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Isotope niche dimension and trophic overlap between bigheaded carps and native filter-feeding fish in the lower Missouri River, USA

机译:美国密苏里河下游的big鱼和本地滤食鱼之间的同位素生态位维和营养重叠

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摘要

Stable carbon and nitrogen isotope values (δ13C and δ15N) were used to evaluate trophic niche overlap between two filter-feeding fishes (known together as bigheaded carp) native to China, silver carp (Hypophthalmichthys molitrix) and bighead carp (Hypophthalmichthys nobilis), and three native filter-feeding fish including bigmouth buffalo (Ictiobus cyprinellus), gizzard shad (Dorosoma cepedianum) and paddlefish (Polyodon spathula) in the lower Missouri River, USA, using the Bayesian Stable Isotope in R statistics. Results indicate that except for bigmouth buffalo, all species displayed similar trophic niche size and trophic diversity. Bigmouth buffalo occupied a small trophic niche and had the greatest trophic overlap with silver carp (93.6%) and bighead carp (94.1%) followed by gizzard shad (91.0%). Paddlefish had a trophic niche which relied on some resources different from those used by other species, and therefore had the lowest trophic overlap with bigheaded carp and other two native fish. The trophic overlap by bigheaded carp onto native fish was typically stronger than the reverse effects from native fish. Average niche overlap between silver carp and native species was as high as 71%, greater than niche overlap between bighead carp and native fish (64%). Our findings indicate that bigheaded carps are a potential threat to a diverse and stable native fish community.
机译:稳定的碳和氮同位素值(δ 13 C和δ 15 N)用于评估两条原生捕食食性鱼类(共同称为big鱼)之间的营养生态位重叠到中国的silver鱼(Hypophthalmichthys molitrix)和big鱼(Hypophthalmichthys nobilis),以及三种原生的滤食鱼,包括大嘴水牛(Ictiobus cyprinellus),g鱼(Dorosoma cepedianum)和dle鱼(Polyodon spathula River)美国,在R统计中使用贝叶斯稳定同位素。结果表明,除大嘴水牛外,所有物种都显示出相似的营养位和营养多样性。大嘴水牛占据了一个小的营养位,与silver鱼(93.6%)和big鱼(94.1%)的营养重叠最大,其次是g鱼(91.0%)。 dle鱼的营养生态位依赖于与其他物种使用的资源不同,因此与with鱼和其他两种本地鱼类的营养重叠最小。 big鱼在原生鱼上的营养重叠通常要强于原生鱼的逆向作用。 silver鱼和本地物种之间的平均生态位重叠率高达71%,高于big鱼和本地鱼类之间的生态位重叠率(64%)。我们的发现表明,big鱼对多样化和稳定的本地鱼类群落构成潜在威胁。

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