Abstract Trophic diversity, size and biomass spectrum of Bay of Bengal nematodes: A study case on depth and latitudinal patterns
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Trophic diversity, size and biomass spectrum of Bay of Bengal nematodes: A study case on depth and latitudinal patterns

机译:孟加拉线虫湾的营养多样性,大小和生物量谱:深度和纬度模式的研究案例

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AbstractDepth and latitudinal patterns of nematode functional attributes were investigated from 35 stations of Bay of Bengal (BoB) continental shelf. We aim to address whether depth and latitudinal variations can modify nematode community structure and their functional attributes (trophic diversity, size and biomass spectra). Global trend of depth and latitudinal related variations have also been noticed from BoB shelf in terms of nematode abundance and species richness, albeit heterogeneity patterns were encountered in functional attributes. Index of trophic diversity values revealed higher trophic diversity across the BoB shelf and suggested variety of food resource availability. However, downstream analysis of trophic status showed depth and latitude specific patterns but not reflected in terms of size and biomass spectrum. The peaks at different positions clearly visualized heterogeneity in distribution patterns for both size and biomass spectrum and also there was evidence of availability of diversified food resources. Nematode biomass spectra (NBS) constructed for nematode communities showed shift in peak biomass values towards lower to moderate size classes particularly in shallower depth but did not get reflected in latitudes. However, Chennai and Parangipettai transects demonstrated shift in peak biomass values towards higher biomass classes explaining the representation of higher nematode abundance. Our findings concluded that depth and latitudes are physical variables; they may not directly affect nematode community structure and functional attributes but they might influence the other factors such as food availability, sediment deposition and settlement rate. Our observations
机译:<![cdata [ 抽象 从孟加拉湾(Bob)大陆架的35个站点调查了线虫功能属性的深度和纬度模式。我们的目标是解决深度和延迟变化是否可以修改线虫群落结构及其功能属性(营养性多样性,尺寸和生物量谱)。在Nematode丰度和物种丰富方面,鲍勃架也已经注意到了深度和延伸相关变化的全球趋势,并且在功能属性中遇到了异质性模式。营养商多样性指数在鲍勃货架上显示出更高的营养性多样性,并提出各种食物资源可用性。然而,营养状况的下游分析显示了深度和纬度特异性模式,但在尺寸和生物量谱方面没有反映。不同位置的峰值在尺寸和生物量谱的分布模式中清楚地看出了异质性,并且还存在多元化食品资源的可用性证据。用于线虫社区构建的线虫生物量谱(NBS)显示出峰值生物质值的转变,尤其是较浅的深度,但未在纬度中反映。然而,Chennai和Parangipettai的横断面逐渐转变为更高的生物量类的峰值生物量值,解释了更高的线虫丰度的表示。我们的研究结果得出结论,深度和纬度是物理变量;它们可能不会直接影响线虫社区结构和功能属性,但它们可能会影响其他因素,如食物可用性,沉积物沉积和结算率。我们的观察

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