1
Return

Contrasting Responses of Soil Physicochemical Properties and Bacterial Communities to Understory Intercropping in Idesia polycarpa Plantations

delete2026-08-13
delete0
delete
OA
AI
W
Wenwen Zhong
Z
Zuwei Hu
C
Can Cao
X
Xiaolong Hao
T
Tong Niu
Y
Yanan Ma
Y
Yulan Bei
J
Jiajia Hou
Y
Yingjian Niu
Y
Yaohui Liu
Y
Yanmei Wang
L
Li Dai
Q
Qifei Cai
X
Xiaodong Geng
J
Juan Wang
Y
Yongyu Ren
F
Fangming Liu
Z
Zhen Liu
S
Shunyang Yao
D
Dongfeng Yan
J
Jing He
T
Tailin Zhong *
Z
Zhi Li *
DOI:10.3390/microorganisms14081782delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Understory intercropping may improve soils, but its effects on bacterial communities in Idesia polycarpa plantations remain unclear. Five patterns were established in the Yellow River floodplain: pure I. polycarpa and I. polycarpa intercropped with Astragalus membranaceus, Ipomoea batatas, Salvia rosmarinus, or Arachis hypogaea. Soil properties and bacterial communities were assessed using 16S rRNA gene sequencing, LEfSe, FAPROTAX, and redundancy analysis. Intercropping significantly affected soil electrical conductivity, water content, organic matter, alkali-hydrolyzable nitrogen, available phosphorus, and available potassium, but not pH or bulk density. Salvia rosmarinus intercropping had 14.3 g kg−1 organic matter and 123 mg kg−1 available potassium; Arachis hypogaea had 14.5 g kg−1 organic matter and 81.3 mg kg−1 alkali-hydrolyzable nitrogen; and Ipomoea batatas had 11.9% water content and 13.6 mg kg−1 available phosphorus. Alpha diversity did not differ significantly. PCoA suggested differentiation, but PERMANOVA based on Bray–Curtis dissimilarity was nonsignificant (r2 = 0.329, p = 0.083); LEfSe identified treatment-associated biomarkers. Chemoheterotrophy and aerobic chemoheterotrophy accounted for 42.6–45.7% and 20.4–26.2%, respectively. Alkali-hydrolyzable nitrogen was associated with genus-level variation (r2 = 0.440, p = 0.031). Understory intercropping improved soil conditions and may influence bacterial composition and predicted functional potential.
Keywords:
<i>Idesia polycarpa</i>
understory intercropping
Yellow River floodplain
soil bacterial community
soil nutrients
functional potential

Journal

M
Microorganisms
IF:
4.2
Papers:
1.8W
Citations:
5.2W

Organization

H
Henan Agricultural University
Scholars:
1.4W
Papers: 6.0K
Citations: 9.3K
Z
zhejiang shuren university
Scholars:
537
Papers: 281
Citations: 0
Cited Papers

Cited Papers

Citing Papers

Citing Papers