2011Unpublished venueRequires access

Rarefaction approach to analyzing distribution patterns of species rich- ness along altitudinal gradients: a case study with arborous species data

Kaixiong Xing, Muyi Kang, Qiang Wang, Jin Duan, Dai Cheng

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Abstract

Species richness variation along altitudinal gradients has been among the hot topics in ecology. Models that estimate richness based on species-area relationships are dependent on representativeness, sam- pling scale and the classification of samples. In this paper, we have derived a new method to estimate mini- mum plot number (MPN), which is the minimum number of plots required to accurately estimate the species richness of a concerned region. Our approach combines the rarefaction approach that has been widely used to estimate regional species richness with the concept of the minimum area needed to survey a plant commu- nity. We evaluated our approach in a case study using survey data on the arborous species of natural forests on the southern slope of the Qinling Mountain Range. We divided one hundred and thirty five 20 m×20 m plots into a number of plot subgroups along an altitudinal gradient in three different ways and calculated the richness of each subgroup using the rarefaction approach in order to assess the distributional pattern of spe- cies richness along the altitudinal gradient. The preliminary results are as follows: (1) Rarefaction approach can help to calculate the species richness in each subgroup with full consideration in its different plot number, and at the same time in the species composition features in the study area, avoiding fluctuates influenced by the individual plot. Our approach of estimating species richness using rarefaction and considering minimum plot number also has the advantage of being able to recognize non-linear relationships between plot area and

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What this paper is about

Species richness variation along altitudinal gradients has been among the hot topics in ecology. Models that estimate richness based on species-area relationships are dependent on representativeness, sam- pling scale and the classification of samples. In this paper, we have derived a new method to estimate mini- mum plot number (MPN), which is the minimum number of plots required to accurately estimate the species richness of a concerned region. Our approach combines the rarefaction approach that has been widely used to estimate regional species richness with the concept of the minimum area needed to survey a plant commu- nity. We evaluated our approach in a case study using survey data on the arborous species of natural forests on the southern slope of the Qinling Mountain Range. We divided one hundred and thirty five 20 m×20 m plots into a number of plot subgroups along an altitudinal gradient in three different ways and calculated the richness of each subgroup using the rarefaction approach in order to assess the distributional pattern of spe- cies richness along the altitudinal gradient. The preliminary results are as follows: (1) Rarefaction approach can help to calculate the species richness in each subgroup with full consideration in its different plot number, and at the same time in the species composition features in the study area, avoiding fluctuates influenced by the individual plot. Our approach of estimating species richness using rarefaction and considering minimum plot number also has the advantage of being able to recognize non-linear relationships between plot area and

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Available abstract

Species richness variation along altitudinal gradients has been among the hot topics in ecology. Models that estimate richness based on species-area relationships are dependent on representativeness, sam- pling scale and the classification of samples. In this paper, we have derived a new method to estimate mini- mum plot number (MPN), which is the minimum number of plots required to accurately estimate the species richness of a concerned region. Our approach combines the rarefaction approach that has been widely used to estimate regional species richness with the concept of the minimum area needed to survey a plant commu- nity. We evaluated our approach in a case study using survey data on the arborous species of natural forests on the southern slope of the Qinling Mountain Range. We divided one hundred and thirty five 20 m×20 m plots into a number of plot subgroups along an altitudinal gradient in three different ways and calculated the richness of each subgroup using the rarefaction approach in order to assess the distributional pattern of spe- cies richness along the altitudinal gradient. The preliminary results are as follows: (1) Rarefaction approach can help to calculate the species richness in each subgroup with full consideration in its different plot number, and at the same time in the species composition features in the study area, avoiding fluctuates influenced by the individual plot. Our approach of estimating species richness using rarefaction and considering minimum plot number also has the advantage of being able to recognize non-linear relationships between plot area and

Key concepts: Species richness, Rarefaction (ecology), Ecology, Range (aeronautics), Plot (graphics), Representativeness heuristic, Geography, Abundance (ecology)

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