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Aim Local‐scale processes at species distribution margins can affect larger‐scale distribution dynamics, but are rarely studied. The objective of this research was to elucidate the nature of distribution limits by studying the comparative structure, dynamics and environmental associations of breeding bird populations at their distribution margin. We hypothesized that climate is principally responsible for setting distribution limits, whereas biotic habitat features are more strongly associated with distribution patterns within the range. Location Southern California, USA. Methods During 2005–2007 we studied the distribution patterns of breeding birds in three study areas, each spanning a low‐elevation (200–1800 m) desert scrub‐to‐chaparral gradient. We used logistic regression with hierarchical partitioning to assess the independent effects of environmental variables (e.g. climate versus habitat) on distributions. We tested for shifts in the relative importance of these environmental variables in determining distribution limits versus within‐range patterns, and we also compared higher‐ and lower‐elevation groups of species. Results Distribution patterns were highly variable among species, but were remarkably static over the three study areas and 3‐year study period. Across species, habitat floristic variables performed relatively well at explaining distribution patterns. For higher‐elevation species (chaparral birds), climate was relatively important in setting their lower distribution limits, and there was a shift to a greater importance of biotic habitat (mainly habitat structural variables) for determining within‐range patterns. Relationships were more mixed for lower‐elevation species (desert scrub birds), but with respect to distribution limits, biotic habitat variables tended to be more important relative to climate than we observed for chaparral birds. Main conclusions Along this warm, arid elevational gradient, higher‐elevation chaparral birds are more limited by climate at their lower margin than are lower‐elevation desert birds at their upper margin, suggesting that climate plays a strong role (relative to other values) in excluding non‐desert birds from desert. However, given the strong differences among species, predictive distribution models will need to be individually tailored, and for most species biotic habitat variables were of greater importance than climate in determining limits. This research highlights the usefulness of studying environmental relationships at distribution margins and the importance of considering biotic relationships in forecasting distribution shifts under changing climates.  相似文献   
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2001年3月20日在秦岭主脊采集到黑喉岩鹨(Prunella atrogularis)1只,为秦岭鸟类新纪录.本文对其形态特征及采集地和生境进行了描述,对其居留型进行了分析.  相似文献   
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了解杜鹃对不同寄主的选择和利用,可为研究两者之间的协同进化提供重要基础资料。2012至2014年每年的3~6月,在广西弄岗地区共记录到3例八声杜鹃(Cacomantis merulinus)的寄生繁殖,其中,2例寄生于栗头缝叶莺(Orthotomus cuculatus)的巢(寄生率1.4%,n=142),其中2枚杜鹃卵均为白色具棕色斑点;1例寄生于黑喉缝叶莺(O.atrogularis)(寄生率10%,n=10),杜鹃卵为白色具棕色斑点。栗头缝叶莺为八声杜鹃寄主的首次报道,而两种缝叶莺均首次在中国记录到被八声杜鹃寄生。八声杜鹃的卵重为(1.45±0.09)g,卵体积为(1.46±0.07 cm3)(n=3),其卵大小和重量均显著大于栗头缝叶莺和黑喉缝叶莺的卵(t检验,P0.001)。  相似文献   
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张敏  刘宁 《动物学杂志》2017,52(6):1056-1061
2016年3~9月对云南云县中岭岗村(24°15′42″N,100°02′42″E,平均海拔1 650 m)的黑喉山鹪莺(Prinia atrogularis)繁殖生态进行了研究。研究期间共发现42巢,主要位于杂草丛中(n=37)和灌木丛(茶树)中(n=5),筑巢期一般5~6 d,巢材有蜘蛛丝、苔藓植物、茅草花、茅草叶、铁线莲花、竹根须、枯枝、棕丝、干枯草穗等。巢呈球状,中上部侧方开口,巢重为(8.3±1.7)g,巢长为(13.2±0.9)cm,宽为(8.2±0.5)cm,巢口长(4.9±0.7)cm,巢口宽为(4.0±0.5)cm(n=25)。窝卵数为(3.9±0.4)枚(n=21,3~4枚)。卵的底色为白色、淡绿或者淡粉,遍布褐红色斑点,有的在钝端呈环状。卵重为(1.38±0.09)g,卵长为(17.3±0.7)mm,宽为(12.6±0.3)mm,卵体积为(1.4±0.1)cm3(n=65)。孵卵期(13.9±0.9)d(n=5,13~15 d),育雏期为(13.5±1.3)d(n=4,12~15 d)。利用Logistic曲线拟合雏鸟体重及外部器官增长,雏鸟的体重和嘴峰在5日龄左右增长最快,体长、翼长、跗跖在7日龄增长最快。对繁殖时间和地点较近的28巢进行连续观察,其中有7巢成功、21巢失败。造成繁殖失败的主要原因分别是巢捕食(62%)、亲鸟弃巢(14%)、人为破坏(14%)。  相似文献   
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