Tropical cyclones shape mangrove productivity gradients in the Indian subcontinent
Abstract Recent literature on the impact of cyclones on mangrove forest productivity indicates that nutrient fertilizations aided by tropical cyclones enhance the productivity of mangrove forests. We probe the implications of these predictions in the context of Indian mangroves to propose potential...
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2021-08-01
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doaj-ba4586c49f68455792ad4676434cf4052021-09-05T11:33:24ZengNature Publishing GroupScientific Reports2045-23222021-08-0111111210.1038/s41598-021-96752-3Tropical cyclones shape mangrove productivity gradients in the Indian subcontinentDina Nethisa Rasquinha0Deepak R. Mishra1Department of Geography, University of GeorgiaDepartment of Geography, University of GeorgiaAbstract Recent literature on the impact of cyclones on mangrove forest productivity indicates that nutrient fertilizations aided by tropical cyclones enhance the productivity of mangrove forests. We probe the implications of these predictions in the context of Indian mangroves to propose potential future directions for mangrove research in the subcontinent. First, we look at the time series trend (2000–2020) in satellite-derived gross primary productivity (GPP) datasets for seven mangrove forests across the country’s coastline. Second, we compare seasonal changes in soil nutrient levels for a specific site to further the arguments proposed in the literature and investigate the role of potential drivers of mangrove productivity. We find overall increasing trends for GPP over the past two decades for all seven mangrove sites with seasonal fluctuations closely connected to the tropical storm activities for three sites (Bhitarkanika, Pichavaram, and Charao). Additionally, organic carbon and nitrogen levels showed no significant trend, but phosphorus levels were higher during the post-monsoon-winter period for Bhitarkanika. Our findings expand the predictions of previous studies that emphasized the role of storm-induced nutrient fluxes and freshwater supply as primary drivers of productivity gradients in mangroves. Our study provides insights on how mangrove productivity may change with fluctuating frequency and magnitude of cyclones under a changing climate, implying the need for more mechanistic studies in understanding the long-term impact on mangrove productivity in the region.https://doi.org/10.1038/s41598-021-96752-3 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dina Nethisa Rasquinha Deepak R. Mishra |
spellingShingle |
Dina Nethisa Rasquinha Deepak R. Mishra Tropical cyclones shape mangrove productivity gradients in the Indian subcontinent Scientific Reports |
author_facet |
Dina Nethisa Rasquinha Deepak R. Mishra |
author_sort |
Dina Nethisa Rasquinha |
title |
Tropical cyclones shape mangrove productivity gradients in the Indian subcontinent |
title_short |
Tropical cyclones shape mangrove productivity gradients in the Indian subcontinent |
title_full |
Tropical cyclones shape mangrove productivity gradients in the Indian subcontinent |
title_fullStr |
Tropical cyclones shape mangrove productivity gradients in the Indian subcontinent |
title_full_unstemmed |
Tropical cyclones shape mangrove productivity gradients in the Indian subcontinent |
title_sort |
tropical cyclones shape mangrove productivity gradients in the indian subcontinent |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-08-01 |
description |
Abstract Recent literature on the impact of cyclones on mangrove forest productivity indicates that nutrient fertilizations aided by tropical cyclones enhance the productivity of mangrove forests. We probe the implications of these predictions in the context of Indian mangroves to propose potential future directions for mangrove research in the subcontinent. First, we look at the time series trend (2000–2020) in satellite-derived gross primary productivity (GPP) datasets for seven mangrove forests across the country’s coastline. Second, we compare seasonal changes in soil nutrient levels for a specific site to further the arguments proposed in the literature and investigate the role of potential drivers of mangrove productivity. We find overall increasing trends for GPP over the past two decades for all seven mangrove sites with seasonal fluctuations closely connected to the tropical storm activities for three sites (Bhitarkanika, Pichavaram, and Charao). Additionally, organic carbon and nitrogen levels showed no significant trend, but phosphorus levels were higher during the post-monsoon-winter period for Bhitarkanika. Our findings expand the predictions of previous studies that emphasized the role of storm-induced nutrient fluxes and freshwater supply as primary drivers of productivity gradients in mangroves. Our study provides insights on how mangrove productivity may change with fluctuating frequency and magnitude of cyclones under a changing climate, implying the need for more mechanistic studies in understanding the long-term impact on mangrove productivity in the region. |
url |
https://doi.org/10.1038/s41598-021-96752-3 |
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AT dinanethisarasquinha tropicalcyclonesshapemangroveproductivitygradientsintheindiansubcontinent AT deepakrmishra tropicalcyclonesshapemangroveproductivitygradientsintheindiansubcontinent |
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