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首页> 外文期刊>Aquatic Biology >Selective feeding on nutrient-rich particles by gizzard shad Dorosoma cepedianum does not involve mechanical sorting
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Selective feeding on nutrient-rich particles by gizzard shad Dorosoma cepedianum does not involve mechanical sorting

机译:g shaDorosoma cepedianum选择性饲喂富含营养的颗粒不涉及机械分选

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Previous field and laboratory studies have concluded that suspension-feeding detriti-vorous fish such as gizzard shad Dorosoma cepedianum selectively ingest nutrient-rich particles using either mechanical sorting within the oropharyngeal cavity or behavioral selectivity within the environment, but none have distinguished between these hypothesized selection mechanisms. To determine whether mechanical selectivity occurs within the oropharyngeal cavity, gizzard shad were fed particles of standardized size but different carbon and nitrogen content in homogeneous particle suspensions vs. non-homogeneous particle distributions. By comparing foregut and epibranchial organ contents with the particles available-in a homogeneous suspension, we demonstrated that the fish did not use mechanical selection for nutrient-rich particles. Previously published hypotheses for intraoral selection of nutrient-rich particles in gizzard shad using crossflow filtration or gustatory receptors were not supported. However, when particles with different nutrient content were allowed to settle in a heterogeneous distribution, the nutrients in the foregut and epibranchial organs were 1.5 times higher than those of particles in the water and 2.5 times higher than those of settled particles (p < 0.0001). As a test of one potential behavioral mechanism of particle selection, disturbance of the sediment-water interface resulted in significantly higher organic carbon (p = 0.01) and nitrogen (p = 0.001) within 1 to 2 cm of the bottom compared to the overlying water and the bottom sediment. Thus, future laboratory and field studies should focus on potential behavioral mechanisms of particle selectivity in detritivorous fish suspension feeding on non-homogeneous distributions of small particles (1 mm).
机译:先前的现场和实验室研究已经得出结论,使用口咽腔内的机械分选或环境中的行为选择性,以悬浮饲料喂食的粉状鱼(如g鱼头孢菌)选择性地摄取营养丰富的颗粒,但没有人区分这些假设的选择机制。为了确定在口咽腔内是否发生机械选择性,向izz提供了标准尺寸的颗粒,但均质颗粒悬浮液中的碳和氮含量与非均质颗粒分布不同。通过比较前肠和支气管器官内容物与均质悬浮液中可用的颗粒,我们证明了鱼没有对富含营养的颗粒使用机械选择。以前发表的关于使用错流过滤或味觉受体对g鱼d中富含营养的颗粒进行口内选择的假说不被支持。但是,当允许不同养分含量的颗粒以异质分布沉降时,前肠和支气管器官中的养分比水中颗粒的养分高1.5倍,比沉降颗粒的养分高2.5倍(p <0.0001) 。作为对一种潜在的颗粒选择行为机制的测试,与上覆水相比,沉积物-水界面的扰动导致底部1-2 cm内的有机碳(p = 0.01)和氮(p = 0.001)明显更高。和底部的沉积物。因此,未来的实验室和野外研究应集中于在有害鱼类悬浮液中颗粒选择性( 1 mm)的非均匀分布上潜在的颗粒选择性行为机制。

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