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1.
本文主要描述池塘养殖条件下鲥鱼幼鱼的生长与食性。1)1987-1989年8月至11月幼鱼生长迅速,快于同期珠江天然个体的生长速度;2)体长26.6-94.9mm的幼鱼主要摄食浮游动物,轮虫和浮游植物出现率随个体增大而减少。食物共有18个属种,摄食频度为100%;3)幼鱼的平均饱满指数为75.70‰。各类食物重量百分比的顺序为:桡足类>枝角类>无节幼体>虾类溞状幼体>轮虫>藻类。  相似文献   

2.
鲥鱼的驯养与生物学研究I.O^+龄幼鱼的生长与食性   总被引:2,自引:0,他引:2  
  相似文献   

3.
鲥鱼的驯养与生物学研究Ⅲ.1龄鲥鱼的驯养及其生长规律   总被引:6,自引:0,他引:6  
对池塘条件下 1龄鲥鱼不同方式的驯养试验表明 ,1龄鲥鱼生长较快 ,月均体长增加 1 8.1 9mm ,体重增加 2 4 .0 9g ;生长指标随季节和水温而变化 ,以初夏和秋末平均水温 2 9~ 30℃时生长较快 ;生长与池塘浮游生物量呈显著正相关 .1龄鲥鱼经 8个月套养 ,体重平均达 496.3g ;以施肥和投饲为主的精养试验 ,产量分别达 1 1 70和 1 0 87.5kg·hm- 2 ,个体均重达 2 0 3.3和 2 0 1 .3g .试验表明 ,鲥鱼池塘人工养殖是可行的  相似文献   

4.
研究了池养鲥鱼生长特征,结果表明,其生长速度随季节和水温而变化,以9月中旬至11月中旬和5月中旬至7月中旬生长较快,适宜生长水温为25-30℃。应用VonBertalanffy方程求得体长、体重生长方程Lt=518.95〔1-e^-0.3751(5-0.8763)〕,Wt=2205.5〔1-e^-0.3751(t-0.8763)〕^3,体重生长拐点位于2.8053处,属性成熟拐点,其生长速度和加速  相似文献   

5.
本文主要描述鲥鱼仔幼鱼阶段有关摄食、消化器官的发育、不同大小仔幼鱼食物组成特点、摄食量及其昼夜摄食节律。此外,还就仔幼鲥鱼人工饲养条件与天然状况下的生长作了比较。结果表明,只要供饵正常,孵化环道内生活的仔幼鲥生长速度可以略快于鄱阳湖同期天然生长个体的速度,为今后人工培育仔幼鲥进行放流和增殖提供资料。  相似文献   

6.
鲩鱼0^+龄幼鱼的生长与食性   总被引:5,自引:0,他引:5  
经测量和数理统计分析,确定幼鲩体长与年龄呈直线关系,体重与年龄为指数关系,并计算出它们相应的回归方程式。根据生长率的差异,0^ 龄幼鲩的生长过程可区分为两个阶段:快速生长阶段和缓慢生长阶段。两个阶段的分界线落在体长77亳米左右。幼鲩生长率的变异跟个体食性类型的改变有密切联系。计算结果幼鲩体长对体重关系为:W=0.00003186L^2.9303。食性分析表明,尚未长鳞的稚鱼为动物食性;长鳞后,幼鱼转为杂食性;体长大于72毫米的当年鱼变为草食性。又经肠长对体长关系的分析,确定适应草食性营养的幼鱼其最小体长为61毫米。  相似文献   

7.
鲥鱼仔幼鱼食性与生长的初步研究   总被引:11,自引:2,他引:11  
本文主要描述鲥鱼仔幼鱼阶段有关摄食、消化器官的发育、不同大小仔幼鱼食物组成特点、摄食量及其昼夜摄食节律。此外,还就仔幼鲥鱼人工饲养条件与天然状况下的生长作了比较。结果表明,只要供饵正常,孵化环道内生活的仔幼鲥生长速度可以略快于鄱阳湖同期天然生长个体的速度,为今后人工培育仔幼鲥进行放流和增殖提供资料。    相似文献   

8.
养殖鲥鱼性腺发育的研究   总被引:2,自引:0,他引:2  
经激素处理和生态调控的养殖鲥鱼,能完成性腺发育的全过程,其可分为6个时期,卵细胞发育可相应分为6个时相。与其它鱼类不同,细胞中液泡最早出现在胞质的内缘而不是外缘。大、小核仁数随卵母细胞的发育而变化。成熟卵巢成熟系数为854%~1264%。成熟期卵径为6285~8353μm、精子头径为074~155μm。达性成熟的鲥鱼,冬季卵巢为Ⅱ期、精巢为Ⅱ~Ⅲ期。精、卵巢发育呈现出明显的不同步现象。前者5月底开始进入成熟期,后者7月初进入成熟期。初级卵母细胞由Ⅱ时相发育到Ⅳ时相基本上是同步的。第Ⅳ期卵巢卵径的频率仅出现1个高峰。养殖鲥鱼属1年1次产卵类型。  相似文献   

9.
长江鲥鱼种群生长和繁殖特性的研究   总被引:3,自引:0,他引:3  
邱顺林  林康生 《动物学报》1989,35(4):399-408
本文研究了长江鲥鱼的生长参数和繁殖特性:(1)采用Von Bertalanffy生长方程计算长江鲥鱼的生长,求得渐近体长值L_∞()=58.12厘米,L_∞()=52.22厘米,渐近体重值W_∞()=2874.64克,W_∞()=1989.99克,生长拐点t=1.7年,t=1.3年。(2)长江鲥鱼主要集中在赣江产卵,产卵时的水温为24.2—33.5℃,流速为0.31—1.52米/秒。(3)分析和比较了长江鲥鱼不同年际间种群数量和繁殖群体结构的特点,指出性成熟年龄提前是鲥鱼资源衰退的主要标征。  相似文献   

10.
经测量和数理统计分析,确定幼鲩体长与年龄呈直线关系,体重与年龄为指数关系,并计算出它们相应的回归方程式。根据生长率的差异,0~ 龄幼鲩的生长过程可区分为两个阶段:快速生长阶段和缓慢生长阶段。两个阶段的分界线落在体长77毫米左右。幼鲩生长率的变异跟个体食性类型的改变有密切联系。计算结果幼鲩体长对体重关系为:W=0.00003186L~(2.9303)。食性分析表明,尚未长鳞的稚鱼为动物食性;长鳞后,幼鱼转为杂食性;体长大于72毫米的当年鱼变为草食性。又经肠长对体长关系的分析,确定适应草食性营养的幼鱼其最小体长为61毫米。  相似文献   

11.
长江口中华鲟幼鱼的食物组成及摄食习性   总被引:6,自引:0,他引:6  
分析了2004年5-9月长江口水域中华鲟幼鱼的食物组成及摄食的月份变化.结果表明:长江口中华鲟幼鱼以底栖小型鱼类、多毛类和端足类为主要食物,兼食虾类、蟹类及瓣鳃类等小型底栖动物.幼鱼的摄食率和摄食强度较高,且摄食强度存在着月份变化.主要饵料生物组成有明显的月变化,且食物个体有逐渐增大的趋势,其中5月主食多毛类和蟹类,6月主食鱼类和端足类,7月为鱼类和多毛类,8月样本较少且为空胃,9月为鱼类和虾类.与历史资料进行比较发现,曾是幼鱼重要饵料的鲬类所占比例极小,其质量百分比仅占1.81%;而以前未曾记录的虾虎鱼类在食物中所占比例较高, 其质量百分比达50.54%;等足类以前也未曾记录,其出现频率达10.07%.  相似文献   

12.
吐鲁番沙虎头、体大小的两性异形及其食性的季节性变化   总被引:1,自引:0,他引:1  
于2008年4月—2009年5月在新疆中国科学院吐鲁番沙漠植物园,捕获155号吐鲁番沙虎(Teratoscincus roborowskii)活体,对其两性异形和食性季节变化进行了研究,并收集单独暂养的吐鲁番沙虎粪便167份用于食性分析,同时测量各项形态学指标,切趾标记后放回原捕获地。结果表明:吐鲁番沙虎成体有两性异形,表现为雄性个体有较宽的头部,成体雌性具有较大的腋胯距;不同年龄组的两性个体头长和雄性个体的头宽随吻肛长都呈同速增长,只有雌性头宽的增长速率在个体发育过程中逐渐减小;吐鲁番沙虎摄入的动物性食物均为节肢动物,植物性食物为刺山柑果实。4—5月的生态位宽度为4.15,6—7月的生态位宽度为4.23,8—9月的生态位宽度为4.48。其中6—7月和8—9月的生态位重叠度最高。  相似文献   

13.
三角帆蚌食性及摄食率的初步研究   总被引:19,自引:0,他引:19  
三角帆蚌( Hyriopsis cumingii) 属滤食性双壳贝类, 通过滤水来摄食水中的浮游生物和有机碎屑等食物, 可使水质得到相应改善。作者在水库已连续多年开展了较大规模的三角帆蚌净水试验研究工作。    相似文献   

14.
为了了解保护区内外的白冠长尾雉繁殖生态,2014年3—7月在河南董寨国家级自然保护区和保护区外湖北平靖关村利用人工巢试验(以鸡蛋为诱饵)、红外相机技术和栖息地样方调查搜集巢捕食信息,对其巢捕食率、巢潜在捕食者和影响巢捕食的栖息地因子进行研究.两轮试验分别为繁殖期前期3—4月和繁殖期中期5—6月.试验共放置巢149个,其中红外相机监测62个,累计相机日1315个,拍摄照片7776张,视频6950个.结果表明: 保护区外(平靖关)巢捕食率高于保护区内(董寨),繁殖期前期和繁殖期中期保护区内外差异均极显著.平靖关捕食者种类数(11和6种)在繁殖期前期和中期均高于董寨(7和5种),平靖关捕食者比例较高的是啮齿类和鸦科鸟类,董寨捕食比例较高的是貉.平靖关坡度和乔木盖度对巢捕食影响显著,而董寨的落叶盖度对其影响显著.在红外监测的人工巢中共发现野生白冠长尾雉访问人工巢13巢18次.  相似文献   

15.
三角鲤的繁殖与生长特性   总被引:2,自引:0,他引:2  
对三角鲤的年龄与生长、食性和繁殖进行了研究。三角鲤体长和体重相关 ,关系方程式为W =0 0 1 1 3 71L3 3 2 44。 3 龄以前生长较快 ,生长指标高 ,体长和体重的瞬时生长率大。其生长规律符合VonBertalanffy方程 :Lt=5 7 2 5 [1 -e-0 11717(t 2 9614 7) ];Wt=6762 0 4[1 -e-0 11717(t 2 9614 7) ]3 。生长拐点tr=6 41龄。其食性是以底栖动物为主的杂食性鱼类。性成熟年龄雌鱼为 3 龄 ,雄鱼为 2 龄 ,相对繁殖力为 5 5~ 88粒 g体重。一年多次产卵 ,产卵盛期为 4~ 5月 ,胚胎发育所需积温约为 2 3 0 0℃·h。  相似文献   

16.
The reproductive biology and diet of prickly dogfish Oxynotus bruniensis, a deep‐sea elasmobranch, endemic to the outer continental and insular shelves of southern Australia and New Zealand, and caught as by‐catch in demersal fisheries, are described from specimens caught in New Zealand waters. A total of 53 specimens were obtained from research surveys and commercial fisheries, including juveniles and adults ranging in size from 33·5 to 75·6 cm total length (LT). Estimated size‐at‐maturity was 54·7 cm LT in males and 64·0 cm LT in females. Three gravid females (65·0, 67·5 and 71·2 cm LT) were observed, all with eight embryos. Size‐at‐birth was estimated to be 25–27 cm LT. Vitellogenesis was not concurrent with embryo development. Analysis of diet from stomach contents, including DNA identification of prey using the mitochondrial genes cox1 and nadh2, revealed that O. bruniensis preys exclusively on the egg capsules of holocephalans, potentially making it the only known elasmobranch with a diet reliant solely upon other chondrichthyans. Based on spatial overlap with deep‐sea fisheries, a highly specialized diet, and reproductive characteristics representative of a low productivity fish, the commercial fisheries by‐catch of O. bruniensis may put this species at relatively high risk of overfishing.  相似文献   

17.
Fish and macrobenthos were sampled in four different marshes along the salinity gradient of the Schelde estuary, Belgium/Netherlands, to investigate the importance of marsh creeks as foraging grounds for the dominant, larger fish species. The total density and biomass of all the main macrobenthic taxa (Corophium volutator, Nereis diversicolor, Oligochaeta, Macoma baltica and Heteromastus fliliformis) were measured. The feeding habits of the larger predatory fishes (Platichthys flesus, Dicentrarchus labrax) were investigated. Qualitative and quantitative stomach analyses included the calculation of different indices, showing the niche breadth (as diet diversity) and the niche overlap (as similarity between the predators diet) for this habitat. These analyses showed that the two most important benthic prey species for P. flesus were C. volutator and N. diversicolor. D. labrax preyed upon a wider range of species, including C. volutator, N. diversicolor, Crangon crangon, Carcinus maenas and Orchestia spp. The stomach diversity of D. labrax and P. flesus showed differences between the marshes although there was no consistent pattern in diet composition, reflecting the opportunistic nature of feeding by these large predators. The fullness indices of both flounder and sea bass did not differ significantly along the salinity gradient and the estimated minimum consumption by these predators did not indicate a top-down control of the macrobenthic community. The salt marsh creeks seem to provide excess food for the visiting fish species. The benthic prey was present in very high abundances, which may suggest that the typical nursery species such as C. crangon and C. maenas, and early juveniles of P. flesus, D. labrax and Pomatoschistus microps were not preyed upon significantly. This supports the hypothesis that salt marsh creeks provide good refuge areas for nursery species against predation by larger fish.  相似文献   

18.
The leeches Whitmania pigra and Hirudo nipponia live in similar environments but have different feeding habits. At present, there are few studies of the foraging mechanism of leeches with different feeding habits. In this study, we first used maze tests to show that these two species of leeches could locate and distinguish their prey through chemosensory activity without mechanical stimulation. However, the two leech species have different foraging behaviors: Individuals of W. pigra move slowly and repeatedly adjust direction through probing and crawling to detect the location of prey (snails), whereas individuals of H. nipponia move quickly, and after determining the location of food (porcine blood), they quickly swim or crawl to the vicinity of their prey. Scanning electron microscopy (SEM) revealed that there are two types of sensory cilia and pore structures related to mucus secretion in the heads of both leeches. There are two differently sized types of chemoreceptors on the dorsal lip in W. pigra, which may have different functions during foraging, whereas in H. nipponia there is only one type of chemoreceptor, which is small. We detected the chemical components in the natural food of these two leech species by UHPLC–MS. There were 934 metabolites in the body fluid of snails and 751 metabolites in porcine serum; five metabolites unique to the body fluid of snails and to porcine serum were screened as candidate feeding attractants. Of these metabolites, betaine and arginine effectively attracted individuals of W. pigra and H. nipponia, respectively. In summary, leeches with different feeding habits use chemoreceptors to sense external chemical signals when foraging, and there are significant differences between species in foraging behavior, chemoreceptors, and attractants.  相似文献   

19.
渤海南部牙鲆的食性及摄食的季节性变化   总被引:7,自引:1,他引:7  
1051尾渤海南部牙鲆的胃含物分析表明,渤海南部牙鲆为捕食性(游泳生物食性)鱼类,其食物成分有30余种,以底栖虾类中的口虾蛄、鲜明鼓虾、日本鼓虾、脊尾褐虾,软体动物的日本枪乌贼及鱼类中的斑(鱼祭)、鳀鱼、黄鲫、六丝矛尾虾虎鱼及焦氏舌鳎等动物为主要食物。牙鲆除冬季外,其余时间均强烈摄食,而且其摄食的季节性变化明显:春季以鱼类(重量占80.9%)及甲壳类(18.6%)为主要食物;夏季以鱼类(83.5%)及软体动物类(13.1%)为主要食物;秋季主要摄食鱼类(87.9%);冬季则主要摄食鱼类(73.2%)及甲壳类(19.7%)。  相似文献   

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