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根施促生克雷伯菌抑制油菜镉吸收积累的作用机制

杨皓 王常荣 吴赵清华 田耕 王林 黄永春 薛卫杰 孙约兵

农业环境科学学报2025,Vol.44Issue(12):3082-3094,13.
农业环境科学学报2025,Vol.44Issue(12):3082-3094,13.DOI:10.11654/jaes.2025-0035

根施促生克雷伯菌抑制油菜镉吸收积累的作用机制

Inhibitory effects of root-applied growth-promoting Klebsiella sp.on cadmium uptake and accumulation in Brassica chinensis L

杨皓 1王常荣 2吴赵清华 2田耕 2王林 2黄永春 2薛卫杰 2孙约兵2

作者信息

  • 1. 农业农村部产地环境污染防控重点实验室/天津市农业环境与农产品安全重点实验室,农业农村部环境保护科研监测所,天津 300191||东北农业大学资源与环境学院,哈尔滨 150030
  • 2. 农业农村部产地环境污染防控重点实验室/天津市农业环境与农产品安全重点实验室,农业农村部环境保护科研监测所,天津 300191
  • 折叠

摘要

Abstract

This study aimed to explore the impact of Klebsiella on the Cd accumulation characteristics in Brassica chinensis L.within contaminated soil.Utilizing Xialv No.2 Brassica chinensis L.as the experimental material,a combination of high-throughput sequencing of microorganisms,transcriptome sequencing,and step-wise extraction of soil Cd was employed.The research focused on investigating the effects of root-applied Klebsiella on the rhizosphere microbial community structure,soil physical and chemical properties,elemental morphology,as well as the regulation of Cd accumulation and functional gene expression in different organs of Brassica chinensis L.The results showed that the application of Klebsiella at the root promoted the growth of Brassica chinensis L.and significantly reduced the Cd content in the roots and shoots of Brassica chinensis L..Compared with the CK treatment,the maximum reduction in the Cd content of the roots and shoots of Brassica chinensis L.was 44.6%and 22.5%,respectively.In the rhizosphere micro-environment,the Klebsiella treatment caused a slight elevation in soil pH and a decline in the bioavailability of Cd in the soil.Specifically,the content of the exchangeable fraction of Cd reduced by 6.0%,while the residual fraction of Cd rose by 8.0%.Meanwhile,Klebsiella accelerated the soil nitrogen mineralization process and significantly enhanced soil enzyme activity and inorganic nitrogen content.To be specific,the activities of soil urease,sucrase,catalase,nitrate reductase,and nitrite reductase increased by 19.5%,20.5%,27.7%,42.9%,and 27.0%,respectively,and the contents of ammonium nitrogen,nitrate nitrogen,and alkali-hydrolyzed nitrogen increased by 56.7%,39.6%,and 54.1%,respectively.Further,Klebsiella augmented the relative abundance of Verrucomicrobiota,Proteobacteria,Arthrobacter,Massilia,and Tychonema_CCAP_1459_11B,while reducing the relative abundance of Acidobacteriota and Actinobacteriota.The application of Klebsiella could lower the levels of Nramp and ZIP family genes associated with Cd transport by 17.6%-20.5%and 44.8%-77.4%,respectively.Additionally,the expression of ammonium nitrogen transporter and nitrogen-metabolism-related genes AMT,glnA,and nirA increased by 22.6%-27.8%,57.7%,and 29.7%-37.7%,respectively.This promoted the absorption and utilization of inorganic nitrogen in Brassica chinensis L.roots and concurrently inhibited the absorption and transport of Cd.Klebsiella can boost the bioavailability of the nutrient element nitrogen,transform the form of iron oxide,and enhance its Cd-fixing capacity by regulating the cycles of nitrogen,iron,and other elements driven by the rhizosphere flora,thus reducing the availability of Cd in the soil.Moreover,microbial metabolism can suppress the expression of Cd-transport genes in Brassica chinensis L.roots and promote the expression of genes related to inorganic nitrogen absorption and metabolism.This is further beneficial for inhibiting the absorption and accumulation of Cd by Brassica chinensis L.and promoting its growth,which is of great significance for the safe production of Brassica chinensis L.in cadmium-contaminated farmland.

关键词

克雷伯菌/油菜///

Key words

Klebsiella sp./Brassica chinensis L./cadmium/iron/nitrogen

分类

资源环境

引用本文复制引用

杨皓,王常荣,吴赵清华,田耕,王林,黄永春,薛卫杰,孙约兵..根施促生克雷伯菌抑制油菜镉吸收积累的作用机制[J].农业环境科学学报,2025,44(12):3082-3094,13.

基金项目

国家重点研发计划项目(2024YFD1701100) (2024YFD1701100)

国家自然科学基金项目(32471707,42077153,42207039) (32471707,42077153,42207039)

中国农业科学院创新工程项目(CAAS-CSGLCA-202302)National Research Program of China(2024YFD1701100) (CAAS-CSGLCA-202302)

National Science Foundation of China(32471707,42077153,42207039) (32471707,42077153,42207039)

Innovation Program of Chinese Academy of Agricultural Sciences(CAAS-CSGLCA-202302) (CAAS-CSGLCA-202302)

农业环境科学学报

OA北大核心

1672-2043

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