稻田不同轮作休耕模式下土壤反硝化功能基因群落结构
作者:
作者单位:

江西农业大学生态科学研究中心,南昌330045

作者简介:

李娜,E-mail:1125694062@qq.com

通讯作者:

黄国勤,E-mail: hgqjxes@sina.com

中图分类号:

S344.1;S154.3

基金项目:

国家重点研发计划项目(2016YFD0300208);国家自然科学基金项目(41661070);中国工程院咨询研究项目(2017-XY-28);国家自然科学基金项目(31901476);江西省自然科学基金重点项目(20202ACBL215002)


Community structure of gene with denitrification function in soil under different rotation and fallow patterns in paddy fields
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Center for Ecological Sciences,Jiangxi Agricultural University,Nanchang 330045,China

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    摘要:

    为了探索不同轮作休耕种植模式下稻田土壤氮素及相关微生物群落结构的变化,采用乙炔抑制法测定土壤反硝化潜势,利用高通量测序手段分析反硝化微生物群落多样性和组成,以传统种植模式紫云英-早稻-晚稻(A)为对照,比较分析4种轮作休耕种植模式:紫云英-早稻-玉米||甘薯(B)、油菜-甘蔗||春大豆(C)、紫云英-春大豆-秋大豆(D)和休耕(E)的土壤理化性状、土壤反硝化潜势及相关微生物组成变化。结果显示:4种轮作休耕模式的土壤反硝化潜势显著低于传统轮作模式,有效减少了土壤氮素气态损失;4种轮作休耕模式的nirKnirS功能基因群落结构存在显著差异,其中nirK基因群落结构受轮作休耕模式的影响小于nirS功能基因;与传统种植模式相比,休耕模式更有利于nirS功能基因α多样性的积累;从nirSnirK基因群落物种相对丰度来看,轮作休耕模式的优势物种丰度高于传统轮作模式,其中紫云英-早稻-玉米||甘薯(B)和休耕(E)的菌属丰度相对较高。并且影响反硝化潜势的关键菌属是大豆根瘤菌Bradythizobiumr2 = 0.85,P <0.05)和unclassified_p_Proteobacteriar2 = 0.88,P <0.05);相关性分析及冗余分析发现,pH、有效磷、速效钾、硝态氮(NO3--N)与反硝化潜势呈显著相关,而影响nirK和nirS功能基因群落结构的重要影响因子是含水率。结果表明:稻田适当采用水旱、旱旱轮作及休耕模式,会改变土壤的淹水环境,影响反硝化功能基因群落结构,有助于抑制土壤氮素的气态流失,促进土壤肥力提高及土壤结构改良,其中“紫云英-早稻-玉米||甘薯”和“休耕”种植模式效果最佳。

    Abstract:

    The physicochemical properties,denitrification differences and related microbial composition in soil under four rotation and fallow patterns including B (Chinese milk vetch - early rice- maize || batatas) ,C ( rapeseed - sugarcane || spring soybeans),D (Chinese milk vetch - spring soybeans - autumn soybeans ) and E (annual fallow) were compared and analyzed using the traditional cropping pattern A (Chinese milk vetch-early rice-late rice) as the control to study the effects of different rotation and fallow patterns on the nitrogen loss,the denitrification potential and related microbial community structure in soil of paddy fields.The acetylene inhibition method was used to determine the denitrification rate.The high-throughput sequencing was used to analyze the diversity and composition of denitrifying microbial communities.The results showed that the denitrification potential in soil under four rotation and fallow patterns was significantly lower than that under the control,which effectively reduced the gaseous loss of nitrogen in soil.There were significant differences in the community structure of functional genes nirK and nirS under different rotation and fallow patterns,among which the community structure of gene nirK was less affected by the rotation and fallow patterns than that of gene nirS.Compared with the control,the E pattern was more conducive to the accumulation of α-diversity of gene nirS.In terms of the relative species abundance of nirS and nirK gene communities,the abundance of dominant species under four rotation and fallow patterns was higher than that under the control,and the abundance of fungal genera in the pattern B and pattern E was relatively higher.The key genera affecting denitrification potential were Bradythizobiumr2 = 0.85,P<0.05) and unclassified_p,Proteobacteriar2 = 0.88,P <0.05).The results of correlation and redundancy analyses showed that pH,the available phosphorus (AP),available potassium (AK) and nitrate-nitrogen (NO3--N) in soil was significantly correlated with the denitrification potential in soil,while the important factor affecting the community structure of gene nirK and nirS was the content of water in soil (SWC).It is indicated that the rotation and fallow patterns of appropriate water-drought and dry-drought crop in paddy fields can change the flooding environment in soil,affect the community structure of gene with denitrification function,help inhibit the gaseous loss of nitrogen in soil,and promote the improvement of the fertility and structure in soil,among which the pattern B and pattern E is the best.

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李娜,徐慧芳,黄国勤.稻田不同轮作休耕模式下土壤反硝化功能基因群落结构[J].华中农业大学学报,2022,41(6):42-50

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  • 收稿日期:2022-04-11
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  • 在线发布日期: 2022-12-09
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