4.7 Article

Land Uses, Altitude and Texture Effects on Soil Parameters. A Comparative Study in Two Districts of Nagaland, Northeast India

期刊

AGRICULTURE-BASEL
卷 11, 期 2, 页码 -

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MDPI
DOI: 10.3390/agriculture11020171

关键词

land use; altitude; soil texture; soil organic carbon; soil nutrients; India

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资金

  1. Indian Council of Forestry Research and Education, Dehradun (India) [RFRI/2015-15/SFM-2]

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The study examines the changes in soil properties in two districts of Nagaland in relation to different land uses, altitude, and soil texture. It found that soil organic carbon stocks and available potassium were significantly influenced by land uses, while available phosphorus content varied significantly with altitude. Soil organic carbon stocks showed an increasing trend with elevation in both districts.
Northeast (NE) India is a typical tropical ecosystem with a luxuriant forest vegetation cover, but nowadays forests are under stress due to exploitation and land use changes, which are known to affect soil health and productivity. However, due to a scarcity of data, the influence of land uses and altitude on soil properties of this peculiar ecosystem is poorly quantified. This study presents the changes in soil properties in two districts of Nagaland (Mon and Zunheboto) in relation to land uses (forest, plantation, jhum and fallow jhum), altitude (<500 m, 500-1000 m, >1000 m) and soil texture (coarse, medium, fine). For this, a random soil sampling was performed in both the districts. Results indicated that soil organic carbon (SOC) stocks and available potassium (K) were significantly influenced by land uses in the Mon district, while in Zunheboto a significant difference was observed in available phosphorus (P) content. SOC stocks showed an increasing trend with elevation in both districts. The influence of altitude on P was significant and the maximum concentration was at lower elevations (<500 m). In Mon, soil texture significantly affected SOC stocks and the available N and P content. The variability in soil properties due to land uses, altitudinal gradients and textural classes can be better managed with the help of management options, which are still needed for this ecosystem.

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