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3 期                          李强等: 岩溶土壤中微生物研究进展与展望                                           4 3 5

               志ꎬ 42(6): 1-9.]                                   [J]. Biology and Fertility of Soilsꎬ 48(8): 879-887.
            FAN ZZꎬ LU SYꎬ LIU Sꎬ et al.ꎬ 2019. Changes in plant  LI Jꎬ ZHAO Jꎬ LIAO Xꎬ et al.ꎬ 2023. Long ̄term returning
               rhizosphere microbial communities under different vegetation  agricultural residues increases soil microbe ̄nematode network
               restoration patterns in karst and non ̄karst ecosystems  complexity and ecosystem multifunctionality [J]. Geodermaꎬ
               [J]. Scientific Reportsꎬ 9(1): 8761.              430: 116340.
            FENG ZWꎬ GAO Hꎬ DING Lꎬ et al.ꎬ 2025. Temporal shifts in  LI YMꎬ WANG SJꎬ LU Mꎬ et al.ꎬ 2019. Rhizosphere
               the  phosphate  mobilising  bacterial  community  reveal  interactions between earthworms and arbuscular mycorrhizal
               contrasting succession patterns in response to different  fungi increase nutrient availability and plant growth in the
               phosphorus  sources  [ J ].  Environmental  Researchꎬ  desertification soils [ J ]. Soil and Tillage Researchꎬ
               266: 120599.                                      186(1): 146-151.
            FRANCESCA COTRUFO Mꎬ LAVALLEE JMꎬ ZHANG Yꎬ et      LIANG Cꎬ SCHIMEL JPꎬ JASTROW JDꎬ 2017. The importance
               al.ꎬ 2021. In ̄N ̄Out: A hierarchical framework to understand  of anabolism in microbial control over soil carbon storage
               and predict soil carbon storage and nitrogen recycling  [J]. Nature Microbiologyꎬ 2(8): 17105.
               [J]. Global Change Biologyꎬ 27(19): 4465-4468.  LIANG Cꎬ ZHU XFꎬ 2021. The soil Microbial Carbon Pump as
            GHOLAMI Sꎬ SHEIKHMOHAMADI Bꎬ SAYAD Eꎬ 2017.          a new concept for terrestrial carbon sequestration [ J ].
               Spatial relationship between soil macrofauna biodiversity and  Science China Earth Sciencesꎬ 64(4): 545-558.
               trees in Zagros forestsꎬ Iran [J]. Catenaꎬ 159(1): 1-8.  LIANG Lꎬ LIANG XBꎬ 2014. Vertical distribution of ammonia
            HARTMANN Mꎬ FREY Bꎬ MAYER Jꎬ et al.ꎬ 2015. Distinct  bacteria (AOB) and ammonia oxidizing archaea (AOA) in
               soil microbial diversity under long ̄term organic and  the sediments of Lake Baihua [J]. Bulletin of Mineralogyꎬ
               conventional farming [ J ]. The ISME Journalꎬ 9(5):  Petrology and Geochemistryꎬ 33(2): 221-225. [梁龙ꎬ 梁小
               1177-1194.                                        兵ꎬ 2014. 氨氧化细菌和氨氧化古菌在百花湖沉积物中的
            HU Lꎬ LI Qꎬ YAN JHꎬ et al.ꎬ 2022. Vegetation restoration  垂直分布 [J]. 矿物岩石地球化学通报ꎬ 33(2): 221-225.]
               facilitates belowground microbial network complexity and  LIAO Cꎬ LONG CYꎬ ZHANG Qꎬ et al.ꎬ 2022. Stronger effect
               recalcitrant soil organic carbon storage in southwest China  of litter quality than micro ̄organisms on leaf and root litter C
               karst region [ J ]. Science of the Total Environmentꎬ  and N loss at different decomposition stages following a
               820(19): 153137.                                  subtropical land use change [ J ]. Functional Ecologyꎬ
            HU PLꎬ ZHANG Wꎬ NOTTINGHAM ATꎬ et al.ꎬ 2024.         36(4): 896-907.
               Lithological controls on soil aggregates and minerals regulate  LIU Sꎬ ZHANG XYꎬ DUNGAIT JAJꎬ et al.ꎬ 2022. Rare
               microbial carbon use efficiency and necromass stability  microbial taxa rather than phoD gene abundance determine
               [ J ]. Environmental Science & Technologyꎬ 58(48):  hotspots of alkaline phosphomonoesterase activity in the karst
               21186-21199.                                      rhizosphere soil [J]. Biol Fertil Soilsꎬ 57: 257-268.
            HUANG YDꎬ FU Cꎬ LI Qꎬ 2024. Planting years affect endophytic  LIU Xꎬ LIANG Mꎬ ETIENNE RSꎬ et al.ꎬ 2016. Phylogenetic
               bacterial community of Cerasus humilis (Bge.) Sok. from karst  congruence between subtropical trees and their associated
               rocky desertification control areas [J]. Acta Microbiologica  fungi [J]. Ecology and Evolutionꎬ 6(23): 8412-8422.
               Sinicaꎬ 64(6): 2057-2070. [黄雅丹ꎬ 付灿ꎬ 李强ꎬ 2024. 喀  LIU YLꎬWANG PꎬWANG JKꎬ 2023. Formation and stability
               斯特石漠化治理区钙果种植年限对根内细菌群落的影响                          mechanism of soil aggregates: Progress and prospect
               [J]. 微生物学报ꎬ 64(6): 2057-2070.]                    [J]. Acta Pedologica Sinicaꎬ 60(3):627-643. [刘亚龙ꎬ
            JIANG ZCꎬ LIAN YQꎬ QIN XQꎬ 2014. Rocky desertification in  王萍ꎬ 汪景宽ꎬ 2023. 土壤团聚体的形成和稳定机制:研
               Southwest China: Impactsꎬ causesꎬ and restoration [ J].  究进展与展望 [J]. 土壤学报ꎬ 60(3): 627-643.]
               Earth ̄Science Reviewsꎬ 132(1): 1-12.            LIU ZHꎬ YUAN DXꎬ DREYBRODT Wꎬ 2005. Comparative
            KRAVCHENKO Aꎬ GUBER Aꎬ GUNINA Aꎬ et al.ꎬ 2021.       study of dissolution rate ̄determining mechanisms of limestone
               Pore ̄scale view of microbial turnover: Combining 14C  and dolomite [ J ]. Environmental Geologyꎬ 49(2):
               imagingꎬμCT and zymography after adding soluble carbon to  274-279.
               soil pores of specific sizes [ J]. European Journal of Soil  LONG XWꎬ ZHAO Jꎬ LI JNꎬ et al.ꎬ 2024. Disturbance
               Scienceꎬ 72(2): 593-607.                          intensity shapes the soil micro ̄food web compositions and
            KUMAR Jꎬ ATRI NSꎬ 2018. Studies on ectomycorrhiza: An  energy fluxes during seven ̄year land use changes [J]. Soil
               appraisal [J]. Botanical Reviewꎬ 84(2): 108-155.  Biology and Biochemistryꎬ 194(7): 109424.
            LEHMANN J.ꎬ HANSEL CMꎬ KAISERꎬ Cꎬ et al.ꎬ 2020.    MIELKE Lꎬ TAUBERT Mꎬ CESARZ Sꎬ et al.ꎬ 2022. Nematode
               Persistence of soil organic carbon caused by functional  grazing increases the allocation of plant ̄derived carbon to
               complexity [J]. Nature Geoscienceꎬ 13(1): 529-534.  soil bacteria and saprophytic fungiꎬ and activates bacterial
            LI Hꎬ XIANG Dꎬ WANG Cꎬ et al.ꎬ 2012. Effects of epigeic  species of the rhizosphere [J]. Pedobiologiaꎬ 90: 150787.
               earthworm ( Eisenia fetida ) and arbuscular mycorrhizal  MORRISSEY EMꎬ KANE Jꎬ TRIPATHI BMꎬ et al.ꎬ 2023.
               fungus ( Glomus intraradices ) on enzyme activities of a  Carbon acquisition ecological strategies to connect soil
               sterilized soil ̄sand mixture and nutrient uptake by maize  microbial biodiversity and carbon cycling [J]. Soil Biology
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