首页> 外文期刊>Polar biology >No effects of asynchrony between hatching and peak food availability on chick growth in Semipalmated Plovers [Charadrius semipalmatus) near Churchill, Manitoba
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No effects of asynchrony between hatching and peak food availability on chick growth in Semipalmated Plovers [Charadrius semipalmatus) near Churchill, Manitoba

机译:在Manitoba附近丘吉尔附近的帕克·普利斯(Sharadrius Mealipalmatus)孵化和峰值食品可用性之间的孵化和峰值食物之间的影响。

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摘要

Birds rely on consistent patterns of food availability on their breeding grounds to successfully complete their breeding cycle. Due to ongoing warming of the sub-Arctic, there is potential for a mismatch between the peak in available invertebrate biomass and the peak in food demand for shorebird chicks. During the summers of 2010 and 2011, we investigated the relationship between temperature and benthic and terrestrial invertebrate biomass, measured using three sampling techniques in Churchill, Manitoba. We also investigated the relationship between timing of breeding of Semipalmated Plovers (Charadrius semipalmatus) and timing of peaks in invertebrate biomass. In 2011, chick growth rates were also measured to examine whether hatching in synchrony with the peak in invertebrate biomass during the brood rearing period affected growth rates. In 2010, emergent and core invertebrate biomass were negatively related to soil degree days, whereas in 2011, core biomass increased with soil degree days and pitfall biomass increased with air temperature. Total invertebrate biomass (summed over trap types) peaked from 25 to 31days before the median chick hatch date in 2010 and 10days after the median chick hatch date in 2011. In 2011 we did not detect any effects of asynchrony on the growth of Semipalmated Plover chicks. These results may indicate that food resources in their environment remain adequate throughout the breeding season, despite inter-annual fluctuations in the timing of invertebrate peaks.
机译:鸟类依赖于其繁殖场的一致的食物可用性模式,以成功完成其繁殖周期。由于亚北极的持续变暖,在可用的无脊椎动物生物量和夏令生小鸡的食物需求中存在峰值之间存在不匹配的潜力。在2010年和2011年的夏季,我们调查了温度和底栖和陆地无脊椎动物生物量之间的关系,使用了丘吉尔丘吉尔丘吉尔的三种采样技术测量。我们还调查了麦克风植物(Charadrius eMalialmatus)的育种时间与无脊椎动物生物量中峰的时序之间的关系。在2011年,还测量了小鸡生长率,以检查是否在育龄生物量中与无脊椎动物生物量的同步孵化,影响生长速率。 2010年,紧急和核心无脊椎动物生物量与土壤度天呈负相关,而2011年,核心生物量随着土壤度天和缺陷生物量增加,气温增加。总无脊椎动物生物量(陷阱类型)从25至31天开始达到2010年中位数的小鸡舱口日期,在2011年中位数孵化日期之前达到了25至31天。2011年,我们没有检测到Asynchrony对Semipalmated Plover Chicks增长的任何影响。这些结果可能表明,尽管在无脊椎动物峰时期的年度波动,但在整个繁殖季节中的食物资源仍然足够。

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