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1.
<正>针对中国对虾(Penaeus Chinesis)养殖池塘冬季闲置、利用率低的现状,我们结合中国对虾适合高温低盐环境,刺参(Apostichopus japonicus)适合低温高盐环境和主要摄食池塘底泥的生态习性,于2014年至2016年进行了海水池塘刺参与中国对虾轮养试验,在不影响中国对虾养殖生产的情况下,利用池塘闲置季节,采用适度集约化的网箱养殖模式增加一茬刺参养殖。通过对养殖池塘水质监测和浮游藻类调查以及刺参的苗种选  相似文献   

2.
杂交黄颡鱼是优质的养殖新品种,深受养殖户青睐,但由于该品种体小嫩弱、发病率高、成活率低,是制约发展的重要因素.2018年~2020年对杂交黄颡鱼池塘养殖关键技术进行了探索,通过分级养殖、池塘轮养和分批上市等措施,夏花成活率达70.8%,成鱼成活率达81.4%,亩均杂交黄颡鱼产量最高达2723.4 kg.  相似文献   

3.
正海水池塘鱼、虾、贝绿色生态养殖是指根据海水池塘不同生态位进行鱼、虾、贝多品种搭配混合养殖,以达到充分利用水域养殖生产潜力和生态防治病害的作用,实现海水池塘养殖综合效益的提高。现将海水池塘鱼、虾、贝生态养殖试验情况报告如下。一、材料与方法1.池塘条件试验池塘选择在玉环市珠港长  相似文献   

4.
<正>中国对虾和缢蛏都是优良的海水养殖品种,虾蛏混养是一种高产、高效的养殖技术,它通过生物间的相互作用,优化池塘条件,提高池塘养殖的经济效益。实行池塘虾蛏混养是当前海水养殖的一种重要养殖模式。我镇发展虾蛏混养已有多年的历史,但由于资金缺乏,技术水平较低,加上多年的养殖虾池老化,养殖成活率低,病害时有发生,致使部分养殖户减产亏损,制约了虾蛏混养的健康  相似文献   

5.
<正>近年来,罗氏沼虾与青虾轮养技术得到了越来越多养殖户的认可与运用。罗氏沼虾不耐低温,一般养殖至当年10月,即应起捕上市,此后至次年4月,养殖池处于空闲期,在此期间放养适温范围广、生长快的青虾可充分利用养殖池塘,显著提高经济效益。为了进一步增加养殖产量,提高养殖效益,笔者单位经过多年试验研究,探索出一种罗氏沼虾与青虾轮养的高效高产养殖模式,亩产罗氏沼虾300千克、青虾40千克,亩效  相似文献   

6.
刺参(Apostichopus japonicus Selenka)养殖投入大、效益高、见效快。近两年,城阳区大力推广海水池塘垒石养参技术,引导养殖户在红岛街道开发海水池塘垒石养参面积133余hm^2(2000余亩)。但是,由于其他地区海水池塘底质软,清池垒石难度大、成本高,已成为城阳区海水池塘海参养殖业发展的主要瓶颈。  相似文献   

7.
<正>天津地区拥有丰富的海淡水资源,具有较长的海淡水池塘水产养殖历史。据统计,2017年天津水产养殖面积为3.3万公顷。其中海水0.3万公顷,均为池塘养殖;淡水3万公顷,池塘养殖为2.7万公顷,兼有水库、河沟、稻田。养殖品种海水以南美白对虾为主,淡水则鱼、虾均有。这些养殖池塘的作业模式仍旧采用传统的养殖方式,以"进水+池塘养殖+直排"为主,养殖技术及养殖观念陈旧。在这种养殖模式下,养殖户为了  相似文献   

8.
正近年来,随着池塘租赁费、饲料、人工等养殖成本增加,不少养殖户一味追求高产、高效,不断增加虾蟹贝放养密度,超过了养殖水体的承载量,同时受气候多变、海洋环境污染等影响,导致虾、蟹、贝病害频发,低产、低效、甚至亏损呈加重趋势。如何探索海水池塘虾、蟹、贝稳产高效养殖技术,是当前海  相似文献   

9.
<正>为探索海水池塘养殖新模式,提高池塘综合利用率,河北省唐山市丰南区黑沿子镇养殖户通过多年的生产实践,总结出一种轮虫与南美白对虾综合养殖模式,在同一池塘内前期养殖轮虫,后期养殖南美白对虾,有效地提高了池塘养殖的综合效益。现将该模式的具体做法总结如下。1池塘准备1.1池塘条件轮虫与南美白对虾综合养殖对池塘的要求主要有三点:一是水深达到1 m以上,二是面积达到1.33hm2以上,过小的池塘水质不稳定,不利  相似文献   

10.
通过设置虾鹅轮养与罗氏沼虾单养对比试验,研究分析虾池种草养鹅对罗氏沼虾池塘水质、底质的影响,结果表明虾鹅轮养模武在罗氏沼虾养殖初期可以有效地降低水体的化学耗氧量、氨氦、总磷等富营养因子的水平,但随着养殖的深入,水中营养因子来源转为罗氏沼虾代谢废物和剩余残饵,对水质的改善作用就不再明显.而且,虾鹅轮养模式不影响虾塘养殖水体藻类组成,可以有效降低虾池底泥中有机质与全氮的含量,改善罗氏沼虾的养殖的池塘底质环境.  相似文献   

11.
An analysis of the food of 274 specimens of Tilapia aurea (Steindachner), which had been collected in Lake Kinneret, showed that this species is mainly a zooplankton consumer.A study of the quantitative dynamics of the food components in the course of a year has proved that the species in question feeds more intensely in spring, this being the time when zooplankton forms are more abundant in the water of the lake. Vegetable detritus, mixed with plankton and benthos forms, served as additional and alternative food.The lack of clearly positive degree of food component selectivity, as well as the low values of the intestine repletion index and of the condition coefficient, account for the slowness in growth of Tilapia aurea in Lake Kinneret.The low values of the growth and feeding indices are due, according to the authors, to the pressure brought to bear by the other local fish species, which are competitors for the same food.  相似文献   

12.
Analysis of the gut content of 329 specimens of T. zillii (Cichlidae) collected from Lake Kinneret, has shown great variation in the sorts of food.A study of seasonal dynamics has proved the prevalence in the food of Chironomida pupae (Diptera) in winter and spring and of zooplankton forms in summer and autumn. The additional food consisted of the various groups of algae, the most frequently found being Cyanophyta (100%) and Pyrrophyta (64.16%). An extremely voraceous species, it consumes — while searching for its preferred food — anything that comes its way in the water: algae, scraps of macrophytes, autochthonous and allochthonous insects, and forms of benthic origin, such as Nematoda, Ostracoda, Porifera and Chironomida (larvae).The satiation index is high (between 4.08 and 5.63), in contradiction to the low values of the coefficient of condition (between 3.05 and 3.51), and with the slow rate of growth in Lake Kinneret. The main food of Tilapia zillii, consists of arthropod species with a chitin content (which is eliminated unchanged) of more than 50% of the total weight, and this may account for the poor exploitation of the trophic base.This species of fish may be considered as being detrimental to others (i.e. commercially important species) because of its successful competition for food, and not, as is often incorrectly assumed, because it is an aggressive consumer of their spawn and fry.  相似文献   

13.
14.
不同品系尼罗罗非鱼致死低温的研究   总被引:25,自引:1,他引:25  
在室内自然降温条件下,研究了三个品系尼罗罗非鱼(吉富品系,“78”品系,“88”品系)对低温的耐受力,计算得出每个品系的半致死低温,并对降温过程中尼罗罗非鱼行为活动的变化进行了观察。试验结果表明,在上海地区,当温度降低到11℃时,罗非鱼开始死亡,到7.4℃时,全部死亡。吉富罗非鱼死亡温度范围是11℃ ̄8.4℃,“78”品系是9.8 ̄7.4℃,“88”品系是11℃ ̄7.4℃。对三个品系半致死低温的研  相似文献   

15.
The aims of this experiment were (1) toquantify the ability of grass carp to processduckweed and (2) to assess indirect changes inwater chemistry and phytoplankton community,caused by grass carp feeding. Yearling grass carp sized 126 ± 7.7 mm (TL) and19.6 g in weight were kept in 9 laminate tanksof 1 m3 for 14 days. Two stockingdensities (2 and 6 fish per m3) anda control without fish were used. Standard growthrate (SGR) of grass carp fed exclusively onduckweed was 0.70% body weight (BW) d–1and food conversion ratio (FCR) reached 2.0(average water temperature =21.1 ± 3.8 °C). Daily food intakewas 0.2 g of duckweed dry weight (DW), i.e.,1% of average BW of grass carp. SGR ofduckweed growing in 20 × 20 cm floatingenclosures, differed significantly[F(6,2) = 417.9; p = 0.002] between the twostocking densities of grass carp and thecontrol tanks (without fish). Mean SGR ofduckweed was 0.02 g g–1 day–1 and thehighest SGR was recorded in the control tanks.Both decrease in NH4-N and increase inNO2-N concentrations differedsignificantly between the treatments[F(2,2) = 45.3; p = 0.02 and F(2,2) = 19.2; p = 0.04 respectively]. Changes in other nitrogenand phosphorus components (NO3-N, TN, TPand PO4-P) caused by stocking of grasscarp were not significant. Biomass ofphytoplankton, dominated by filamentous algaeand blue-greens, increased proportionately tostocking density of grass carp. Althoughduckweed has a large potential for nutrientremoval, the most common pathway for thenutrients released through grass carp grazingif duckweed cover is loose is theirincorporation into phytoplankton biomass.  相似文献   

16.
叶尔羌高原鳅胚胎发育与胚后发育观察   总被引:1,自引:0,他引:1  
采用形态学和生态学方法,对叶尔羌高原鳅[Triplophysa(Hedinichthys)yarkandensis(Day)]胚胎发育和胚后发育阶段全过程进行观察、拍照并测量。结果显示:叶尔羌高原鳅,卵微黏性,略有沉性,受精卵呈卵圆形,卵径为(0.60±0.052)mm,在水温(20.0±1.0)℃下,历时65 h 34 min完成整个胚胎发育分为7个生理阶段过程;胚后发育主要根据卵黄囊、体色、鼓鳔和须的变化分为仔鱼期、稚鱼期、幼鱼期。初孵卵黄囊仔鱼全长(2.0±0.65)mm,出膜后7 d,卵黄囊吸收完毕,完全消失;初孵仔鱼继续培育至16日龄,仔鱼鳃盖后缘鼓鳔明显长出,须清晰可辨,体色加深,心脏红色素明显,体色与成体相似,标志后期仔鱼发育完全进入稚鱼期,此时鱼苗全长(8.0±0.45)mm;培育至30日龄,仔鱼鼓鳔完全,鳃盖张合明显,身体透明特征消失,稚鱼阶段完成发育进入幼鱼期,此时全长达(13.0±0.55)mm,其外部形态和生态习性均与成鱼相似。试验中,卵黄囊长度(LY)和出膜天数(D)的关系式:LY=0.0286D2–0.0636D+3.1196(R2=0.9050);用直线方程拟合卵黄囊长度(LY)和卵黄囊仔鱼全长(LT)的关系式:LY=–1.315LT+5.368(R2=0.8199);拟合卵黄囊仔鱼全长(LT)和出膜后仔稚鱼天数(D)的关系式:LT=–0.0263D2+0.5113D+1.6169(R2=0.9890)。本研究旨在通过了解叶尔羌高原鳅的早期发育特征为该物种的保护和增殖对策提供科学依据,并对其苗种生产提供理论指导。  相似文献   

17.
Daphnia lumholtzi (Sars) was found in Lake Kinneret until the late nineteen-fifties. Lake Kinneret was the northern-most limit of the distribution of this species. It is suggested that fingerlings of grey mullets and Sarotherodon aureus that were introduced into Lake Kinneret caused the extinction of D. lumholtzi.  相似文献   

18.
褐牙鲆(Paralichthys olivaceus)为东亚地区重要的海水养殖鱼类,在中国、日本和韩国海水养殖业中占有重要的地位.目前,褐牙鲆经过连续多代缺乏选择的人工繁育和养殖,造成养殖群体种质发生退化,生长速度和抗逆性下降,极大制约了牙鲆养殖业发展.以选育生长迅速、抗逆性强、饵料转化率高的牙鲆类养殖新品种为目的,作者对褐牙鲆(♀)×犬齿牙鲆(Paralichthys dentatus)(♂)的杂交育种进行了研究.本实验对褐牙鲆(♀)×犬齿牙鲆(♂)杂交F1及其亲本肌肉营养成分进行测定.结果显示,杂交F1含水率显著低于双亲(P<0.05),粗蛋白含量显著高于双亲(P<0.05),粗脂肪含量介于二者之间;杂交F1的氨基酸总量、必需氨基酸、非必需氨基酸、半必需氨基酸与鲜味氨基酸总量都显著高于褐牙鲆与犬齿牙鲆(P<0.05);脂肪酸含量方面,脂肪酸总量、不饱和脂肪酸总量3种鱼由高到低排列顺序为褐牙鲆、犬齿牙鲆、杂交F1,三者饱和脂肪酸总量差异不显著(P<0.05).对3种鱼肌肉的营养品质进行了评价,杂交F1的必需氨基酸指数EAAI(90.30)明显高于褐牙鲆(77.75)与犬齿牙鲆(79.34),在蛋白质品质上表现出一定杂种优势.上述结果表明,杂交F1的肌肉具有蛋白和氨基酸含量较高、脂肪酸含量较低的特点.  相似文献   

19.
In this study, the embryonic development of the eggs in the Mastacembelus mastacembelus (Bank & Solender, 1794) was examined. At the same time, possibilities of artificial breeding through artificial insemination were investigated. Artificial insemination was achieved by mixing the eggs of the mature female and sperm of the mature male samples caught with gill nets (22 × 22) in Ataturk Dam Lake in Turkey. To this end, first in a Petri dish (100 × 20), the testes were cut into small pieces with a lancet and the mixture of sperm–testes‐tissue was obtained. The fertilization rate of the eggs was found to be 80%. The diameter of the eggs ranged from 2.015to 1.147 mm. The perivitelline space formed 0.5 h after insemination. The first cleavage occurred at the animal pool 4 h after insemination. The oil droplets had fused to a single droplet 19 h after insemination. The blastoderm became an embryonic shield 30 h after insemination. The blastoderm covered almost half the egg 40 h after insemination and embryonic body was formed. The blastoderm covered almost the whole egg 50 h after insemination. Some somites were discernible 59 h after insemination. The embryonic body reached two‐third of the circumference of the egg 70 h after insemination. The tail bud began to separate from the yolk 77 h after insemination. A newly hatched larva was observed at 85 h after insemination.  相似文献   

20.
Dendronereis spp. (Peters) (Nereididae) is a common polychaete in shrimp ponds built on intertidal land and is natural food for shrimp in traditionally managed ponds in Indonesia. White spot syndrome virus (WSSV), an important viral pathogen of the shrimp, can replicate in this polychaete (Desrina et al. 2013); therefore, it is a potential propagative vector for virus transmission. The major aim of this study was to determine whether WSSV can be transmitted from naturally infected Dendronereis spp. to specific pathogen‐free (SPF) Pacific white shrimp Litopenaeus vannamei (Boone) through feeding. WSSV was detected in naturally infected Dendronereis spp. and Penaeus monodon Fabricius from a traditional shrimp pond, and the positive animals were used in the current experiment. WSSV‐infected Dendronereis spp. and P. monodon in a pond had a point prevalence of 90% and 80%, respectively, as measured by PCR. WSSV was detected in the head, gills, blood and mid‐body of Dendronereis spp. WSSV from naturally infected Dendronereis spp was transmitted to SPF L. vannamei and subsequently from this shrimp to new naïve‐SPF L. vannamei to cause transient infection. Our findings support the contention that Dendronereis spp, upon feeding, can be a source of WSSV infection of shrimp in ponds.  相似文献   

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