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Opportunities for Integrated Ecological Analysis across Inland Australia with Standardised Data from Ausplots Rangelands.

PloS one · 17 Jan 2017 · 10.1371/journal.pone.0170137

Abstract

Australian rangelands ecosystems cover 81% of the continent but are understudied and continental-scale research has been limited in part by a lack of precise data that are standardised between jurisdictions. We present a new dataset from AusPlots Rangelands that enables integrative rangelands analysis due to its geographic scope and standardised methodology. The method provides data on vegetation and soils, enabling comparison of a suite of metrics including fractional vegetation cover, basal area, and species richness, diversity, and composition. Cover estimates are robust and repeatable, allowing comparisons among environments and detection of modest change. The 442 field plots presented here span a rainfall gradient of 129-1437 mm Mean annual precipitation with varying seasonality. Vegetation measurements include vouchered vascular plant species, growth form, basal area, height, cover and substrate type from 1010 point intercepts as well as systematically recorded absences, which are useful for predictive modelling and validation of remote sensing applications. Leaf and soil samples are sampled for downstream chemical and genomic analysis. We overview the sampling of vegetation parameters and environments, applying the data to the question of how species abundance distributions (SADs) vary over climatic gradients, a key question for the influence of environmental change on ecosystem processes. We found linear relationships between SAD shape and rainfall within grassland and shrubland communities, indicating more uneven abundance in deserts and suggesting relative abundance may shift as a consequence of climate change, resulting in altered diversity and ecosystem function. The standardised data of AusPlots enables such analyses at large spatial scales, and the testing of predictions through time with longitudinal sampling. In future, the AusPlots field program will be directed towards improving coverage of space, under-represented environments, vegetation types and fauna and, increasingly, re-sampling of established plots. Providing up-to-date data access methods to enhance re-use is also a priority.

Plant phenotyping relevance

標準化された植生測定法と再利用可能な大規模データセットを提示し、植生被覆、基底面積、高さ、種組成などの植物形質を反復可能に取得・比較することが中心である。

abstractWe present a new dataset from AusPlots Rangelands that enables integrative rangelands analysis due to its geographic scope and standardised methodology.
abstractCover estimates are robust and repeatable, allowing comparisons among environments and detection of modest change.
abstractVegetation measurements include vouchered vascular plant species, growth form, basal area, height, cover and substrate type from 1010 point intercepts

Code and data availability

The paper's AusPlots Rangelands supplementary dataset (442 plots, point-intercept vegetation/cover data used for the SAD analyses) is explicitly stated to be publicly downloadable from the ÆKOS Data Portal. No author analysis code with a public URL is provided; R scripts are described but not deposited.

Datasetpublic

The dataset used in this study is available for download at http://www.aekos.org.au/dataset/267519: Guerin GR, Sparrow B, Tokmakoff A, Smyth A, Leitch E, Baruch Z, Lowe AJ. Ausplots Rangelands supplementary dataset (Guerin et al. 2016), Version 1.0. doi: 10.4227/05/57C92730DBC06 . ÆKOS Data Portal, rights owned by TERN AusPlots.

Open resource ↗ÆKOS Data Portal · 10.4227/05/57C92730DBC06 · lines:237-283

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