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大菱鲆(Scophthalmus maximus)大规模家系选育优良家系的生长发育规律
王新安,马爱军,黄智慧,刘庆明,郭 黎,杨 志,曲江波
1.中国水产科学研究院黄海水产研究所 农业部海洋渔业资源可持续利用重点开放实验室 青岛市海水鱼类种子工程与生物技术重点实验室;2.烟台市开发区天源水产有限公司
摘要:
运用 Logistic、Gompertz 和 von Bertalanffy 3 种生长模型分别对大菱鲆的 5 个优良家系E1×E♀2 、F4×N♀3、F2×E♀4、E2×F♀1、F1×F♀4 及对照组群体的生长曲线进行了拟合和比较分析。结果表明, 家系 E1×E♀2、F2×E♀4 和 E2×F♀1 的最优拟合模型为 Gompertz模型, 家系 F4×N♀3 和 F1×F♀4 的最优拟合模型为 von Bertalanffy 模型, 而对照组则更适应于Logistic 模型拟合其生长曲线。不同月龄家系的瞬时生长率均高于对照组, 大多数相对生长率高于对照组, 拐点月龄均较对照组拖后, 拐点体重均高于对照组, 快速生长区间的始速点均比对照组提前, 快速生长区间长度均大于对照组。瞬时生长加速率在不同月龄则存在较大变化。
关键词:  大菱鲆, 家系, 生长, 模型
DOI:10.11693/hyhz201102016016
分类号:
基金项目:现代农业产业技术体系建设专项资金资助, CARS-50 号; 国家支撑计划专题, 2006BAD01A12012 号; 农业公益性行业科研专项经费项目, nyhyzx07-046 号; 中国水产科学研究院黄海水产研究所基本科研业务费项目, 2009-ts-11 号
GROWTH PATTERNS OF SELECTIVELY BRED TURBOT SCOPHTHALMUS MAXIMUS
WANG Xin-An1,2,3, MA Ai-Jun1,2,3, HUANG Zhi-Hui1,2,3, LIU Qing-Ming1,2,3, GUO Li1,2,3, YANG Zhi4, QU Jiang-Bo4
1.Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences;2.Key Laboratory for Sustainable Utilization of Marine Fisheries Resources, Ministry of Agriculture;3.Qingdao Key Laboratory for Marine Fish Breeding and Biotechnology;4.Yantai Tianyuan Aquatic Limited Corporation
Abstract:
The growth curves of five families and one control group of turbot (Scophthalmus maximus) were fitted using three types of nonlinear growth models (Logistic, Gompertz, von Bertalanffy). The results showed that the growth curves can be fitted with all three models (R2> 0.98); however, the best model that fitted the growth curve of each family as well as the control group was different. The Gompertz model resulted in the best fit for the families E1×E♀2, F2×E♀4 and E2×F♀1; the von Bertalanffy model fitted the growth curves of the families F4×N♀3 and F1×F♀4 well; while the Logistic model produced the best fit for the control group. When analyzing the fitting parameters of the best models, we found that the parameters including instantaneous growth rate, growth acceleration rate, relative growth rate, time to reach respective inflection point, body weight at the inflection point, maximum monthly weight gain, and fast-growing period for each of these five families and the control group were all different. Furthermore, all five families all showed higher instantaneous growth rates, delayed inflection points, higher body weights at the inflection point, earlier onset of fast-growing period, longer fast-growing intervals than those of the control group. Finally, almost all relative growth rates of these families were higher than that of the control group; however, growth acceleration rates had large variations among these five families. Our results indicated that the growth patterns of these families and the control group were different.
Key words:  Turbot Scophthalmus maximus, Family, Growth, Model
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