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首页> 外文期刊>Annals of the Entomological Society of America >Drosophilid Species (Diptera) in the Brazilian Savanna Are Larger in the Dry Season
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Drosophilid Species (Diptera) in the Brazilian Savanna Are Larger in the Dry Season

机译:在干旱季节,巴西热带稀树草原的果蝇种类(双翅目)更大

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Recently, interest in the effects of global climate change on biological communities has grown substantially. Both historical records and model predictions indicate that temperatures and aridity will likely increase in the continental interiors, although the effects of increased aridity have been less studied. The Brazilian savanna has a strong annual dry season, during which time drosophilid populations experience bottlenecks. In this study, we monitored a drosophilid assemblage in the core area of the Brazilian savanna throughout 1 yr. We then compared fly wings collected in the dry and rainy seasons for two common drosophilid species, Drosophila mercatorum Patterson & Wheeler and Drosophila simulans Sturtevant. Drosophilid abundance and richness decreased significantly in the dry season, confirming previous findings. In addition, although no significant differences in wing shape were observed for flies collected during the two seasons, the wing size of both focal species was significantly higher in the dry season. Considering the reported association between Drosophila Fallen wing size and body size, we deduced that the flies were larger in the dry season. D. mercatorum and D. simulans were also found at higher relative abundances in the dry season, when most species were not collected in the field. The observed difference in wing size could have been the result of biotic or abiotic factors, such as larval density and climate. More efforts are necessary to untangle the factors that lie behind this pattern, but it is possible that increased size is an advantageous trait when struggling against dry conditions
机译:最近,人们对全球气候变化对生物群落的影响的兴趣大大增加。历史记录和模型预测都表明,尽管对干旱增加的影响的研究较少,但大陆内部的温度和干旱可能会增加。巴西的热带稀树草原每年都有旺盛的旱季,在此期间,果蝇种群会遇到瓶颈。在这项研究中,我们监测了整个1年间巴西热带稀树草原核心区域的果蝇组合。然后,我们比较了在干燥和雨季收集到的两种常见果蝇物种果蝇果蝇Patterson&Wheeler和果蝇模拟物Sturtevant的蝇翅。在干旱季节,果蝇的丰富度和丰富度显着下降,证实了先前的发现。此外,尽管在两个季节中收集到的苍蝇的机翼形状没有观察到显着差异,但在干旱季节,两个焦点物种的机翼尺寸明显更高。考虑到果蝇掉落的机翼大小与机体大小之间的相关性,我们推断在干燥季节果蝇更大。当旱地没有收集到大多数物种时,在干燥季节还发现了D. mercatorum和D. simulans相对较高的丰度。观察到的机翼大小差异可能是生物或非生物因素(例如幼虫密度和气候)的结果。需要更多的努力来解开此模式背后的因素,但在对抗干旱条件时,增加尺码可能是有利的特征

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