首页> 外文期刊>Journal of Avian Biology >Developmental plasticity in a passerine bird: an experiment with collared flycatchers Ficedula albicollis
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Developmental plasticity in a passerine bird: an experiment with collared flycatchers Ficedula albicollis

机译:一只雀形目鸟类的发育可塑性:项圈捕蝇器Ficedula albicollis的实验

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Young birds often face poor food supply, which reduces their growth and development. However, if the shortage of resources is only temporary, there is a possibility to adjust the growth trajectory of morphological traits after the end of the short-term limitation period. The two main ways of compensatory growth are delayed development (parallel growth) and growth acceleration (catch-up growth). Parallel growth has been widely demonstrated in birds, but the presence of catch-up growth in altricial species has been questioned. However, most experiments have been conducted in laboratory conditions. We manipulated the food supply of nestling collared flycatchers Ficedula albicollis in the wild by removing the male parent for three days at 4--7 days of chick age. We performed early partial swapping to control for origin effects on growth, and total swapping after the period of food limitation to ensure similar late growth environment for deprived and control chicks. Both body mass and tarsus length of deprived chicks was negatively affected by the food scarcity. Body mass showed efficient catch-up growth, but this compensation was absent in skeletal size. Body mass is an important determinant of postfledging survival in this long-distance migrant. Further studies are needed in a variety of species to examine developmental plasticity in relation to age at food scarcity and the allocation hierarchy of various morphological traits.
机译:幼鸽经常面临食物供应不足的问题,这会降低其生长发育。但是,如果资源短缺只是暂时的,则有可能在短期限制期结束后调整形态特征的生长轨迹。补偿性增长的两种主要方式是延迟发展(平行增长)和增长加速(追赶增长)。平行生长已在鸟类中得到广泛证明,但是人们质疑在鸟类中是否存在追赶生长。但是,大多数实验都是在实验室条件下进行的。我们通过在雏鸡年龄4--7天将雄性亲本移走三天,从而在野外操纵雏鸟捕蝇器Ficedula albicollis的食物供应。我们进行了早期的部分交换以控制对生长的起源影响,并在限制食物后进行了全部交换,以确保被剥夺和控制的雏鸡的后期生长环境相似。缺乏的雏鸡的体重和体长度都受到食物短缺的负面影响。体重表现出有效的追赶性增长,但骨骼大小没有这种补偿。体重是这个长​​途移民以后出世的重要决定因素。需要对各种物种进行进一步研究,以研究与粮食短缺时年龄相关的发育可塑性以及各种形态特征的分配层次。

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