生态学报2026,Vol.46Issue(11):5942-5954,13.DOI:10.20103/j.stxb.202506231585
毛竹扩张对阔叶林土壤微生物碳氮利用效率的影响
Effects of moso bamboo expansion into broadleaved forest soil on microbial carbon and nitrogen use efficiencies
摘要
Abstract
Microbial carbon(C)and nitrogen(N)use efficiency are key factors regulating soil Cand N cycling.The expansion of Phyllostachys edulis(moso bamboo)alters C inputs and soil resource availability,significantly influencing below-ground ecological processes and enzymatic stoichiometry.However,the mechanisms by which moso bamboo expansion affects microbial C and N use efficiency(CUE and NUE)remain unclear.Using a space-for-time substitution approach,sampled two expansion transects comprising broadleaf forest,mixed bamboo-broadleaf forest,and pure bamboo forest to examine the effects of Phyllostachys edulis.bamboo expansion on soil physicochemical properties,C:N stoichiometric imbalance,microbial biomass carbon and nitrogen(MBC,MBN),extracellular enzyme activities,microbial resource limitation,and microbial CUE and NUE.The results showed that,compared to broadleaf forest,moso bamboo expansion significantly decreased soil organic carbon(SOC),total nitrogen(TN),dissolved organic carbon(DOC,62%—72%),dissolved organic nitrogen(DON,32%—61%),electrical conductivity(EC),and the soluble C:N ratio(RDOC:DON,31%—44%),but increased soil pH and NH4+content(by 23%—81%).These changes collectively reduced the soil C:N stoichiometric imbalance ratio(by 16%—69%),indicating a significant shift in C and N resource supply favoring higher relative N availability compared to C.Bamboo expansion decreased soil MBC(by 38%—46%),MBN(by 56%—73%),and the activities of β-glucosidase(BG,14%—32%),leucine aminopeptidase(LAP,23%—57%),β-N-acetylglucosaminidase(NAG,16%—53%),and the threshold elemental ratio difference(RC:N-TERC:N,57%—64%)significantly decreased with bamboo expansion.In contrast,the soil MBC/MBN ratio(by 22%—125%)and the BG/(LAP+NAG)ratio(by 0%—67%)rose,It is indicated that microorganisms respond to the imbalance of nutrient resources by adjusting their own biomass activity and stoichiometric ratio.Bamboo expansion significantly increased microbial CUE(by 4%—15%)but decreased microbial NUE(by 1%—53%).Partial least squares path revealed that bamboo expansion enhanced CUE and reduced NUE primarily by raising soil pH and alleviating C:N stoichiometric imbalance,which promoted an increase in MBC/MBN.In contrast,the direct path involving C and N acquiring enzyme activities was not significant.This indicates that under reduced N limitation,microbial strategies shifted from a resource-acquisitive mode,dependent on extracellular enzyme investment,toward an efficiency-oriented strategy relying on intracellular biomass reallocation.Mantel tests and random forest analysis further supported these results,identifying MBC/MBN ratio,soil C:N stoichiometric imbalance,pH,BG activity,and RC.N-TERC:N as key drivers of CUE,while the MBC/MBN ratio,soil C:N stoichiometric imbalance,pH,MBC,and RC:N-TERC.N were major predictors of NUE.The above study demonstrates that moso bamboo expansion alters soil resource stoichiometric,leading to adaptation strategies that prioritize C metabolism under limited resources availability.These findings provide a scientific basis for a deeper understanding of microbially mediated C and N cycling in subtropical forest ecosystems.关键词
毛竹扩张/土壤养分失衡/酶化学计量特征/碳利用效率/氮利用效率Key words
Phyllostachys edulis expansion/soil nutrient imbalance/enzymatic stoichiometry/carbon use efficiency/nitrogen use efficiency引用本文复制引用
于秋然,罗金辉,滕秋梅,毛坚杰,刘玲慧,金晔,张前前,李永春..毛竹扩张对阔叶林土壤微生物碳氮利用效率的影响[J].生态学报,2026,46(11):5942-5954,13.基金项目
国家自然科学基金(42307432) (42307432)
浙江省自然科学基金(LQ24D030001) (LQ24D030001)
国家级大学生创新创业训练计划项目(202310341064) (202310341064)