Biology Department, Westminster College, Salt Lake City, Utah 84105 U.S.A.,
J Vector Ecol. 2022 Dec;47(2):217-226. doi: 10.52707/1081-1710-47.2.217.
Seasonality of fleas (Siphonaptera) may be due to species competition, prompting the idea that flea species partition temperature, along with correlated variables such as moisture (thermal-niche partitioning hypothesis). I compared the fleas of five rodent-flea communities described from the literature for thermal-niche optima by fitting non-linear LRF (Lobry-Rosso-Flandrois) curves to examine whether flea species in a community show distinct, partitioned thermal niches. LRF curves estimate physiological parameters of temperature minimum, optimum, maximum, and maximum abundance, and facilitate comparison between species by summarizing seasonal data. Flea-communities were on Nearctic Southern flying squirrel (), Richardson's ground-squirrel (), North American deer-mouse (), and Palearctic Midday jird (), and Wagner's gerbil (). Flea communities appeared to show seasonality consistent with thermal-niche partitioning. Several flea families and genera had characteristic thermal niches: Ceratophyllidae had broad tolerance to extreme temperature, Leptopsyllidae (one species in this study) to cold, and Pulicidae to hot. In contrast, at the local, species level, climatic speciation could be significant in flea diversification. Non-competition hypotheses (environmental filtering, neutrality) require testing, too. Thermal-niche partitioning may increase flea species richness on hosts and could occur in other insect and plant communities. Implications for biodiversity conservation and disease ecology under global warming are wide-ranging.
跳蚤(Siphonaptera)的季节性可能是由于物种竞争所致,这促使人们认为跳蚤物种会沿着与湿度(热生态位分割假说)等相关变量划分温度生态位。我通过拟合非线性 LRF(Lobry-Rosso-Flandrois)曲线,比较了文献中描述的五个啮齿动物-跳蚤群落的跳蚤,以检查群落中的跳蚤物种是否表现出明显的、分割的热生态位。LRF 曲线估计了温度最小值、最适值、最大值和最大丰度的生理参数,并通过总结季节性数据来促进物种之间的比较。跳蚤群落分别来自于近北极南部飞鼠()、理查森地松鼠()、北美鹿鼠()和古北界中午地松鼠(),以及瓦格纳氏沙鼠()。跳蚤群落似乎表现出与热生态位分割一致的季节性。几个跳蚤科和属具有特征性的热生态位:Ceratophyllidae 对极端温度具有广泛的耐受性,Leptopsyllidae(本研究中的一个物种)对寒冷耐受,而 Pulicidae 则对高温耐受。相比之下,在局部、物种水平上,气候物种形成在跳蚤多样性中可能具有重要意义。非竞争假说(环境过滤、中性)也需要进行测试。热生态位分割可能会增加宿主上跳蚤物种的丰富度,并且可能发生在其他昆虫和植物群落中。这对全球变暖和疾病生态下的生物多样性保护和疾病生态有着广泛的影响。