巢体积和巢间距离不影响嗜白蚁类的种群规模和物种丰富度

IF 0.9 4区 生物学 Q4 ECOLOGY Annales Zoologici Fennici Pub Date : 2021-11-12 DOI:10.5735/086.059.0107
C. M. Pires-Silva, Igor Eloi, B. Zilberman, M. A. Bezerra-Gusmão
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引用次数: 5

摘要

白蚁巢是各种无脊椎动物的庇护所。我们研究了9个纳苏特白蚁巢和9个埃弗氏猪笼草巢中的亲共杀性白蚁动物群(Staphylinidae,Aleocharinae),以测试资源规模(较大的巢应该比较小的巢容纳更多的社会寄生虫物种)和资源集中度(彼此更近的巢应该容纳更丰富和多样的社会寄生虫)假设。我们总共发现了358个催产素个体。回归分析并未揭示亲白蚁的物种丰富度或种群规模与巢穴体积之间的关系。因此,我们拒绝将资源规模假设作为亲白蚁多样性的驱动因素。巢穴之间的距离也不能解释它们动物群的丰富性;因此,资源集中假说也被否定了。总之,我们认为生物学方面,如传播动力学和物种特征,可能解释了亲白蚁的多样性。
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Nest Volume and Distance between Nests Do Not Affect Population Size or Species Richness of the Termitophilous Corotocini Fauna
Termite nests act as shelters for a wide variety of invertebrates. We studied the Corotocini termitophile fauna (Staphylinidae, Aleocharinae) in nine Nasutitermes corniger nests and nine N. ephratae nests to test the resource size (larger nests should host more social-parasite species than smaller ones) and resource concentration (nests occurring closer to each other should host a greater richness and variety of social parasites) hypotheses. In total, we found 358 Corotocini individuals. Regression analysis did not reveal a relationship between species richness or population size of termitophiles and nest volume. Thus, we rejected the resource size hypotheses as a driver of termitophile diversity. Neither did distance between nests explain the richness of their fauna; thus, the resource concentration hypothesis was also rejected. In conclusion, we suggest that biological aspects, such as dispersal dynamics and species traits likely explain the diversity of termitophiles.
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来源期刊
Annales Zoologici Fennici
Annales Zoologici Fennici 生物-动物学
CiteScore
2.40
自引率
14.30%
发文量
10
审稿时长
>12 weeks
期刊介绍: Annales Zoologici Fennici publishes mainly original research reports, but also in-depth reviews and commentaries on all aspects of animal ecology and evolution, and fields related to them. Our aim is to promote papers which focus on the interactions among various components in the past and present environments by using integrative and cross-disciplinary approaches. This may be achieved by employing tools from different fields of research, such as (but not restricted to): ecology and paleoecology, molecular ecology and phylogeography, conservation biology, human-induced contemporary evolution and wildlife management, animal behaviour and interactions (including recognition systems and mechanisms), paleontology (except systematics and taxonomy) and evolution, bioenergetics.
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