Singkran Nuanchan, Bain Mark B
Pollution Control Department, Aquatic Ecology and Mathematical Modeling Center Water Quality Management Bureau, Bangkok, 10400, Thailand.
Water Sci Technol. 2008;58(11):2133-42. doi: 10.2166/wst.2008.827.
The spatially explicit abundance exchange model (AEM) was built for four fish species: winter flounder (Pseudopleuronectes americanus), Atlantic silverside (Menidia menidia), eastern silvery minnow (Hybognathus regius), and striped bass (Morone saxatilis) along the Hudson River estuary gradient, New York. The fish and habitat data during 1974-1997 were used to develop and calibrate the AEM; and the fish data during 1998-2001 was used to validate the model. Preference indexes of fish species for dissolved oxygen, salinity, water temperature, and bottom substrates along the gradient were estimated; and these were used to compute habitat preference (HP) of the associated fish species. The species HP was a key variable in the AEM to quantify abundance and distribution patterns of the associated species along the gradient. The AEM could efficiently predict abundance and distribution patterns of all modeled species except striped bass. The model ability for predicting a local distribution range of a fish species with broad tolerance on changing environment like striped bass should be improved.
针对纽约哈德逊河河口梯度带上的四种鱼类构建了空间明确的丰度交换模型(AEM),这四种鱼类分别是冬比目鱼(美洲拟庸鲽)、大西洋银汉鱼(梅氏银汉鱼)、东部银白米诺鱼(雷氏食蚊鱼)和条纹鲈(条纹石鲈)。利用1974 - 1997年期间的鱼类和栖息地数据来开发和校准AEM;并使用1998 - 2001年期间的鱼类数据来验证该模型。估算了鱼类物种对沿梯度变化的溶解氧、盐度、水温及底部基质的偏好指数;并将这些指数用于计算相关鱼类物种的栖息地偏好(HP)。物种HP是AEM中用于量化相关物种沿梯度的丰度和分布模式的关键变量。AEM能够有效地预测除条纹鲈之外的所有建模物种的丰度和分布模式。对于像条纹鲈这样对变化环境具有广泛耐受性的鱼类物种,预测其局半分布范围的模型能力还有待提高。