 79.1–93.6% and 20.7–43.0% in the second experiment. High percent triploidy were also obtained in a number of treatments using 150 μM 6‐DMAP, but with overall survival rates generally lower than those using 100 μM 6‐DMAP.  相似文献   
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