Leaf litter chemistry and its effects on soil microorganisms in different ages of Zanthoxylum planispinum var. Dintanensis

Abstract Background Leaf litter is the products of metabolism during the growth and development of plantation, and it is also an important component of nutrient cycling in plantation ecosystems. However, leaf litter chemistry and its effects on soil microorganisms in different ages, as well as the i...

Full description

Bibliographic Details
Published in:BMC Plant Biology
Main Authors: Yanping Song, Yanghua Yu, Yitong Li, Mingfeng Du
Format: Article
Language:English
Published: BMC 2023-05-01
Subjects:
Online Access:https://doi.org/10.1186/s12870-023-04274-z
_version_ 1850423527548649472
author Yanping Song
Yanghua Yu
Yitong Li
Mingfeng Du
author_facet Yanping Song
Yanghua Yu
Yitong Li
Mingfeng Du
author_sort Yanping Song
collection DOAJ
container_title BMC Plant Biology
description Abstract Background Leaf litter is the products of metabolism during the growth and development of plantation, and it is also an important component of nutrient cycling in plantation ecosystems. However, leaf litter chemistry and its effects on soil microorganisms in different ages, as well as the interactions between chemical components in leaf litter have been rarely reported. Based on this, this paper took Zanthoxylum planispinum var. dintanensis (hereafter Z. planispinum) plantations of 5–7, 10–12, 20–22, and 28–32 years old as the objects. By using one-way ANOVA, Pearson correlation analysis and redundancy analysis, we investigated leaf litter chemistry and its effects on soil microorganisms in different ages, and to reveal internal correlation of various chemical components in leaf litter, which can provide a scientific basis for the regulation of soil microbial activity in plantations. Results The variation of organic carbon with plantation age was more stable compared to total nitrogen and phosphorus of leaf litter. Nitrogen resorption was stronger than phosphorus resorption efficiency in Z. planispinum, and resorption efficiencies of leaf nitrogen and phosphorus for different ages were lower than the global average. Total nitrogen was highly significantly positively correlated with lignin, and total potassium was significantly positively correlated with tannin, suggesting the increase of inorganic substances in leaf litter would promote the accumulation of secondary metabolites. The leaf litter chemical traits explained up to 72% of soil microorganisms, where lignin was positively correlated with fungi and negatively correlated with bacteria, indicating that fungi are able to decompose lower quality litter and can break down complex and stable organic compounds more rapidly than bacteria. The nutrient elements carbon and nitrogen in the leaf litter and their interrelationship also have a great impact on soil microorganisms, because carbon is not only the element that provides energy, but also the element with the largest content in the microbiota. Conclusions The sustained increase in inorganic nutrients of leaf litter did not favor the decomposition of secondary metabolites, but rather inhibited the degradation of leaf litter. The significant positive effect of the leaf litter chemistry on soil microorganisms indicates the important role of leaf litter in promoting nutrient cycling in Z. planispinum plantations.
format Article
id doaj-art-3afe2e6bbd3f4e718c7e079c388e4da2
institution Directory of Open Access Journals
issn 1471-2229
language English
publishDate 2023-05-01
publisher BMC
record_format Article
spelling doaj-art-3afe2e6bbd3f4e718c7e079c388e4da22025-08-19T22:41:36ZengBMCBMC Plant Biology1471-22292023-05-0123111410.1186/s12870-023-04274-zLeaf litter chemistry and its effects on soil microorganisms in different ages of Zanthoxylum planispinum var. DintanensisYanping Song0Yanghua Yu1Yitong Li2Mingfeng Du3School of Karst Science / State Engineering Technology Institute for Karst Decertification Control, Guizhou Normal UniversitySchool of Karst Science / State Engineering Technology Institute for Karst Decertification Control, Guizhou Normal UniversitySchool of Karst Science / State Engineering Technology Institute for Karst Decertification Control, Guizhou Normal UniversitySchool of Karst Science / State Engineering Technology Institute for Karst Decertification Control, Guizhou Normal UniversityAbstract Background Leaf litter is the products of metabolism during the growth and development of plantation, and it is also an important component of nutrient cycling in plantation ecosystems. However, leaf litter chemistry and its effects on soil microorganisms in different ages, as well as the interactions between chemical components in leaf litter have been rarely reported. Based on this, this paper took Zanthoxylum planispinum var. dintanensis (hereafter Z. planispinum) plantations of 5–7, 10–12, 20–22, and 28–32 years old as the objects. By using one-way ANOVA, Pearson correlation analysis and redundancy analysis, we investigated leaf litter chemistry and its effects on soil microorganisms in different ages, and to reveal internal correlation of various chemical components in leaf litter, which can provide a scientific basis for the regulation of soil microbial activity in plantations. Results The variation of organic carbon with plantation age was more stable compared to total nitrogen and phosphorus of leaf litter. Nitrogen resorption was stronger than phosphorus resorption efficiency in Z. planispinum, and resorption efficiencies of leaf nitrogen and phosphorus for different ages were lower than the global average. Total nitrogen was highly significantly positively correlated with lignin, and total potassium was significantly positively correlated with tannin, suggesting the increase of inorganic substances in leaf litter would promote the accumulation of secondary metabolites. The leaf litter chemical traits explained up to 72% of soil microorganisms, where lignin was positively correlated with fungi and negatively correlated with bacteria, indicating that fungi are able to decompose lower quality litter and can break down complex and stable organic compounds more rapidly than bacteria. The nutrient elements carbon and nitrogen in the leaf litter and their interrelationship also have a great impact on soil microorganisms, because carbon is not only the element that provides energy, but also the element with the largest content in the microbiota. Conclusions The sustained increase in inorganic nutrients of leaf litter did not favor the decomposition of secondary metabolites, but rather inhibited the degradation of leaf litter. The significant positive effect of the leaf litter chemistry on soil microorganisms indicates the important role of leaf litter in promoting nutrient cycling in Z. planispinum plantations.https://doi.org/10.1186/s12870-023-04274-zLeaf litter chemistrySoil microorganismsZanthoxylum planispinum var. Dintanensis plantationRedundancy analysis
spellingShingle Yanping Song
Yanghua Yu
Yitong Li
Mingfeng Du
Leaf litter chemistry and its effects on soil microorganisms in different ages of Zanthoxylum planispinum var. Dintanensis
Leaf litter chemistry
Soil microorganisms
Zanthoxylum planispinum var. Dintanensis plantation
Redundancy analysis
title Leaf litter chemistry and its effects on soil microorganisms in different ages of Zanthoxylum planispinum var. Dintanensis
title_full Leaf litter chemistry and its effects on soil microorganisms in different ages of Zanthoxylum planispinum var. Dintanensis
title_fullStr Leaf litter chemistry and its effects on soil microorganisms in different ages of Zanthoxylum planispinum var. Dintanensis
title_full_unstemmed Leaf litter chemistry and its effects on soil microorganisms in different ages of Zanthoxylum planispinum var. Dintanensis
title_short Leaf litter chemistry and its effects on soil microorganisms in different ages of Zanthoxylum planispinum var. Dintanensis
title_sort leaf litter chemistry and its effects on soil microorganisms in different ages of zanthoxylum planispinum var dintanensis
topic Leaf litter chemistry
Soil microorganisms
Zanthoxylum planispinum var. Dintanensis plantation
Redundancy analysis
url https://doi.org/10.1186/s12870-023-04274-z
work_keys_str_mv AT yanpingsong leaflitterchemistryanditseffectsonsoilmicroorganismsindifferentagesofzanthoxylumplanispinumvardintanensis
AT yanghuayu leaflitterchemistryanditseffectsonsoilmicroorganismsindifferentagesofzanthoxylumplanispinumvardintanensis
AT yitongli leaflitterchemistryanditseffectsonsoilmicroorganismsindifferentagesofzanthoxylumplanispinumvardintanensis
AT mingfengdu leaflitterchemistryanditseffectsonsoilmicroorganismsindifferentagesofzanthoxylumplanispinumvardintanensis