Climatic stability drives latitudinal trends in range size and richness of woody plants in the Western Ghats, India.

Understanding the determinants of range location and size is fundamental to our understanding of spatial patterns in species richness. Here, we aimed to test the role of 'climatic stability' in determining latitudinal trends in range size and as a consequence on species richness of tropica...

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Main Authors: Navendu V Page, Kartik Shanker
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0235733&type=printable
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author Navendu V Page
Kartik Shanker
author_facet Navendu V Page
Kartik Shanker
author_sort Navendu V Page
collection DOAJ
description Understanding the determinants of range location and size is fundamental to our understanding of spatial patterns in species richness. Here, we aimed to test the role of 'climatic stability' in determining latitudinal trends in range size and as a consequence on species richness of tropical woody plants. Using primary data from 156 (0.06 ha) plots comprising 20,400 occurrences of more than 400 species of tropical woody plants, we built a biome-wide species database that covers the entire latitudinal extent of the wet-evergreen forests of the Western Ghats (8o to 20o N), India. We consolidated this database using secondary data from other published species inventories. We then calculated the range sizes and climatic niche width of woody plants to test the predictions of the climatic stability hypothesis and examined the relationship between range position and climatic tolerance of species. Our results show a significant latitudinal gradient in species richness and turnover where local and regional species richness increase monotonically from higher latitudes to lower latitudes of the Western Ghats. We found strong support for Rapoport's Rule with an increase in range size from lower to higher latitudes; our results are consistent with the predictions of the climatic stability hypothesis, where species at higher latitudes exhibited greater tolerance to temperature and rainfall seasonality. Contrary to earlier work, our findings suggest that Rapoport's Rule and the climatic stability hypothesis can operate over regional scales, and even at lower latitudes. We suggest that latitude associated climatic seasonality through its influence on species ranges, can influence latitudinal patterns in species turnover as well as species richness.
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spelling doaj-art-e9589604fb7a4d338723ca1a074728aa2025-08-20T02:10:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-01157e023573310.1371/journal.pone.0235733Climatic stability drives latitudinal trends in range size and richness of woody plants in the Western Ghats, India.Navendu V PageKartik ShankerUnderstanding the determinants of range location and size is fundamental to our understanding of spatial patterns in species richness. Here, we aimed to test the role of 'climatic stability' in determining latitudinal trends in range size and as a consequence on species richness of tropical woody plants. Using primary data from 156 (0.06 ha) plots comprising 20,400 occurrences of more than 400 species of tropical woody plants, we built a biome-wide species database that covers the entire latitudinal extent of the wet-evergreen forests of the Western Ghats (8o to 20o N), India. We consolidated this database using secondary data from other published species inventories. We then calculated the range sizes and climatic niche width of woody plants to test the predictions of the climatic stability hypothesis and examined the relationship between range position and climatic tolerance of species. Our results show a significant latitudinal gradient in species richness and turnover where local and regional species richness increase monotonically from higher latitudes to lower latitudes of the Western Ghats. We found strong support for Rapoport's Rule with an increase in range size from lower to higher latitudes; our results are consistent with the predictions of the climatic stability hypothesis, where species at higher latitudes exhibited greater tolerance to temperature and rainfall seasonality. Contrary to earlier work, our findings suggest that Rapoport's Rule and the climatic stability hypothesis can operate over regional scales, and even at lower latitudes. We suggest that latitude associated climatic seasonality through its influence on species ranges, can influence latitudinal patterns in species turnover as well as species richness.https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0235733&type=printable
spellingShingle Navendu V Page
Kartik Shanker
Climatic stability drives latitudinal trends in range size and richness of woody plants in the Western Ghats, India.
PLoS ONE
title Climatic stability drives latitudinal trends in range size and richness of woody plants in the Western Ghats, India.
title_full Climatic stability drives latitudinal trends in range size and richness of woody plants in the Western Ghats, India.
title_fullStr Climatic stability drives latitudinal trends in range size and richness of woody plants in the Western Ghats, India.
title_full_unstemmed Climatic stability drives latitudinal trends in range size and richness of woody plants in the Western Ghats, India.
title_short Climatic stability drives latitudinal trends in range size and richness of woody plants in the Western Ghats, India.
title_sort climatic stability drives latitudinal trends in range size and richness of woody plants in the western ghats india
url https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0235733&type=printable
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