[1] Chen Y, Chen Y, Wang L, et al. Differential soil nutrient effects on the growth of Casuarina equisetifolia in red and sandy coastal soils. Journal of Soils and Sediments, 2025, 25: 2450-2462 [2] 张昕, 马新颖, 王秋芹, 等. 木麻黄共生固氮菌Frankia的分离鉴定及固氮效应. 生态学杂志, 2011, 30(9): 1975-1981 [3] Luo ZW, Zhong QP, Han XG, et al. Depth-dependentvariability of biological nitrogen fixation and diazotrophic communities in mangrove sediments. Microbiome, 2021, 9: 212 [4] Morando M, Magasin J, Cheung S, et al. Global biogeography of N2-fixing microbes: nifH amplicon database and analytics workflow. Earth System Science Data, 2024, 17: 393-422 [5] Dietrich M, Panhölzl C, Angel R, et al. Plant roots affect free-living diazotroph communities in temperate grassland soils despite decades of fertilization. Communications Biology, 2024, 7: 846 [6] 薛杨, 杨众养, 王小燕, 等. 景观型木麻黄优良品种选育研究. 热带农业科学, 2012, 32(12): 43-49 [7] Maity PJ, Pawlowski K. Anthropogenic influences on the distribution of the Casuarina-Frankia symbiosis. Symbiosis, 2021, 84: 353-367 [8] Farrer EC, van Bael SA, Clay K, et al. Plant-microbial symbioses in coastal systems: Their ecological importance and role in coastal restoration. Estuaries and Coasts, 2022, 45: 1805-1822 [9] 仲崇禄. 木麻黄遗传变异规律的研究. 博士论文. 北京: 中国林业科学研究院, 2000 [10] 储薇, 王炎炎, 郭玥, 等. 木麻黄根际促生菌的筛选及对种子萌发和幼苗生长的影响. 应用生态学报, 2024, 35(8): 2159-2166 [11] Sher AW, Aufrecht JA, Herrera D, et al. Dynamic nitrogen fixation in an aerobic endophyte of Populus. The ISME Journal, 2024, 18: wrad012 [12] 叶悦龄, 左婷, 陈琦润, 等. 互花米草入侵对福建省滨海湿地土壤固氮菌丰度的影响. 生态学杂志, 2025, 44(12): 3891-3897 [13] Qi YY, He YT, Yao L, et al. Relationships between nitrogen-fixing bacteria community structure in Vicia villosa nodules, soil properties and rocky desertification degree in karst area southwest China. PLoS One, 2025, 20: e0329408 [14] 李小容. 不同林龄木麻黄林地土壤微生态环境研究. 硕士论文. 海口: 海南师范大学, 2014 [15] Zhou LT, Li JJ, Pokhrel GR, et al. nifH gene sequencing reveals the effects of successive monoculture on the soil diazotrophic microbial community in Casuarina equisetifolia plantations. Frontiers in Plant Science, 2021, 11: 578812 [16] Srivastava AK, Ambasht RS. Soil moisture control of nitrogen fixation activity in dry tropical Casuarina plantation forest. Journal of Environmental Management, 1994, 42: 49-54 [17] Aldassugurova C, Ultanbekova G, Ametov A, et al. Agrochemical compositions of soils and rhizosphere microorganisms of Rosa potentilliflora Chrshan. et M. Pop. in eastern and central part of Zailiyskiy Alatau. Ecological Processes, 2025, 14: 66 [18] 付刚, 刘增文, 崔芳芳. 秦岭山区典型人工林土壤酶活性、微生物及其与土壤养分的关系. 西北农林科技大学学报: 自然科学版, 2008, 36(10): 88-94 [19] Saiya-Cork KR, Sinsabaugh RL, Zak DR. The effects of long term nitrogen deposition on extracellular enzyme activity in an Acer saccharum forest soil. Soil Biology and Biochemistry, 2002, 34: 1309-1315 [20] Lin Q, Li MM, Wang Y, et al. Root exudates and chemotactic strains mediate bacterial community assembly in the rhizosphere soil of Casuarina equisetifolia L. Frontiers in Plant Science, 2022, 13: 988442 [21] Xu ZX, Zuo LZ, Zhang YQ, et al. Changing characteristics and influencing factors of the bacterial and fungal communities in the litter of Casuarina equisetifolia forests of different ages in Hainan Island.Research Square, 2022, 202: 107721 [22] Rahav E, Herut B, Spungin D, et al. Heterotrophic bacteria outcompete diazotrophs for orthophosphate in the Mediterranean Sea. Limnology and Oceanography, 2021, 67: 159-171 [23] Delgado-Baquerizo M, Maestre FT, Reich PB, et al. Microbial diversity drives multifunctionality in terrestrial ecosystems. Nature Communications, 2016, 7: 10541 [24] Hopkins L, Yim K, Rumora A, et al. Genotypic identification of trees using DNA barcodes and microbiome analysis of rhizosphere microbial communities. Genes, 2024, 15: 865 [25] Pereira LC, Pereira CB, Correia LV, et al. Corn responsiveness to Azospirillum: Accessing the effect of root exudates on the bacterial growth and its ability to fix nitrogen. Plants, 2020, 9: 923 [26] Sharma R, Kumar D, Kapoor N, et al. Insights into the biodiversity, mechanisms and plant growth-promoting effects of Bradyrhizobium and their potential in sustainable agriculture: A review. Pedosphere, 2026, 36: 147-164 [27] Li SJ, Strous M, Diao M. Groundwater nitrogen fixation is associated with methane and sulfur cycling.Environmental Science and Technology, 2025,59: 18664-18674 [28] Inoue T, Shimono A, Akaji Y, et al. Mangrove-diazotroph relationships at the root, tree and forest scales: Diazotrophic communities create high soil nitrogenase activities in Rhizophora stylosa rhizospheres. Annals of Botany, 2020, 125: 131-144 [29] Song YJ, Ma L, Zhang HY, et al. The diversity and structure of diazotrophic communities in the rhizosphere of coastal saline plants is mainly affected by soil physicochemical factors but not host plant species. Frontiers in Marine Science, 2022, 9: 1100289 [30] Reed SC, Townsend AR, Cleveland CC, et al. Microbial community shifts influence patterns in tropical forest nitrogen fixation. Oecologia, 2010,164: 521-531 [31] Chen DH, Hou HY, Zhou ST, et al. Soil diazotrophic abundance, diversity, and community assembly mechanisms significantly differ between glacier riparian wetlands and their adjacent alpine meadows. Frontiers in Microbiology, 2022, 13: 1063027 [32] Zheng MY, Zhu P, Zheng JY, et al. Effects of soil texture and nitrogen fertilisation on soil bacterial community structure and nitrogen uptake in flue-cured tobacco. Scientific Reports, 2021, 11: 22643 [33] Yarwood S, Wick A, Williams M, et al. Parent material and vegetation influence soil microbial community structure following 30-years of rock weathering and pedogenesis. Microbial Ecology, 2015, 69: 383-394 [34] 董志新, 孙波, 殷士学, 等. 气候条件和作物对黑土和潮土固氮微生物群落多样性的影响. 土壤学报, 2012, 49(1): 130-138 [35] Geng MD, Zhang WZ, Hu T, et al. Eutrophication causes microbial community homogenization via modulating generalist species. Water Research, 2022, 210: 118003 [36] Tian K, Chen SM, Ye RM, et al. Initial microbiome and tree root status structured the soil microbial community discrepancy of the subtropical pine-oak forest in a large urban forest park. Frontiers in Microbiology, 2024, 15: 1391863 |