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“迁徙连通性”概念及其在昆虫迁徙者中的适用性。

The 'migratory connectivity' concept, and its applicability to insect migrants.

作者信息

Gao Boya, Hedlund Johanna, Reynolds Don R, Zhai Baoping, Hu Gao, Chapman Jason W

机构信息

Department of Entomology, Nanjing Agricultural University, Nanjing, China.

Centre for Ecology and Conservation, University of Exeter, Penryn, Cornwall, UK.

出版信息

Mov Ecol. 2020 Dec 4;8(1):48. doi: 10.1186/s40462-020-00235-5.

Abstract

Migratory connectivity describes the degree of linkage between different parts of an animal's migratory range due to the movement trajectories of individuals. High connectivity occurs when individuals from one particular part of the migratory range move almost exclusively to another localized part of the migratory range with little mixing with individuals from other regions. Conversely, low migratory connectivity describes the situation where individuals spread over a wide area during migration and experience a large degree of mixing with individuals from elsewhere. The migratory connectivity concept is frequently applied to vertebrate migrants (especially birds), and it is highly relevant to conservation and management of populations. However, it is rarely employed in the insect migration literature, largely because much less is known about the migration circuits of most migratory insects than is known about birds. In this review, we discuss the applicability of the migratory connectivity concept to long-range insect migrations. In contrast to birds, insect migration circuits typically comprise multigenerational movements of geographically unstructured (non-discrete) populations between broad latitudinal zones. Also, compared to the faster-flying birds, the lower degree of control over movement directions would also tend to reduce connectivity in many insect migrants. Nonetheless, after taking account of these differences, we argue that the migratory connectivity framework can still be applied to insects, and we go on to consider postulated levels of connectivity in some of the most intensively studied insect migrants. We conclude that a greater understanding of insect migratory connectivity would be of value for conserving threatened species and managing pests.

摘要

迁徙连通性描述了由于个体的移动轨迹,动物迁徙范围内不同部分之间的联系程度。当来自迁徙范围某一特定部分的个体几乎完全迁移到迁徙范围的另一个局部区域,且与其他区域的个体很少混合时,就会出现高连通性。相反,低迁徙连通性描述的是个体在迁徙过程中分布在广阔区域,并与来自其他地方的个体大量混合的情况。迁徙连通性概念经常应用于脊椎动物迁徙者(尤其是鸟类),并且与种群的保护和管理高度相关。然而,它在昆虫迁徙文献中很少被使用,主要是因为与鸟类相比,人们对大多数迁徙昆虫的迁徙路线了解得更少。在这篇综述中,我们讨论了迁徙连通性概念对远距离昆虫迁徙的适用性。与鸟类不同,昆虫迁徙路线通常包括地理上无结构(非离散)的种群在广阔纬度带之间的多代移动。此外,与飞行速度更快的鸟类相比,对移动方向的控制程度较低也往往会降低许多昆虫迁徙者的连通性。尽管如此,在考虑到这些差异之后,我们认为迁徙连通性框架仍然可以应用于昆虫,并且我们接着思考了一些研究最深入的昆虫迁徙者假定的连通性水平。我们得出结论,更深入地了解昆虫迁徙连通性对于保护受威胁物种和管理害虫具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f26f/7718659/f58e121896fb/40462_2020_235_Fig1_HTML.jpg

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