River drainage rearrangements and the phylogeographic pattern of the annual fish Austrolebias arachan (Cyprinodontiformes, Rivulidae)

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-10-27 DOI:10.1111/zsc.12636
Marcelo Loureiro, Sofía Stareczek, Alejandro D'anatro, Andrew W. Thompson, Guillermo Ortí
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Abstract

Abstract Palaeogeographical and climatic processes are among the main factors affecting biological diversity and distribution patterns. In freshwater systems, major dispersal processes are caused by river drainage rearrangements where the direction of flow of a stream changes, allowing range expansions and connection of previously isolated communities. In the Neotropical region, this process has been known to connect part of the southwestern Amazon basin with La Plata basin during the formation of the Bolivian Orocline, and La Plata basin with Atlantic coastal basins since the split from Africa. Several species of annual fishes of the genus Austrolebias are known to inhabit seasonal ponds both in the Rio Negro basin (southern tip of Brazilian shield, Lower Uruguay ecoregion), and the headwaters of rivers draining into the Merín lagoon (coastal drainages, Laguna dos Patos ecoregion). The aim of this article was to analyse the phylogeographic pattern of Austrolebias arachan in the context of putative river rearrangements. Two hypotheses were tested: (a) the spatial configuration of river basins determines the genetic structure and distribution of this species, and (b) coastal drainages captured sections of upland shield river drainages. We analysed a fragment of the mitochondrial cytochrome b gene and a fragment of a nuclear intron locus. Results support the prediction of the first hypothesis: geographic variation within A. arachan is structured according to geography. The second hypothesis was in part confirmed: the migration analyses showed that Rio Negro basin populations could have acted as a source for Laguna Merin basin. However, migration estimates also support gene flow in the opposite direction. The cytochrome b haplotype network configuration and its phylogenetic pattern suggests at least two independent events of capture, with divergence time estimated at the onset of Pleistocene glacial cycles.
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河流排水重排及年生鱼类arachan Austrolebias的系统地理格局(鲤形目,河豚科)
古地理和气候过程是影响生物多样性和分布格局的主要因素之一。在淡水系统中,主要的扩散过程是由河流排水的重新安排引起的,其中河流的流向发生了变化,从而扩大了范围,并将以前孤立的群落联系起来。在新热带地区,这一过程在玻利维亚奥罗斜形成期间将西南亚马逊盆地的一部分与拉普拉塔盆地连接起来,并在从非洲分裂后将拉普拉塔盆地与大西洋沿岸盆地连接起来。已知有几种Austrolebias属的一年生鱼类栖息在里奥内格罗盆地(巴西盾的南端,下乌拉圭生态区)和流入Merín泻湖的河流源头(沿海排水,拉古纳多斯帕托斯生态区)的季节性池塘中。本文的目的是在假定的河流重排的背景下,分析阿拉恰河南蛙的系统地理格局。我们测试了两个假设:(a)河流流域的空间配置决定了该物种的遗传结构和分布,以及(b)沿海流域捕获了高地盾状河流域的部分。我们分析了线粒体细胞色素b基因的片段和核内含子位点的片段。结果支持了第一种假设的预测:阿拉坎的地理变异是根据地理结构进行的。第二个假设在一定程度上得到了证实:迁移分析表明,里奥内格罗盆地的人口可能是拉古纳梅林盆地的一个来源。然而,迁移估计也支持相反方向的基因流动。细胞色素b单倍型网络结构及其系统发育模式表明,至少有两个独立的捕获事件,分化时间估计在更新世冰川旋回开始时。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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