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81.
为探明钝缀锦蛤的摄食生理,以北海近海人工中间培育和养殖的钝缀锦蛤为试验材料,室内条件下采用试验生态法研究温度、盐度和体质量对钝缀锦蛤滤食率与同化率的影响。试验结果表明,在温度17~33℃条件下,滤食率随温度的升高,呈先升后降的趋势,滤食率(y)与水温(x)之间的回归方程为y=-4.338×10-3 x^3+0.311x2-6.915x+49(r2=0.999),同化率随着温度的升高而增大,温度对同化率的影响显著(P<0.01);在盐度18~33条件下,滤食率随盐度的升高呈先增后降的趋势,盐度27~30时保持较高的滤食率,滤食率(y)与盐度(x)之间的回归方程为y=-0.027x^2+1.638x-19.52(r^2=0.994),同化率随盐度的升高而增大,盐度为30时同化率最高,盐度对同化率的影响显著(P<0.01);滤食率随体质量增加而降低,体质量对同化率影响不显著(P>0.05)。研究表明,钝缀锦蛤属典型热带和亚热带种群品种,适宜生活在温度和盐度较稳定的潮下带区域,非广温广盐性贝类。  相似文献   
82.
ABSTRACT:   Compensatory growth, feeding rate, feed efficiency and chemical composition of juvenile black rockfish (mean weight 1.43 g) were investigated for 35 days after a 14-day feed deprivation treatment under four feeding conditions: one group continuously fed (control) and the other three groups fasted for 5 days (F5), 10 days (F10) and 14 days (F14). All fasted fish were re-fed from day 15. Only F5 achieved the same body weight as the control, indicating that complete compensation occurred in F5. The specific growth rate (SGR) of F5 was the highest at day 21 and then decreased thereafter, showing higher values than the control at days 21, 28 and 42. In contrast, although SGRs of F10 and F14 were higher than that of the control during the whole refeeding period except day 21, they did not catch up the control in body mass, indicating that only partial compensation occurred in F10 and F14. The feeding rate (FR) of all groups except F14 changed in a pattern similar to SGR (Spearman's rank correlation, r s > 0.9), suggesting that SGR varied depending on FR. Similar feeding efficiencies (FEs) were found in the four groups and they did not vary significantly during the whole refeeding period, suggesting that FE was not the factor affecting SGR. At day 14, the ratios of lipid to lean body mass in F10 and F14 were lower than those in the control and F5, and there was no difference between the control and F5. At day 49, however, only F14 showed a lower value than the other three groups, and there was no difference among the three groups. These results indicate that juvenile black rockfish fasted for 5–14 days can exhibit compensatory growth after refeeding, but timing and degree vary depending on the duration of feed deprivation.  相似文献   
83.
虾夷扇贝体形性状对软体重和闭壳肌重的影响效果分析   总被引:4,自引:3,他引:4  
利用虾夷扇贝表型性状资料,分析性状间的相关关系及其相关程度,建立相应的回归方程,为扇贝的选择育种奠定基础。试验随机抽取126只体形规则的3龄大连獐子岛海区底播增殖的虾夷扇贝,其中雌雄各63只,测定其壳长(X1)、壳高(X2)、壳宽(X3)、活体重(Y)、软体重(Z)和闭壳肌重(W),分别计算相关系数,采用通径分析方法计算了以体形性状为自变量对软体重和闭壳肌重作依变量的通径系数、决定系数及相关指数,定量的分析了体形性状对虾夷扇贝解剖性状的影响。结果表明虾夷扇贝壳长、壳宽、壳高与活体重、软体重和闭壳肌重的相关系数均达到极显著水平(P<0.01);壳高、壳宽是影响雌性软体重的主要因素,壳长、壳宽是影响雄性软体重的主要因素,而混合组受3个壳尺性状的共同影响;影响虾夷扇贝闭壳肌重的主要因素是壳宽,壳长、壳高的作用不显著;决定系数分析结果与通径分析结果有一致的变化趋势;多元回归分析,剔除不显著因子,建立了壳长、壳高、壳宽对软体重、闭壳肌重的回归方程:1). 雌性 Z= -128.573 +1.355X2 +1.407 X3;W= -8.216 +0.869X3;2). 雄性 Z =138.493+1.082 X1+2.524 X3;W= -11.855 + 0.955 X3;3). 混合 Z = -133.939 +0.606 X1+0.679X2 + 1.709X3;W= -9.525+ 0.896 X3。通过性状间的相关分析对两性状间的关系进行明确的定量,有利于制定合理的多性状选择方案,为虾夷扇贝选育提供理想的测度指标。  相似文献   
84.
工厂化养殖仿刺参营养品质分析与评价   总被引:1,自引:0,他引:1  
为了更好地了解工厂化养殖仿刺参的营养成分和品质,本研究采用国标等方法,分别对工厂化养殖、池塘养殖、底播自然生长和海捕野生仿刺参的各项营养成分进行了分析和评价。结果显示,工厂化养殖仿刺参出皮率为62.7%~65.8%,煮后出皮率为24.8%~31.1%,显著高于其他来源仿刺参。工厂化养殖仿刺参的必需氨基酸/非必需氨基酸为0.46~0.50,氨基酸营养价值平均得分为87.89~90.42,均高于其他来源仿刺参,说明其氨基酸营养价值水平较高。在其他营养成分方面,工厂化养殖仿刺参与池塘养殖仿刺参较为相近。自然环境生长仿刺参由于摄食来源广泛、生长周期较长,其蛋白质与脂肪水平普遍高于其他来源仿刺参。综合分析认为,工厂化养殖仿刺参的营养价值与池塘养殖仿刺参相近,在出皮率和氨基酸营养水平上优于池塘养殖和自然环境生长仿刺参,说明工厂化养殖仿刺参具有较好的品质和营养价值。  相似文献   
85.
The effects of cytokinins, carbohydrate sources and cold pretreatment on the conversion of protocorm-like bodies (PLBs) to shoots were investigated for the enhancement of micropropagation of Dendrobium huoshanense C.Z. Tang et S.J. Cheng, an endangered medicinal plant in China. The effects of cytokinins and carbohydrate sources on the conversion of PLBs to shoots depended on their types and concentrations. The best results in terms of shoot development from PLBs occurred on 1/2 MS medium supplemented with 20 μM kinetin and 10 g l−1 maltose. Cold pretreatment at 10 °C for 1–2 weeks significantly enhanced the conversion of PLBs to shoots, and over 1300 shoots were obtained from one gram of PLBs after 3 months of culture. The developed shoots were rooted on growth regulator-free MS medium supplemented with 8 g/l banana paste to give complete plantlets, which were successfully acclimatized with a survival rate of approximately 65%. The results indicate that a suitable cold pretreatment (10 °C for 1 week) followed by the use of 20 μM kinetin and 10 g/l maltose in 1/2 MS medium would produce a large number of shoots from PLBs for plantlet regeneration of D. huoshanense.  相似文献   
86.
送春与多花兰杂种的非共生萌发与快速繁殖   总被引:3,自引:0,他引:3  
用地生兰送春和附生兰多花兰进行种间杂交,对杂交种子进行非共生萌发和快速繁殖研究.结果表明:胚龄7个月、0.1 mol/L KOH处理10 min的种子萌发率最高;种子萌发后原球茎的增殖以Z4 (KC+BA 0.4 mg/L+NAA 0.6 mg/L+KT 0.2 mg/L ) 培养基为最好,增殖系数可达到12.8;在原球茎增殖和分化成苗过程中加入活性碳能够有效地防止切口褐化.  相似文献   
87.
试验结果表明,温度和规格对硬壳蛤同化率的影响不显著(P>0.05);饵料种类对硬壳蛤同化率影响显著(P<0.05).其中小球藻和湛江等鞭金藻的同化率显著高于小新月菱形藻(P<0.05),而小新月菱形藻又显著高于扁藻(P<0.05).  相似文献   
88.
Effects of dietary l ‐carnitine were studied in juvenile black sea bream (Sparus macrocephalus). The semipurified basal diet [crude protein 450 g kg?1 dry matter (DM); crude lipid 126 g kg?1 DM] was formulated to choose white fishmeal as the protein source and fish oil plus corn oil (1 : 1) as the lipid source. Six diets (control + diets 1–5) containing 0.1, 0.12, 0.16, 0.24, 0.39 and 1.1 g of l ‐carnitine kg?1 diet were fed to triplicate groups of black sea bream (initial weight 13.10 ± 0.05 g) for 8 weeks. At the end of the feeding trial, growth performance, body composition and antioxidant status were determined. The results showed that relative growth rate (RGR) was significantly improved by the elevation of dietary l ‐carnitine level from 0.1 to 0.24 g kg?1, but decreased with further increment (P < 0.05). Lipid content decreased significantly (P < 0.05) in the dorsal muscle whereas increased (P < 0.05) in the liver with the addition of dietary l ‐carnitine. Dietary l ‐carnitine supplements elevated enzymatic antioxidants (superoxide dismutase, SOD; catalase, CAT; glutathione‐S‐transferase, GST) activities (P < 0.05) yet decreased the content of non‐enzymatic factor, total sulphydryl groups (TSH) (P < 0.05). In summary, the optimum dietary l ‐carnitine level was 0.284 g kg?1 diet by second‐polynomial regression analysis based on RGR (y = ?647.4x2 +367.97x + 234.55; R2 = 0.977, x = dietary l ‐carnitine levels, y = RGR), and dietary l ‐carnitine addition within the levels adopted in our study could depress lipid peroxidation in tissues of juvenile black sea bream.  相似文献   
89.
A 10‐week feeding experiment was conducted to evaluate the effect of different protein to energy ratios on growth and body composition of juvenile Litopenaeus vannamei (initial average weight of 0.09 ± 0.002 g, mean ± SE). Twelve practical test diets were formulated to contain four protein levels (300, 340, 380 and 420 g kg?1) and three lipid levels (50, 75 and 100 g kg?1). Each diet was randomly fed to triplicate groups of 30 shrimps per tank (260 L). The water temperature was 28.5 ± 2 °C and the salinity was 28 ± 1 g L?1 during the experimental period. The results showed that the growth was significantly (P < 0.05) affected by dietary treatments. Shrimps fed the diets containing 300 g kg?1 protein showed the poorest growth. However, shrimp fed the 75 g kg?1 lipid diets had only slightly higher growth than that fed 50 g kg?1 lipid diets at the same dietary protein level, and even a little decline in growth with the further increase of dietary lipid to 100 g kg?1. Shrimp fed the diet with 420 g kg?1protein and 75 g kg?1 lipid had the highest specific growth rate. However, shrimp fed the diet with 340 g kg?1 protein and 75 g kg?1 lipid showed comparable growth, and had the highest protein efficiency ratio, energy retention and feed efficiency ratio among dietary treatments. Triglycerides and total cholesterol in the serum of shrimp increased with increasing dietary lipid level at the same dietary protein level. Body lipid and energy increased with increasing dietary lipid level irrespective of dietary protein. Results of the present study showed that the diet containing 340 g kg?1 protein and 75 g kg?1 lipid with digestible protein/digestible energy of 21.1 mg kJ?1 is optimum for L. vannamei, and the increase of dietary lipid level has not efficient protein‐sparing effect.  相似文献   
90.
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