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不同覆盖模式下苹果园根际土壤理化性质及细菌群落特征差异分析

胡志芳 鲁兴凯 全勇 程立君 李云国 黄国嫣 蔡荣靖 马勉娣 马静 陈晨 杨艳群

果树学报2025,Vol.42Issue(2):322-335,14.
果树学报2025,Vol.42Issue(2):322-335,14.DOI:10.13925/j.cnki.gsxb.20240510

不同覆盖模式下苹果园根际土壤理化性质及细菌群落特征差异分析

Analysis of differences in physicochemical properties and bacterial com-munity characteristics of rhizosphere soil in apple orchards under differ-ent cover treatments

胡志芳 1鲁兴凯 2全勇 1程立君 3李云国 1黄国嫣 2蔡荣靖 3马勉娣 2马静 2陈晨 2杨艳群2

作者信息

  • 1. 昭通市苹果产业发展中心,云南昭通 657000||云南省教育厅昭通苹果产业绿色发展工程研究中心,云南昭通 657000
  • 2. 昭通市苹果产业发展中心,云南昭通 657000
  • 3. 昭通学院农学与生命科学学院,云南昭通 657000||云南省教育厅昭通苹果产业绿色发展工程研究中心,云南昭通 657000
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摘要

Abstract

[Objective]Cover cropping is a widely adopted soil management technique used in fruit tree cultivation.By planting specific vegetation to cover the ground,this practice significantly influences nu-trient cycling,microbial activity,and biodiversity within the soil ecosystem.Thus,cover cropping plays a critical role in maintaining soil health and enhancing fruit quality.This study explored the impact of the grass cover(GC)and rice straw mulch(RSM)on the physicochemical properties of rhizospheric soil and the structure of bacterial communities in apple orchards.[Methods]The soil samples were col-lected from the apple orchards subjected to both GC and RSM treatments.We compared the physico-chemical properties of the soils under each treatment,focusing on key indicators such as alkaline nitro-gen(AN),soil moisture(SM),available potassium(AK),soil organic matter(OM),effective phospho-rus(AP),pH level,soil bulk density(SBD),and soil porosity(SP).Additionally,enzyme activities were measured,specifically for urease(UA)and alkaline phosphatase(APA).The structure and functionality of the bacterial communities were analyzed using the high-throughput sequencing of 16S rRNA.The core microbiomes and specific biomarkers were identified through LEfSe analysis and random forest methods.Moreover,the redundancy analysis(RDA)and Pearson correlation analysis were performed to explore the relationships between the key microbial abundances and soil physicochemical properties.[Results]The significant differences were observed in the physicochemical properties of the soil under different treatments.The GC treatment led to an increase in AN levels,while the RSM treatment en-hanced SM and AK.However,no significant differences were detected between the two treatments con-cerning OM,AP,pH,SBD,and SP.Furthermore,the enzyme activities of UA and APA in the soil with GC treatment were significantly higher than those in the soil with RSM treatment(p<0.05),with in-creases of 76.81%and 45.24%,respectively.Conversely,there were no significant differences(p>0.05)in the sucrase activity(SA)and catalase activity(CA)between the two types of mulched soils.This suggested that the distinct mulching treatments would have contrasting effects on the soil enzyme activities,with UA and APA exhibiting greater sensitivity to these treatments.The hierarchical cluster-ing analysis based on unweighted UniFrac distances revealed that inter-group differences among the soil samples from the different treatments were greater than intra-group differences.Following the two treatments,the rhizospheric bacterial communities in the apple orchards comprised 38 phyla,100 class-es,254 orders,417 families,and 777 genera.At the phylum level,Proteobacteria was the dominant phy-lum,accounting for 32.41%in the GC sample and 42.37%in the RSM sample.At the genus level,the dominant taxa in the soil with GC treatment were MND1(5.41%),RB41(5.07%),Ralstonia(4.62%),and Raoultella(3.42%).In the soil with RSM treatment,they were MND1(9.10%),Ralstonia(7.11%),RB41(2.00%),and Pseudarthrobacter(1.94%).Although the dominant bacterial groups at both the phy-lum and genus levels were largely similar between the soils treated with GC and RSM,the richness of the rhizospheric bacteria was considerably higher in the RSM sample.Moreover,the alpha diversity in-dices indicated greater bacterial diversity in the RSM soil,although the difference from the GC sample was not statistically significant.Through LEfSe analysis and random forest methods,we identified five core microbial taxa(RB41,MND1,Ralstonia,Raoultella,and Pseudarthrobacter),as well as five specif-ic biomarkers(Ellin6067,Sphingomonas,Nocardioides,Subgroup 10,and RB41).The RDA and Pear-son analyses revealed strong correlations between these microbial abundances and physicochemical soil properties,with AN and AK emerging as the primary factors that would influence the structure of the rhizosphere bacterial communities.[Conclusion]In this study,we discovered significant differences in the physicochemical properties of the rhizospheric soils with GC and RSM treatments in apple or-chards.These disparities led to substantial variations in the bacterial community structure.Our findings indicated that GC enhanced the soil alkaline nitrogen content and enzymatic activities,while RSM im-proved the soil moisture and available potassium levels.The dominant bacterial phyla and genera re-mained broadly similar in the soils treated with the two treatments,but notable differences in relative abundance were observed,with RSM exhibiting higher bacterial richness than GC.There was a close correlation between the soil physicochemical properties and key bacterial abundances,with AN and AK acting as major influencing factors.Specifically,the bacterial community associated with RSM exhibit-ed a significant positive association with AK levels,while that associated with GC correlated positively with AN expression.This research would provide a theoretical basis for optimizing cultivation practices and enhancing soil quality and microbial functionality in apple orchards located in the cool highland re-gions of Southwestern China.

关键词

苹果园/土壤覆盖/根际土壤/细菌群落/高通量测序

Key words

Apple orchard/Soil mulching/Rhizosphere soil/Bacterial community/High-throughput se-quencing

分类

农业科技

引用本文复制引用

胡志芳,鲁兴凯,全勇,程立君,李云国,黄国嫣,蔡荣靖,马勉娣,马静,陈晨,杨艳群..不同覆盖模式下苹果园根际土壤理化性质及细菌群落特征差异分析[J].果树学报,2025,42(2):322-335,14.

基金项目

云南省科技厅"云南省昭阳区苹果产业科技特派团"(NO.202104BI090028) (NO.202104BI090028)

云南省教育厅昭通苹果产业绿色发展工程研究中心建设项目(云教发(2024]5号) (云教发(2024]5号)

果树学报

OA北大核心

1009-9980

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