Next Article in Journal
The Effect of Cadmium on Plants in Terms of the Response of Gene Expression Level and Activity
Next Article in Special Issue
An Assessment of Relations between Vegetation Green FPAR and Vegetation Indices through a Radiative Transfer Model
Previous Article in Journal
Silene uniflora Extracts for Strawberry Postharvest Protection
Previous Article in Special Issue
Higher N Addition and Mowing Interactively Improved Net Primary Productivity by Stimulating Gross Nitrification in a Temperate Steppe of Northern China
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Effects of Glomalin-Related Soil Protein Driven by Root on Forest Soil Aggregate Stability and Carbon Sequestration during Urbanization in Nanchang, China

1
Jiangxi Provincial Key Laboratory of Silviculture, Jiangxi Agricultural University, Nanchang 330045, China
2
College of Forestry, Jiangxi Agricultural University, Nanchang 330045, China
*
Authors to whom correspondence should be addressed.
Plants 2023, 12(9), 1847; https://doi.org/10.3390/plants12091847
Submission received: 17 March 2023 / Revised: 21 April 2023 / Accepted: 29 April 2023 / Published: 30 April 2023
(This article belongs to the Special Issue Plant-Soil Interaction Response to Global Change)

Abstract

Glomalin-related soil protein (GRSP) is a hydrophobic protein released by arbuscular mycorrhizal fungi. It is an important component of the soil carbon pool, and it improves the soil aggregate structure; however, it remains unclear whether GRSP can enhance soil carbon sequestration and improve soil quality during rapid urbanization. The built-up area in Nanchang, China was the study area, and the proportion of impervious surface area was the parameter of urbanization intensity. A total of 184 plots (400 m2) were set up to collect soil samples (0–20 cm) for analysis. Aggregates of five particle sizes were sieved, and the percentage amounts of soil organic carbon (SOC) and GRSP for them were determined. The results showed that the easily extractable GRSP (EE-GRSP) and total GRSP (T-GRSP) contents of the four aggregates of <2 mm were 22–46% higher in low urbanization areas than those in high urbanization areas (p < 0.05), indicating that the higher urbanization intensity was associated with the lower GRSP content of different aggregates. The GRSP was significantly positively correlated with SOC (p < 0.05). Moreover, the contribution of GRSP to the SOC pool in the <0.25 mm aggregate was significantly higher than that in other aggregates. In addition, the EE-GRSP content was significantly positively correlated with mean weight diameter (MWD) and geometric mean diameter (GMD) in the four aggregates of <2 mm, whereas it was negatively correlated with fractal dimension (D) in the >2 mm, 1–2 mm and <0.053 mm aggregates. The T-GRSP content showed significant correlations only with MWD, GMD, and D in the 1–2 mm aggregate. This study revealed that increasing urbanization intensity can significantly reduce the GRSP content of different sized aggregates. Moreover, the GRSP content significantly promoted SOC sequestration, and the EE-GRSP content more significantly promoted soil aggregate stability than that of the T-GRSP. These findings provide new ideas for exploring the improvement of soil quality during the process of urbanization.
Keywords: glomalin-related soil protein; soil aggregate stability; urbanization intensity; soil organic carbon glomalin-related soil protein; soil aggregate stability; urbanization intensity; soil organic carbon

Share and Cite

MDPI and ACS Style

Cai, C.; Huang, F.; Yang, Y.; Yu, S.; Wang, S.; Fan, Y.; Wang, Q.; Liu, W. Effects of Glomalin-Related Soil Protein Driven by Root on Forest Soil Aggregate Stability and Carbon Sequestration during Urbanization in Nanchang, China. Plants 2023, 12, 1847. https://doi.org/10.3390/plants12091847

AMA Style

Cai C, Huang F, Yang Y, Yu S, Wang S, Fan Y, Wang Q, Liu W. Effects of Glomalin-Related Soil Protein Driven by Root on Forest Soil Aggregate Stability and Carbon Sequestration during Urbanization in Nanchang, China. Plants. 2023; 12(9):1847. https://doi.org/10.3390/plants12091847

Chicago/Turabian Style

Cai, Changyongming, Fei Huang, Yaying Yang, Suqin Yu, Sujia Wang, Yulu Fan, Qiong Wang, and Wei Liu. 2023. "Effects of Glomalin-Related Soil Protein Driven by Root on Forest Soil Aggregate Stability and Carbon Sequestration during Urbanization in Nanchang, China" Plants 12, no. 9: 1847. https://doi.org/10.3390/plants12091847

APA Style

Cai, C., Huang, F., Yang, Y., Yu, S., Wang, S., Fan, Y., Wang, Q., & Liu, W. (2023). Effects of Glomalin-Related Soil Protein Driven by Root on Forest Soil Aggregate Stability and Carbon Sequestration during Urbanization in Nanchang, China. Plants, 12(9), 1847. https://doi.org/10.3390/plants12091847

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop