Journal of Zhejiang Agricultural Sciences ›› 2022, Vol. 63 ›› Issue (4): 767-771.DOI: 10.16178/j.issn.0528-9017.20213343
Previous Articles Next Articles
Received:
2021-12-21
Online:
2022-04-11
Published:
2022-04-06
CLC Number:
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.zjnykx.cn/EN/10.16178/j.issn.0528-9017.20213343
组别 | OTU指数 | Chao指数 | ACE指数 | Simpson指数 | Shannon指数 |
---|---|---|---|---|---|
B | 3 572±582 | 5 464±658 | 6 462±286 | 0.016±0.006 | 5.87±0.42 |
C | 4 061±191 | 6 074±210 | 7 549±765 | 0.012±0.005 | 6.29±0.20 |
组别 | OTU指数 | Chao指数 | ACE指数 | Simpson指数 | Shannon指数 |
---|---|---|---|---|---|
B | 3 572±582 | 5 464±658 | 6 462±286 | 0.016±0.006 | 5.87±0.42 |
C | 4 061±191 | 6 074±210 | 7 549±765 | 0.012±0.005 | 6.29±0.20 |
门 | B/% | C/% |
---|---|---|
变形菌门 | 38.71 | 35.94 |
绿弯菌门 | 19.81 | 13.51 |
厚壁菌门 | 12.71 | 9.20 |
绿菌门 | 8.55 | 8.80 |
放线菌门 | 4.77 | 6.84 |
拟杆菌门 | 4.15 | 7.58 |
蓝藻门 | 0.32 | 5.43 |
浮霉菌门 | 2.11 | 3.25 |
酸杆菌门 | 1.76 | 3.21 |
疣微菌门 | 2.48 | 2.99 |
互养菌门 | 3.35 | 1.02 |
芽单胞菌门 | 0.07 | 0.56 |
其他 | 1.91 | 1.51 |
门 | B/% | C/% |
---|---|---|
变形菌门 | 38.71 | 35.94 |
绿弯菌门 | 19.81 | 13.51 |
厚壁菌门 | 12.71 | 9.20 |
绿菌门 | 8.55 | 8.80 |
放线菌门 | 4.77 | 6.84 |
拟杆菌门 | 4.15 | 7.58 |
蓝藻门 | 0.32 | 5.43 |
浮霉菌门 | 2.11 | 3.25 |
酸杆菌门 | 1.76 | 3.21 |
疣微菌门 | 2.48 | 2.99 |
互养菌门 | 3.35 | 1.02 |
芽单胞菌门 | 0.07 | 0.56 |
其他 | 1.91 | 1.51 |
[1] | Committee on Characterization of Wetlands, Water Science and Technology Board, Board on Environmental Studies and Toxicology, et al. Wetlands:characteristics and boundaries[M]. Washington D C: National Academy Press, 1995. |
[2] | 陈永华, 吴晓芙, 陈明利, 等. 人工湿地污水处理系统冬季植物的筛选与评价[J]. 环境科学, 2010, 31(8):1789-1794. |
[3] | 贾策. 生物炭潮汐流人工湿地强化脱氮特性研究[D]. 西安:西安建筑科技大学, 2018. |
[4] | 苏展. 南方地区尾水人工湿地处理技术研究及应用[D]. 杭州:浙江大学, 2018. |
[5] | 裘湛. 人工湿地植物根际效应对根部微生物影响的研究进展[J]. 净水技术, 2018, 37(7):26-30. |
[6] | 税永红. 生态浮床原位修复富营养水体研究进展[J]. 四川环境, 2018, 37(5):117-124. |
[7] | 张韵. 水污染治理中水生植物的作用分析[J]. 低碳世界, 2021, 11(8):27-28. |
[8] | KIRK P M, CANNON P F, MINTER D W, et al. Dictionary of the Fungi [M].10th Edition. Clayton: Csiro Publishing, 2008. |
[9] | 李淑娟, 葛利云, 邓欢欢. 复合垂直流人工湿地净化过程中DOM的三维荧光光谱分析[J]. 光谱学与光谱分析, 2015, 35(4):946-950. |
[10] |
MAGOČ T, SALZBERG S L. FLASH:fast length adjustment of short reads to improve genome assemblies[J]. Bioinformatics (Oxford, England), 2011, 27(21):2957-2963.
DOI URL |
[11] |
CAPORASO J G, KUCZYNSKI J, STOMBAUGH J, et al. QIIME allows analysis of high-throughput community sequencing data[J]. Nature Methods, 2010, 7(5):335-336.
DOI URL |
[12] |
WANG Q, GARRITY G M, TIEDJE J M, et al. Naive Bayesian classifier for rapid assignment of rRNA sequences into the new bacterial taxonomy[J]. Applied and Environmental Microbiology, 2007, 73(16):5261-5267.
DOI URL |
[13] |
EDGAR R C. UPARSE: highly accurate OTU sequences from microbial amplicon reads[J]. Nature Methods, 2013, 10(10):996-998.
DOI URL |
[14] |
PARKS D H, TYSON G W, HUGENHOLTZ P, et al. STAMP: statistical analysis of taxonomic and functional profiles[J]. Bioinformatics, 2014, 30(21):3123-3124.
DOI URL |
[15] | 黄冰, DAVID A T HARPER, ΦYVIND HAMMER. 定量古生物学软件PAST及其常用功能[J]. 古生物学报, 2013, 52(2):161-181. |
[16] |
RUBIN S S D, MARÍN I, GÓMEZ M J, et al. Prokaryotic diversity and community composition in the Salar de Uyuni, a large scale, chaotropic salt flat[J]. Environmental Microbiology, 2017, 19(9):3745-3754.
DOI URL |
[17] | 席晓敏. 乳房炎牛乳中微生物多样性及代谢组学研究[D]. 呼和浩特: 内蒙古农业大学, 2016. |
[18] | 王芬, 段洪利, 刘亚飞, 等. 人工湿地处理含盐富营养化水的植物根际与非根际菌群分析[J]. 环境工程学报, 2020, 14(7):1844-1851. |
[19] | ZHANG K P, DELGADO-BAQUERIZO M, ZHU Y G, et al. Space is more important than season when shaping soil microbial communities at a large spatial scale[J]. mSystems, 2020, 5(3):e00783-e00719. |
[20] | 潘福霞, 来晓双, 李欣, 等. 不同湿地植物脱氮效果与根际土壤微生物群落功能多样性特征分析[J]. 环境科学研究, 2020, 33(6):1497-1503. |
[21] |
STOTTMEISTER U, WIEßNER A, KUSCHK P, et al. Effects of plants and microorganisms in constructed wetlands for wastewater treatment[J]. Biotechnology Advances, 2003, 22(1/2):93-117.
DOI URL |
[22] | 王青璐, 彭明春, 赵安娜, 等. 人工湿地中影响微生物空间分布因素的探讨[J]. 环境科学导刊, 2009, 28(2):1-3, 44. |
[23] | 鲁莽. 植物根系及其分泌物对微生物生长及活性的影响[J]. 化学与生物工程, 2012, 29(3):18-21. |
[24] | 姜磊, 凃月, 侯英卓, 等. 植被恢复的岩溶湿地沉积物细菌群落结构和多样性分析[J]. 环境科学研究, 2020, 33(1):200-209. |
[25] |
AN J X, LIU C, WANG Q, et al. Soil bacterial community structure in Chinese wetlands[J]. Geoderma, 2019, 337:290-299.
DOI URL |
[26] |
TAIBI Z N, SAOUDI B, BOUDELAA M, et al. Purification and biochemical characterization of a highly thermostable xylanase from Actinomadura sp. strain Cpt20 isolated from poultry compost[J]. Applied Biochemistry and Biotechnology, 2012, 166(3):663-679.
DOI URL |
[27] | 李鹏, 端青, 宋立华. 衣原体最新分类体系与分类鉴定方法研究进展[J]. 中国人兽共患病学报, 2014, 30(12):1262-1266. |
[28] | 陈智裕, 马静, 赖华燕, 等. 植物根系对根际微环境扰动机制研究进展[J]. 生态学杂志, 2017, 36(2):524-529. |
[29] | 蒋景龙, 余妙, 李丽, 等. 西洋参根腐病发生与根际土壤细菌群落结构变化关系研究[J]. 中草药, 2018, 49(18):4399-4407. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||