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Year-round breeding equatorial Larks from three climatically-distinct populations do not use rainfall temperature or invertebrate biomass to time reproduction

机译:来自三个气候不同的种群的全年繁殖赤道百灵不使用降雨温度或无脊椎动物生物量进行时间繁殖

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摘要

Timing of reproduction in birds is important for reproductive success and is known to depend on environmental cues such as day length and food availability. However, in equatorial regions, where day length is nearly constant, other factors such as rainfall and temperature are thought to determine timing of reproduction. Rainfall can vary at small spatial and temporal scales, providing a highly fluctuating and unpredictable environmental cue. In this study we investigated the extent to which spatio-temporal variation in environmental conditions can explain the timing of breeding of Red-capped Lark, Calandrella cinerea, a species that is capable of reproducing during every month of the year in our equatorial east African study locations. For 39 months in three climatically-distinct locations, we monitored nesting activities, sampled ground and flying invertebrates, and quantified rainfall, maximum (Tmax) and minimum (Tmin) temperatures. Among locations we found that lower rainfall and higher temperatures did not coincide with lower invertebrate biomasses and decreased nesting activities, as predicted. Within locations, we found that rainfall, Tmax, and Tmin varied unpredictably among months and years. The only consistent annually recurring observations in all locations were that January and February had low rainfall, high Tmax, and low Tmin. Ground and flying invertebrate biomasses varied unpredictably among months and years, but invertebrates were captured in all months in all locations. Red-capped Larks bred in all calendar months overall but not in every month in every year in every location. Using model selection, we found no clear support for any relationship between the environmental variables and breeding in any of the three locations. Contrary to popular understanding, this study suggests that rainfall and invertebrate biomass as proxy for food do not influence breeding in equatorial Larks. Instead, we propose that factors such as nest predation, female protein reserves, and competition are more important in environments where weather and food meet minimum requirements for breeding during most of the year.
机译:禽类的繁殖时间对于繁殖成功很重要,并且已知它取决于环境提示,例如日长和食物供应。但是,在赤道地区,日长几乎是恒定的,其他因素(例如降雨和温度)被认为决定了繁殖的时间。降雨会在较小的时空尺度上变化,从而提供高度波动且不可预测的环境提示。在这项研究中,我们调查了环境条件时空变化的程度,可以解释红顶云雀(Calandrella cinerea)的繁殖时间,在我们的赤道东非研究中,该种能够在每年的每个月繁殖位置。在三个气候不同的地点进行了39个月的监测,我们监测了筑巢活动,采样了地面和飞行的无脊椎动物以及量化的降雨,最高(Tmax)和最低(Tmin)温度。正如预测的那样,在不同地点之间,我们发现较低的降雨和较高的温度与较低的无脊椎动物生物量和减少的筑巢活动并不吻合。在不同地点,我们发现降雨量,Tmax和Tmin在数月和数年之间变化出乎意料。在所有位置上唯一一致的年度重复观测是1月和2月的降雨量少,Tmax高和Tmin低。地面和飞行中的无脊椎动物生物量在数月和数年之间变化不可预测,但是在所有位置的所有月份中无脊椎动物都被捕获。红冠云雀总体上在所有历月中繁殖,但并非每年每个地方的每个月中繁殖。使用模型选择,我们发现在三个位置中的任何一个位置,环境变量与育种之间的任何关系都没有明确的支持。与流行的理解相反,这项研究表明降雨和无脊椎动物生物量作为食物的替代物不会影响赤道百灵鸟的繁殖。相反,我们建议在一年中大部分时间里天气和食物都满足最低繁殖要求的环境中,诸如巢穴捕食,雌性蛋白质储备和竞争等因素更为重要。

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