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Developmental stress impairs song complexity but not learning accuracy in non-domesticated zebra finches (Taeniopygia guttata)

机译:发育压力会削弱歌曲的复杂性,但不会影响非驯养斑马雀(Taeniopygia guttata)的学习准确性

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Food restrictions early in life can have adverse effects on the development of adult avian song structure. Nutritional deficiencies during brain development are thought to impair the growth of neural circuits responsible for learning and production of song in adulthood. Thus, the quality of song may reflect the quality of the singer due to the costs associated with neural development early in life. Recent investigations have focused on domesticated laboratory strains of zebra finches where early dietary deficiencies have significantly reduced the complexity of song and its sexual attractiveness. Domesticated zebra finches may be more sensitive to the early effects of moderate under-nutrition on song complexity than their non-domesticated counterparts. In an aviary experiment with non-domesticated zebra finch stock, we found that song complexity when measured by a linear combination of six variables was reduced in food-restricted birds, with syllable rate and maximum syllable frequency as the principal variables affected. The restriction had no effect on learning accuracy when song phrases of experimental birds were compared to those of their fathers.This result demonstrates that early nutrition may differentially affect the development of neural processes that influence learning accuracy and song complexity. While the finding of negative effects of dietary restriction on song complexity is robust for zebra finches and is not an artefact of domestication, it does not explain why some nutritionally stressed populations of wild zebra finches have more complex songs than those from other regions of Australia characterised by greater food availability.
机译:生命早期的饮食限制会对成年禽歌结构的发展产生不利影响。人们认为,大脑发育过程中的营养缺乏会损害成年后负责学习和产生歌曲的神经回路的生长。因此,由于与生命早期神经发育相关的费用,歌曲的质量可能反映了歌手的质量。最近的研究集中在驯化的斑马雀实验室菌株上,这些菌株早期的饮食缺陷大大降低了歌曲的复杂性及其性吸引力。相对于未驯化的斑马雀,驯化的斑马雀对中度营养不足对歌曲复杂性的早期影响更为敏感。在非驯养斑马雀科动物的鸟类实验中,我们发现,受食物限制的鸟类中,通过六个变量的线性组合进行测量时,歌曲的复杂度降低了,其中音节率和最大音节频率是影响的主要变量。将实验鸟类的歌曲短语与其父辈的歌曲短语进行比较时,该限制对学习准确性没有影响。此结果表明,早期营养可能会差异性地影响影响学习准确性和歌曲复杂性的神经过程的发育。尽管发现饮食限制对歌曲复杂性的负面影响在斑马雀科中是有力的,而不是驯化的产物,但这并不能解释为什么为什么一些营养紧张的野生斑马雀科的歌曲比澳大利亚其他地区的特征更复杂。通过更多的食物供应。

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