东平湖刀鲚生物学参数、单位补充量渔获量及产卵亲体量评估
CSTR:
作者:
作者单位:

作者简介:

丛旭日(1990-),男,助理研究员,研究方向为渔业生态和资源管理.E-mail:congxuri90@126.com

通讯作者:

中图分类号:

S931

基金项目:

山东省自然科学基金项目(ZR2020MC193); 农业农村部“黄河专项”课题(HHDC-2022-0403); 山东省黄河三角洲生态环境重点实验室开放基金资助项目(2021KFJJ03).


Estimation of biological parameters, yield per recruitment, and spawning stock biomass per recruitment of Coilia nasus in Dongping Lake
Author:
Affiliation:

Fund Project:

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 资源附件
  • |
  • 文章评论
    摘要:

    为完善东平湖刀鲚(Coilia nasus)的基础生物学数据, 并为实现其资源的可持续利用提供技术指导和理论依据, 本研究根据 2021—2023 年东平湖定置三层多目刺网调查获得的刀鲚体长、体重数据, 利用 ELEFAN_GA 技术对刀鲚的生长和死亡参数进行估算, 拟合 Von Bertalanffy (VBGF)生长方程, 构建了基于体长结构的单位补充量渔获量(YPR)和单位补充量产卵亲体量(SSBPR)模型。结果显示, 东平湖刀鲚体长范围为 4.9~26.2 cm, 平均体长为 (12.2±2.4) cm, 体重范围 1.1~51.8 g, 平均体重为(6.6±4.5) g; 使用基于 bootstrap 的 ELEFAN_GA 方法估算刀鲚渐进体长 L=31.65 cm, 生长速率 K=0.66, 理论生产起点年龄 t0= ‒0.23, 季节性生产振幅 C=0.65, 1 年中生产最快的时间段 ts=0.40; 刀鲚的总死亡系数 Z=2.71, 自然死亡系数 M=1.074, 捕捞死亡系数 F=1.641、开发率 E=0.604, 平均选择体长 L50=9.15 cm; YPR 模型结果显示, 随着 F 增大, YPR 值呈现先上升后下降的趋势, 生物学参考点 F0.1Fmax 的值分别为 0.978 和 2.204; SSBPR 模型结果显示随着捕捞强度的增大, SSBPR 呈下降趋势, 现阶段捕捞强度介于 F20%(2.848)与 F40%(1.065)之间, 略大于 F35%(1.286)。综上所述, 东平湖刀鲚生长表现出明显的季节性变化规律, 在与其他地理群体对比中, 东平湖刀鲚在生物学参数上的差异体现了其生长过程的空间异质性, K 值最大表明其可以用最短的时间生长到接近极限体长, 说明东平湖饵料丰富, 而同时较高的开发率和较低的开捕体长则表明目前东平湖刀鲚已处于过度开发状态, SSBPR 曲线得出现阶段捕捞强度小于极限值 F20%, 略大于生物学参考点 F35%。研究结果表明, 为使东平湖刀鲚资源达到生态、经济效益平衡, 可在适当减少渔船数量以降低捕捞强度的情况下, 通过增大网目尺寸以增加开捕体长来保持其可持续发展。

    Abstract:

    To provide technical guidance and a theoretical basis for the sustainable development of Coilia nasus resources in Dongping Lake, this study estimated the growth and death parameters of C. nasus using ELEFAN_GA technology and fitted the Von Bertalanffy (VBGF) growth equation based on the length and mass data of C. nasus obtained from a gillnet survey in Dongping Lake from 2021 to 2023. The yield per recruitment (YPR) and spawning stock biomass per recruitment (SSBPR) models based on body length structure were constructed to assess the resource dynamics and management strategy of C. nasus in Dongping Lake. The results show that the body length of C. nasus ranges from 4.9 to 26.2 cm, with an average body length of (12.2±2.4) cm. Meanwhile, the body weight ranged from 1.1 to 51.8 g, with an average weight of (6.6±4.5) g. The ELEFAN_GA method based on Bootstrap was used to estimate the parameters, and the result revealed that the growth parameters infinite length of C. nasus was 31.65 cm (L), with a growth parameter of 0.66 (K). Meanwhile, the theoretical starting age of growth (t0) was −0.23, with a growth amplitude of 0.65 (C), and the annual fastest growing time of 0.40 (ts). The total coefficient of mortality was 2.71 (Z), with the coefficient of natural mortality at 1.074 (M), and the coefficient of fishing mortality at 1.641 (F). The exploitation rate was determined to be 0.604 (E), and the optimum catchable size was 9.15 cm (L50). The results of the YPR model showed that with the increase of F, the YPR value first increased and then decreased, and the biological reference points F0.1 and Fmax were 0.978 and 2.204, respectively. The results of the SSBPR model show that with an increase in fishing intensity, the SSBPR shows a downward trend. The current fishing intensity was between F20% (2.848) and F40% (1.065), which was slightly greater than that of F35% (1.286). In conclusion, the growth of C. nasus in Dongping Lake shows obvious seasonal changes compared with other geographical populations, and the differences in the biological parameters of C. nasus in Dongping Lake reflect the spatial heterogeneity of its growth process. The maximum K value indicates that C. nasus in Dongping Lake can grow to an infinite length in the shortest time, indicating that Dongping Lake is rich in bait. However, the high exploitation rate and low optimum catchable size indicate that C. nasus in Dongping Lake is currently in an overexploited state. The SSBPR curve shows that the current fishing intensity is less than the limit value of F20% and slightly less than the biological reference point of F35%. The schedule of closed fishing season in Dongping Lake is from April 1st to August 31st each year. According to the fitting results for the growth parameters and SSBPR, a closed fishing season was relatively reasonable (only for C. nasus). To ensure the sustainable use and achieve a balance between ecological and economic benefits of C. nasus in Dongping Lake, maintaining the sustainable development of fishery resources can be achieved by increasing the mesh size and optimum catchable size while appropriately reducing the number of fishing vessels to alleviate fishing intensity.

    参考文献
    相似文献
    引证文献
引用本文

丛旭日,董贯仓,李秀启,王晴晴,冷春梅,高云芳,任一平.东平湖刀鲚生物学参数、单位补充量渔获量及产卵亲体量评估[J].中国水产科学,2023,30(10):1236-1245
CONG Xuri, DONG Guancang, LI Xiuqi, WANG Qingqing, LENG Chunmei, GAO Yunfang, REN Yiping. Estimation of biological parameters, yield per recruitment, and spawning stock biomass per recruitment of Coilia nasus in Dongping Lake[J]. Journal of Fishery Sciences of China,2023,30(10):1236-1245

复制
分享
文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2023-09-18
  • 最后修改日期:2023-10-31
  • 录用日期:
  • 在线发布日期: 2024-01-15
  • 出版日期:
文章二维码