[1] Garcia-Ochoa F, Santos V E, Casas J A, et al.Xanthan gum: production, recovery, and properties[J]. Biotechnology Advances: An International Review Journal.2000(7):18. [2] 苗宗成,王蕾,王登武,等.基于黄原胶-蒙脱土新型复合材料的保水性能研究[J].安徽农业科学,2012,40(8):4807-4808. [3] Mikkelsen R L.Using hydrophilic polymers to control nutrient release[J].Nutrient Cycling in Agroecosystems,1994,38(1):53-59. [4] Hou X, Li R, He W,et al.Superabsorbent polymers influence soil physical properties and increase potato tuber yield in a dry-farming region[J].Journal of Soil & Sediments,2018,18(3):816-826. [5] Satriani A, Catalano M, Scalcione E.The role of superabsorbent hydrogel in bean crop cultivation under deficit irrigation conditions: A case-study in Southern Italy[J].Elsevier,2018(10):1016. [6] 陈琪,刘之广,张民,等. 包膜磷酸二铵配施黄腐酸提高小麦产量及土壤养分供应强度[J].土壤学报,2018,55(6):1472-1484. [7] 朱京涛,曹霞,王学东.生物黄腐酸对番茄幼苗发育及产量品质的影响[J].安徽农业科学,2009,37(3):964-965. [8] 李志鹏,刘浩,于晓娜,等.黄腐酸对植烟土壤改良及烟叶品质的影响研究[J].腐植酸,2017,178(5):45. [9] 孙希武,彭福田,肖元松,等.硅钙钾镁肥配施黄腐酸钾对土壤酶活性及桃幼树生长的影响[J].核农学报,2020,34(4):870-877. [10] 孔钰凤. 野生和栽培大豆根际微生物对干旱胁迫的响应及反馈[D].北京:中国科学院大学,2017. [11] 崔俊涛. 微生物在土壤腐殖质形成与转化中作用的研究[D]. 长春:吉林农业大学,2006. [12] Bridge P D, Newsham K K.Soil fungal community composition at Mars Oasis, a southern maritime Antarctic site, assessed by PCR amplification and cloning[J].Fungal Ecology. 2009,2(2):66-74. [13] 任岩岩. 营养型抗旱剂对冬小麦根际微生物的影响[D].郑州:河南大学, 2009. [14] Nan X, Tan G, Wang H, et al.Effect of biochar additions to soil on nitrogen leaching, microbial biomass and bacterial community structure[J].European Journal of Soil Biology.2016, 74:1-8. [15] Liu W, Wang S, Lin P, et al.Response of CaCl2-extractable heavy metals, polychlorinated biphenyls, and microbial communities to biochar amendment in naturally contaminated soils[J]. Journal of Soil & Sediments, 2016,16(2):476-485. [16] 沙月霞,黄泽阳,李云翔,等.生物菌剂对土壤微生物群落结构和功能的影响[J].农业环境科学学报, 2022,41(12):11. [17] 孙红敏,余利岩,张玉琴.地嗜皮菌科放线菌的研究进展[J]. 微生物学报, 2015,7655(12):1521-1529. [18] 雒晓芳,陈俊楠,田丹妮,等.白色类诺卡氏菌的分离鉴定及其抗菌活性初探[J].中国酿造,2015,34(10):58-61. [19] Canbolat M Y, Bilen S, Akmak R, et al.Effect of plant growth-promoting bacteria and soil compaction on barley seedling growth, nutrient uptake, soil properties and rhizosphere microflora[J].Biology & Fertility of Soils.2006,42(4): 350-357. [20] Kolton M, Harel Y M, Pasternak Z, et al.Impact of biochar application to soil on the root-associated bacterial community structure of fully developed greenhouse pepper plants[J].Applied & Environmental Microbiology.2011,77(14):4924. [21] 巩瑞红,王小兵,赵吉睿,等.荒漠草原植物根际溶磷细菌的分离鉴定及其溶磷能力的比较[J].内蒙古农业科技,2014(4):6-9. [22] 杜思瑶,于淼,刘芳华,等.设施种植模式对土壤细菌多样性及群落结构的影响[J].中国生态农业学报,2017,25(11):11. [23] 商迎迎. 不同植物人工湿地脱氮效果及微生物多样性研究[D].泰安:山东农业大学,2017. [24] 胡江春,薛德林,马成新,等.植物根际促生菌(PGPR)的研究与应用前景[J].应用生态学报,2004,15(10):4. [25] Treseder K K, Maltz M R, Hawkins B A, et al.Evolutionary histories of soil fungi are reflected in their large-scale biogeography[J]. Ecology Letters,2014,17(9):1086-1093. [26] Wang D, Rui Y, Ding K, et al.Precipitation drives the biogeographic distribution of soil fungal community in Inner Mongolian temperate grasslands[J].Journal of Soils and Sediments,2017:1-7. [27] 陈丹梅,段玉琪,杨宇虹,等.长期施肥对植烟土壤养分及微生物群落结构的影响[J].中国农业科学,2014,47(17):3424-3433. [28] 马坤,芦光新,邓晔,等.有机肥对烟草根际微生物及土壤理化性质的影响[J].中国农业科学,2022,30(3):594-602. |