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中国农学通报 ›› 2026, Vol. 42 ›› Issue (18): 190-196.doi: 10.11924/j.issn.1000-6850.casb2026-0506

• 水产·渔业 • 上一篇    下一篇

高温胁迫对蟹塘主要水草生长的影响及模型初探

林阿朋1(), 吴芳2, 齐富刚1, 孙俊豪1, 王超男1, 岳盼盼1, 袁昌洪3()   

  1. 1 江苏农牧科技职业学院, 江苏泰州 225300
    2 兴化市气象局, 江苏兴化 225700
    3 泰州市气象局, 江苏泰州 225300
  • 收稿日期:2026-06-20 修回日期:2026-07-10 出版日期:2026-09-25 发布日期:2026-09-24
  • 通讯作者:
    袁昌洪,男,1971年出生,江苏姜堰人,正高级工程师,博士研究生,研究方向:应用气象服务技术。通信地址:225300 江苏省泰州市海陵南路299号 泰州市气象局,Tel:0523-86519550,E-mail:。
  • 作者简介:

    林阿朋,男,1980年出生,研究员,博士,主要从事水产养殖与应用气象方面的研究。通信地址:225300 江苏省泰州市海陵区凤凰东路8号 江苏农牧科技职业学院,Tel:0523-86356568,E-mail:。

  • 基金资助:
    泰州市科技支撑计划(现代农业)项目“河蟹养殖水草管护气象服务关键技术研究与应用”(TN202509); 江苏省气象局2026年北极阁基金项目“江苏省河蟹养殖气候适宜度研究与应用”(ZD202618)

Effects of High Temperature Stress on Growth of Main Aquatic Plants in Crab Ponds and Preliminary Study on Response Model

LIN Apeng1(), WU Fang2, QI Fugang1, SUN Junhao1, WANG Chaonan1, YUE Panpan1, YUAN Changhong3()   

  1. 1 Jiangsu Agri-animal Husbandry Vocational College, Taizhou, Jiangsu 225300
    2 Xinghua Meteorological Administration, Xinghua, Jiangsu 225700
    3 Taizhou Meteorological Administration, Taizhou, Jiangsu 225300
  • Received:2026-06-20 Revised:2026-07-10 Published:2026-09-25 Online:2026-09-24

摘要:

伊乐藻、苦草等沉水植物是中华绒螯蟹Eriocheir sinensis养殖池塘生态稳定和稳产优质的重要基础,高温天气频发背景下其退化问题日益突出。为明确高温胁迫对蟹塘主要水草生长及河蟹生产结果的影响,并构建响应模型。本研究基于2023—2025年泰州地区气象资料、产业信息、3家代表性水产药店保草类产品销售台账及36个代表性塘口连续3年调查数据,筛选7—8月平均气温、极端最高气温、≥35℃高温日数、最长连续高温天数、闷热夜日数、降水距平、日照时数和平均风速等指标,采用层次分析法构建高温热害指数(HMI),以6月水草覆盖率和8月水草衰退评分构建水草状况指数(WCI),并结合相关分析和多元线性回归建立“HMI—WCI—生产结果”链式响应模型。2023—2025年泰州地区高温胁迫总体呈“2023年最低、2024年最高、2025年次高”变化,其中2024年持续高温、闷热夜和少雨叠加,高温热害最严重。水草状况呈“2023年最优、2024年最差、2025年回升”的变化趋势,单位面积产量、平均规格和优质蟹比例与其变化基本一致。保草类产品销售额和咨询塘口数均与≥35℃高温日数、最长连续高温天数和闷热夜日数呈极显著正相关。8月水草衰退评分和高温期最大死蟹率均与单位面积产量、平均规格及优质蟹比例呈极显著负相关,其中水草衰退评分的影响强度更高。以8月水草衰退评分和高温期最大死蟹率为自变量构建的产量估算模型拟合较好(R2=0.580, P<0.001)。链式模型表明,高温热害增强导致水草状况指数下降,进而引起产量和规格降低,水草衰退是高温胁迫传导至生产结果的关键中间环节。研究结论指出,高温胁迫对泰州蟹塘养殖效益的影响具有明显链式传导特征,其中,最长连续高温天数是导致高温灾害的关键气象因子,8月水草衰退评分是制约养殖效益的核心生物学指标。研究结果可为河蟹养殖高温灾害预警、塘口管理优化和产量预判提供依据。

关键词: 泰州, 河蟹, 高温胁迫, 水草状况, 链式响应模型

Abstract:

Submerged macrophytes such as Elodea nuttallii and Vallisneria natans are essential for ecological stability and stable production in ponds used for the culture of the Chinese mitten crab (Eriocheir sinensis). Under increasingly frequent summer heat events, the decline of aquatic plants has become a major constraint on pond aquaculture. This study aimed to clarify the effects of high-temperature stress on the growth condition of dominant aquatic plants in crab ponds and on production performance, and to construct a response model linking climatic stress, aquatic plant condition, and production outcome. Based on meteorological data, industrial information, sales records of aquatic-plant protection products from three representative aquatic drugstores, and survey data from 36 representative crab ponds in Taizhou for three consecutive years during 2023-2025, eight heat-related indicators, including mean air temperature in July-August, extreme maximum temperature, number of days with temperature≥35℃, maximum consecutive high-temperature days, number of hot nights, precipitation anomaly, sunshine duration, and mean wind speed, were selected. The analytic hierarchy process was used to construct a high-temperature hazard index (HMI). An aquatic plant condition index (WCI) was established using June aquatic plant coverage and the August aquatic plant decline score. Correlation analysis and multiple linear regression were applied to develop a chain-response model of “HMI-WCI-production outcome”. High-temperature stress in Taizhou showed a clear interannual pattern, being lowest in 2023, highest in 2024, and second highest in 2025. The most severe heat damage occurred in 2024, when prolonged heat, frequent hot nights, and reduced precipitation occurred simultaneously. Aquatic plant condition showed the opposite trend, being best in 2023, worst in 2024, and partially recovering in 2025. Changes in yield, mean body size, and proportion of high-quality crabs were generally consistent with the variation in aquatic plant condition. Monthly sales of aquatic-plant protection products and the number of consulting ponds were both significantly positively correlated with the number of days with temperature≥35℃, maximum consecutive high-temperature days, and hot nights. The August aquatic plant decline score and the maximum crab mortality during the high-temperature period were significantly negatively correlated with yield, mean body size, and the proportion of high-quality crabs, with the decline score showing a stronger effect than mortality. The yield-estimation model established using the August aquatic plant decline score and maximum mortality rate showed good performance (R2=0.580, P<0.001). The chain-response model demonstrated that increasing high-temperature hazard reduced the aquatic plant condition index, which in turn led to declines in yield and body size. Aquatic plant decline was the key intermediate link through which heat stress affected production outcome. The effects of high-temperature stress on crab pond production in Taizhou showed a clear chain-response pattern. Maximum consecutive high-temperature days were the key meteorological hazard factors, and the August aquatic plant decline score was the core biological indicator restricting aquaculture benefit. These results provide a scientific basis for heat-disaster warning, pond management optimization, and yield prediction in Eriocheir sinensis culture.

Key words: Taizhou, Eriocheir sinensis, high temperature stress, aquatic plant condition, chain response model

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