野葛根际固氮微生物群落分布特征及其影响因素
作者:
基金项目:

国家自然科学基金(41701293);湖南省自然科学基金(2019JJ50316);广西重点研发计划(桂科AB17129009)


Distribution pattern and influencing factors of nitrogen-fixing microbial community in the rhizosphere of Pueraria lobata
Author:
  • 摘要
  • | |
  • 访问统计
  • |
  • 参考文献 [30]
  • |
  • 相似文献 [20]
  • | | |
  • 文章评论
    摘要:

    【目的】研究野葛根际固氮微生物群落的空间分布特征,同时结合地理气候因子、土壤理化性质探讨影响野葛根际固氮微生物群落的空间分布特征的主要因素。【方法】在野葛广泛分布的广西、江西和湖南采集17份野葛根际土壤,测定土壤常规理化性质,进行基于MiSeq测序平台的nifH基因高通量测序,采用多元统计分析方法探索固氮微生物群落结构与环境因子之间的关系。【结果】不同采样区域固氮微生物α多样性无显著差异;同一采样区内各样点的固氮微生物群落结构与组成较相似,而不同采样区之间固氮微生物群落结构与组成差异较大,这表明固氮微生物群落存在明显的区域性分布特征。野葛根际土壤中固氮微生物主要归属于变形菌门(Proteobacteria)(相对丰度>60%),在目水平上,已注释出的固氮微生物主要归属于根瘤菌目(Rhizobiales)和伯克氏菌目(Burkholderiales)。根瘤菌目相对丰度在江西采样区最高,伯克氏菌目相对丰度在湖南采样区最高。pH、交换性钙、全钾、海拔和年平均气温对土壤固氮微生物群落结构的影响较大。优势种群伯克氏菌目与pH、交换性钙和全钾正相关,与C/N负相关;优势种群根瘤菌目与pH、交换性钙、海拔和年均温负相关,与全钾和砂粒含量正相关。【结论】不同地理区域野葛根际土壤中固氮微生物α多样性无显著差异,但固氮微生物群落结构与组成存在明显的区域性分布特征。其群落组成受地理环境和土壤理化性质的共同影响,且固氮微生物不同种群对环境因子的响应存在差异。

    Abstract:

    [Objective] The aims of this study were to clarify the spatial pattern of the nitrogen-fixing microbial community in the rhizosphere of Kudzu (Pueraria lobata), and to explore the relationship between environmental factors and the spatial pattern. [Methods] A total of 17 rhizosphere soil samples were collected from Hunan, Jiangxi, and Guangxi province, where Kudzu was widely distributed. The physical and chemical parameters of the samples were measured by routine methods, and the composition and diversity of nitrogen-fixing microbial community was performed by high-throughput sequencing of nifH gene. Multivariate statistical analysis was used to explore the relationship between the composition of the nitrogen-fixing microbial community and environmental factors. [Results] The α diversity of nitrogen-fixing microorganisms were not significantly different among three sampling regions. The composition of nitrogen-fixing microbial communities were similar in the same sampling region, while were quite different among three sampling regions. It indicated that biogeographical pattern of nitrogen-fixing microbial community was existed. The predominant phylum of nitrogen fixing microorganisms was Proteobacteria, whose relative abundance accounted for more than 60%. At the order level, the species that could be annotated mainly belonged to Rhizobiales and Burkholderiales. The relative abundance of Rhizobiales was highest in Jiangxi, while the relative abundance of Burkholderiales was highest in Hunan. pH, exchangeable calcium, total potassium, elevation and annual mean temperature were the main factors that influenced the composition of nitrogen fixing community. Burkholderiales was positively correlated with pH, exchangeable calcium and total potassium; while was negatively correlated with the ratio of carbon to nitrogen. Rhizobiales was positively correlated with total potassium and the content of sand, while was negatively correlated with pH, exchangeable calcium, elevation and annual mean temperature. [Conclusion] There was no significant difference in the α diversity of nitrogen-fixing microorganisms in the Kudzu rhizosphere soil across different geographical regions; while a clear biogeographical pattern of nitrogen-fixing microorganisms was existed. The spatial pattern of the community was jointly affected by the geographic and soil factors; in addition, the effects of the same environmental factor were distinct for different nitrogen-fixing microbial populations.

    参考文献
    [1] Vitousek PM, Menge DNL, Reed SC, Cleveland CC. Biological nitrogen fixation:rates, patterns and ecological controls in terrestrial ecosystems. Philosophical Transactions of the Royal Society of London Series B, Biological Sciences, 2013, 368(1621):20130119.
    [2] Che RX, Deng YC, Wang F, Wang WJ, Xu ZH, Hao YB, Xue K, Zhang B, Tang L, Zhou HK, Cui XY. Autotrophic and symbiotic diazotrophs dominate nitrogen-fixing communities in Tibetan grassland soils. Science of the Total Environment, 2018, 639:997-1006.
    [3] 刘璐, 何寻阳, 杜虎, 王克林. 喀斯特土壤固氮微生物群落与植被、土壤的关系. 生态学报, 2017, 37(12):4037-4044. Liu L, He XY, Du H, Wang KL. The relationships among nitrogen-fixing microbial communities, plant communities, and soil properties in Karst regions. Acta Ecologica Sinica, 2017, 37(12):4037-4044. (in Chinese)
    [4] Mirza BS, McGlinn DJ, Bohannan BJM, Nüsslein K, Tiedje JM, Rodrigues JLM. Diazotrophs show signs of restoration in Amazon rain forest soils with ecosystem rehabilitation. Applied and Environmental Microbiology, 2020, 86(10):1-10.
    [5] 赵辉, 周运超. 不同母岩发育马尾松土壤固氮菌群落结构和丰度特征. 生态学报, 2020, 40(17):6189-6201. Zhao H, Zhou YC. Characteristics of structure and abundance of the nitrogen-fixing bacterial community in Pinus massoniana soil developed from different parent rocks. Acta Ecologica Sinica, 2020, 40(17):6189-6201. (in Chinese)
    [6] Zehr JP, Jenkins BD, Short SM, Steward GF. Nitrogenase gene diversity and microbial community structure:a cross-system comparison. Environmental Microbiology, 2003, 5(7):539-554.
    [7] Fang WS, Yan DD, Wang QX, Huang B, Ren ZJ, Wang XL, Wang XN, Li Y, Ouyang CB, Migheli Q, Cao AC. Changes in the abundance and community composition of different nitrogen cycling groups in response to fumigation with 1,3-dichloropropene. Science of the Total Environment, 2019, 650:44-55.
    [8] Tang HM, Li C, Cheng KK, Shi LH, Wen L, Li WY, Xiao XP. Effect of different Short-term tillage management on nitrogen-fixing bacteria community in a double-cropping paddy field of Southern China. Journal of Basic Microbiology, 2021, 61(3):241-252.
    [9] 陈玉真, 王峰, 吴志丹, 张文锦, 翁伯琦, 尤志明. 林地转变为茶园对土壤固氮菌群落结构及多样性的影响. 应用与环境生物学报, 2020, 26(5):1096-1106. Chen YZ, Wang F, Wu ZD, Zhang WJ, Weng BQ, You ZM. Effects of soil nitrogen-fixing bacteria community and diversity after converting forestland into tea garden. Chinese Journal of Applied and Environmental Biology, 2020, 26(5):1096-1106. (in Chinese)
    [10] 胡书娟, 詹庆才, 刘璐. 葛属植物-根瘤菌共生体的研究进展. 湖南农业科学, 2020(12):96-100. Hu SJ, Zhan QC, Liu L. Research progress of Pueraria-rhizobium symbiont. Hunan Agricultural Sciences, 2020(12):96-100. (in Chinese)
    [11] 刘璐, 何寻阳, 谢强, 王克林. 桂西北喀斯特常见豆科植物根瘤菌的遗传多样性. 应用生态学报, 2015, 26(12):3663-3669. Liu L, He XY, Xie Q, Wang KL. Genetic diversity of rhizobia isolated from common legumes in the Karst area,Northwest Guangxi. Chinese Journal of Applied Ecology, 2015, 26(12):3663-3669. (in Chinese)
    [12] 陈强. 四川省根瘤菌多样性和系统发育研究及葛属根瘤菌分类地位的确定.中国农业大学学位论文, 2004.
    [13] Ahmad B, Khan S, Liu Y, Xue MZ, Nabi G, Kumar S, Alshwmi M, Qarluq AW. Molecular mechanisms of anticancer activities of puerarin. Cancer Management and Research, 2020, 12:79-90.
    [14] 贺媛媛. 药食同源产品(玛咖、葛根)产地鉴别技术研究. 中国农业科学院学位论文, 2020.
    [15] 张宝刚. 中国大豆根系微生物的生物地理分布和共发生模式研究. 西北农林科技大学博士学位论文, 2018.
    [16] Rösch C, Mergel A, Bothe H. Biodiversity of denitrifying and dinitrogen-fixing bacteria in an acid forest soil. Applied and Environmental Microbiology, 2002, 68(8):3818-3829.
    [17] 鲁如坤. 土壤农业化学分析方法. 北京:中国农业科技出版社, 2000.
    [18] 徐鹏霞, 韩丽丽, 贺纪正, 罗锋, 张丽梅. 非共生生物固氮微生物分子生态学研究进展. 应用生态学报, 2017, 28(10):3440-3450. Xu PX, Han LL, He JZ, Luo F, Zhang LM. Research advance on molecular ecology of asymbiotic nitrogen fixation microbes. Chinese Journal of Applied Ecology, 2017, 28(10):3440-3450. (in Chinese)
    [19] Talbot JM, Bruns TD, Taylor JW, Smith DP, Branco S, Glassman SI, Erlandson S, Vilgalys R, Liao HL, Smith ME, Peay KG. Endemism and functional convergence across the North American soil mycobiome. Proceedings of the National Academy of Sciences of the United States of America, 2014, 111(17):6341-6346.
    [20] Xiong HY, Zhang XX, Guo HJ, Ji YY, Li Y, Wang XL, Zhao W, Mo FY, Chen JC, Yang T, Zong XX, Chen WX, Tian CF. The epidemicity of facultative microsymbionts in faba bean rhizosphere soils. Soil Biology and Biochemistry, 2017, 115:243-252.
    [21] Gaby JC, Buckley DH. A global census of nitrogenase diversity. Environmental Microbiology, 2011, 13(7):1790-1799.
    [22] 靳希桐, 胡文革, 贺帅兵, 周婷婷, 王月娥, 钟镇涛. 不同时期艾比湖湿地盐角草群落土壤固氮微生物的多样性分析. 微生物学报, 2019, 59(8):1600-1611. Jin XT, Hu WG, He SB, Zhou TT, Wang YE, Zhong ZT. Diversity of soil nitrogen-fixing microorganisms in Salicornia europaea community of Ebinur Lake wetland during different periods. Acta Microbiologica Sinica, 2019, 59(8):1600-1611. (in Chinese)
    [23] 宋延静, 马兰, 李萌, 付娆, 梁晓艳, 张海洋, 王向誉, 郭洪恩. 黄河三角洲芦苇根际固氮微生物的空间分布特征. 河南农业大学学报, 2020, 54(6):1026-1032, 1040. Song YJ, Ma L, Li M, Fu R, Liang XY, Zhang HY, Wang XY, Guo HE. Spatial distribution of nitrogen-fixing microbes in rhizosphere soil of phragmites australis in Yellow River Delta. Journal of Henan Agricultural University, 2020, 54(6):1026-1032, 1040. (in Chinese)
    [24] 褚海燕, 冯毛毛, 柳旭, 时玉, 杨腾, 高贵锋. 土壤微生物生物地理学:国内进展与国际前沿. 土壤学报, 2020, 57(3):515-529. Chu HY, Feng MM, Liu X, Shi Y, Yang T, Gao GF. Soil microbial biogeography:recent advances in China and research frontiers in the world. Acta Pedologica Sinica, 2020, 57(3):515-529. (in Chinese)
    [25] 刘璐, 詹庆才, 彭伟正. 根瘤菌生物地理学的研究进展. 微生物学报, 2018, 58(2):202-208. Liu L, Zhan QC, Peng WZ. Advances in biogeography of rhizobia. Acta Microbiologica Sinica, 2018, 58(2):202-208. (in Chinese)
    [26] Fan KK, Cardona C, Li YT, Shi Y, Xiang XJ, Shen CC, Wang HF, Gilbert JA, Chu HY. Rhizosphere-associated bacterial network structure and spatial distribution differ significantly from bulk soil in wheat crop fields. Soil Biology and Biochemistry, 2017, 113:275-284.
    [27] Zhang KP, Adams JM, Shi Y, Yang T, Sun RB, He D, Ni YY, Chu HY. Environment and geographic distance differ in relative importance for determining fungal community of rhizosphere and bulk soil. Environmental Microbiology, 2017, 19(9):3649-3659.
    [28] Fierer N, Jackson RB. The diversity and biogeography of soil bacterial communities. Proceedings of the National Academy of Sciences of the United States of America, 2006, 103(3):626-631.
    [29] 杨璐, 曾闹华, 白金顺, 周兴, 周国朋, 高嵩涓, 聂军, 曹卫东. 紫云英季土壤固氮微生物对外源碳氮投入的响应. 中国农业科学, 2020, 53(1):105-116. Yang L, Zeng NH, Bai JS, Zhou X, Zhou GP, Gao SJ, Nie J, Cao WD. Responses of soil diazotroph community to rice straw, glucose and nitrogen addition during Chinese milk vetch growth. Scientia Agricultura Sinica, 2020, 53(1):105-116. (in Chinese)
    [30] 王磊, 王静, 张爱君, 张辉, 张永春. 小麦-甘薯轮作长期增施有机肥对碱性土壤固氮菌群落结构及多样性的影响. 生态学报, 2020, 40(16):5771-5782. Wang L, Wang J, Zhang AJ, Zhang H, Zhang YC. Effects of long-term organic fertilization on soil diazotrophic community structure and diversity under wheat-sweet potato rotation system. Acta Ecologica Sinica, 2020, 40(16):5771-5782. (in Chinese)
    引证文献
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

刘璐,蒋慧丹,张鑫,彭迪. 野葛根际固氮微生物群落分布特征及其影响因素[J]. 微生物学报, 2022, 62(2): 590-601

复制
分享
文章指标
  • 点击次数:433
  • 下载次数: 1085
  • HTML阅读次数: 886
  • 引用次数: 0
历史
  • 收稿日期:2021-04-25
  • 最后修改日期:2021-07-13
  • 在线发布日期: 2022-01-28
文章二维码