Cargando…

Effect of endophytic diazotroph Enterobacter roggenkampii ED5 on nitrogen-metabolism-related microecology in the sugarcane rhizosphere at different nitrogen levels

Sugarcane is an important sugar and energy crop worldwide, requiring a large amount of nitrogen (N). However, excessive application of synthetic N fertilizer causes environmental pollution in farmland. Endophytic nitrogen-fixing bacteria (ENFB) provide N nutrition for plants through biological N fix...

Descripción completa

Detalles Bibliográficos
Autores principales: Guo, Dao-Jun, Li, Dong-Ping, Yang, Bin, Verma, Krishan K., Singh, Rajesh Kumar, Singh, Pratiksha, Khan, Qaisar, Sharma, Anjney, Qin, Ying, Zhang, Bao-Qing, Song, Xiu-Peng, Li, Yang-Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10464614/
https://www.ncbi.nlm.nih.gov/pubmed/37649627
http://dx.doi.org/10.3389/fmicb.2023.1132016
_version_ 1785098507426725888
author Guo, Dao-Jun
Li, Dong-Ping
Yang, Bin
Verma, Krishan K.
Singh, Rajesh Kumar
Singh, Pratiksha
Khan, Qaisar
Sharma, Anjney
Qin, Ying
Zhang, Bao-Qing
Song, Xiu-Peng
Li, Yang-Rui
author_facet Guo, Dao-Jun
Li, Dong-Ping
Yang, Bin
Verma, Krishan K.
Singh, Rajesh Kumar
Singh, Pratiksha
Khan, Qaisar
Sharma, Anjney
Qin, Ying
Zhang, Bao-Qing
Song, Xiu-Peng
Li, Yang-Rui
author_sort Guo, Dao-Jun
collection PubMed
description Sugarcane is an important sugar and energy crop worldwide, requiring a large amount of nitrogen (N). However, excessive application of synthetic N fertilizer causes environmental pollution in farmland. Endophytic nitrogen-fixing bacteria (ENFB) provide N nutrition for plants through biological N fixation, thus reducing the need for chemical fertilizers. The present study investigated the effect of the N-fixing endophytic strain Enterobacter roggenkampii ED5 on phytohormone indole-3-acetic acid (IAA), N-metabolism enzyme activities, microbial community compositions, and N cycle genes in sugarcane rhizosphere soil at different N levels. Three levels of (15)N-urea, such as low N (0 kg/ha), medium N (150 kg/ha), and high N (300 kg/ha), were applied. The results showed that, after inoculating strain ED5, the IAA content in sugarcane leaves was significantly increased by 68.82% under low N condition at the seedling stage (60 days). The nitrate reductase (NR) activity showed a downward trend. However, the glutamine synthase (GS) and NADH-glutamate dehydrogenase (NADH-GDH) activities were significantly enhanced compared to the control under the high N condition, and the GS and NR genes had the highest expression at 180 and 120 days, respectively, at the low N level. The total N content in the roots, stems, and leaves of sugarcane was higher than the control. The (15)N atom % excess of sugarcane decreased significantly under medium N condition, indicating that the medium N level was conducive to N fixation in strain ED5. Metagenome analysis of sugarcane rhizosphere soil exhibited that the abundance of N-metabolizing microbial richness was increased under low and high N conditions after inoculation of strain ED5 at the genus level, while it was increased at the phylum level only under the low N condition. The LefSe (LDA > 2, p < 0.05) found that the N-metabolism-related differential microorganisms under the high N condition were higher than those under medium and low N conditions. It was also shown that the abundance of nifDHK genes was significantly increased after inoculation of ED5 at the medium N level, and other N cycle genes had high abundance at the high N level after inoculation of strain ED5. The results of this study provided a scientific reference for N fertilization in actual sugarcane production.
format Online
Article
Text
id pubmed-10464614
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-104646142023-08-30 Effect of endophytic diazotroph Enterobacter roggenkampii ED5 on nitrogen-metabolism-related microecology in the sugarcane rhizosphere at different nitrogen levels Guo, Dao-Jun Li, Dong-Ping Yang, Bin Verma, Krishan K. Singh, Rajesh Kumar Singh, Pratiksha Khan, Qaisar Sharma, Anjney Qin, Ying Zhang, Bao-Qing Song, Xiu-Peng Li, Yang-Rui Front Microbiol Microbiology Sugarcane is an important sugar and energy crop worldwide, requiring a large amount of nitrogen (N). However, excessive application of synthetic N fertilizer causes environmental pollution in farmland. Endophytic nitrogen-fixing bacteria (ENFB) provide N nutrition for plants through biological N fixation, thus reducing the need for chemical fertilizers. The present study investigated the effect of the N-fixing endophytic strain Enterobacter roggenkampii ED5 on phytohormone indole-3-acetic acid (IAA), N-metabolism enzyme activities, microbial community compositions, and N cycle genes in sugarcane rhizosphere soil at different N levels. Three levels of (15)N-urea, such as low N (0 kg/ha), medium N (150 kg/ha), and high N (300 kg/ha), were applied. The results showed that, after inoculating strain ED5, the IAA content in sugarcane leaves was significantly increased by 68.82% under low N condition at the seedling stage (60 days). The nitrate reductase (NR) activity showed a downward trend. However, the glutamine synthase (GS) and NADH-glutamate dehydrogenase (NADH-GDH) activities were significantly enhanced compared to the control under the high N condition, and the GS and NR genes had the highest expression at 180 and 120 days, respectively, at the low N level. The total N content in the roots, stems, and leaves of sugarcane was higher than the control. The (15)N atom % excess of sugarcane decreased significantly under medium N condition, indicating that the medium N level was conducive to N fixation in strain ED5. Metagenome analysis of sugarcane rhizosphere soil exhibited that the abundance of N-metabolizing microbial richness was increased under low and high N conditions after inoculation of strain ED5 at the genus level, while it was increased at the phylum level only under the low N condition. The LefSe (LDA > 2, p < 0.05) found that the N-metabolism-related differential microorganisms under the high N condition were higher than those under medium and low N conditions. It was also shown that the abundance of nifDHK genes was significantly increased after inoculation of ED5 at the medium N level, and other N cycle genes had high abundance at the high N level after inoculation of strain ED5. The results of this study provided a scientific reference for N fertilization in actual sugarcane production. Frontiers Media S.A. 2023-08-15 /pmc/articles/PMC10464614/ /pubmed/37649627 http://dx.doi.org/10.3389/fmicb.2023.1132016 Text en Copyright © 2023 Guo, Li, Yang, Verma, Singh, Singh, Khan, Sharma, Qin, Zhang, Song and Li. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Guo, Dao-Jun
Li, Dong-Ping
Yang, Bin
Verma, Krishan K.
Singh, Rajesh Kumar
Singh, Pratiksha
Khan, Qaisar
Sharma, Anjney
Qin, Ying
Zhang, Bao-Qing
Song, Xiu-Peng
Li, Yang-Rui
Effect of endophytic diazotroph Enterobacter roggenkampii ED5 on nitrogen-metabolism-related microecology in the sugarcane rhizosphere at different nitrogen levels
title Effect of endophytic diazotroph Enterobacter roggenkampii ED5 on nitrogen-metabolism-related microecology in the sugarcane rhizosphere at different nitrogen levels
title_full Effect of endophytic diazotroph Enterobacter roggenkampii ED5 on nitrogen-metabolism-related microecology in the sugarcane rhizosphere at different nitrogen levels
title_fullStr Effect of endophytic diazotroph Enterobacter roggenkampii ED5 on nitrogen-metabolism-related microecology in the sugarcane rhizosphere at different nitrogen levels
title_full_unstemmed Effect of endophytic diazotroph Enterobacter roggenkampii ED5 on nitrogen-metabolism-related microecology in the sugarcane rhizosphere at different nitrogen levels
title_short Effect of endophytic diazotroph Enterobacter roggenkampii ED5 on nitrogen-metabolism-related microecology in the sugarcane rhizosphere at different nitrogen levels
title_sort effect of endophytic diazotroph enterobacter roggenkampii ed5 on nitrogen-metabolism-related microecology in the sugarcane rhizosphere at different nitrogen levels
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10464614/
https://www.ncbi.nlm.nih.gov/pubmed/37649627
http://dx.doi.org/10.3389/fmicb.2023.1132016
work_keys_str_mv AT guodaojun effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT lidongping effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT yangbin effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT vermakrishank effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT singhrajeshkumar effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT singhpratiksha effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT khanqaisar effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT sharmaanjney effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT qinying effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT zhangbaoqing effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT songxiupeng effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels
AT liyangrui effectofendophyticdiazotrophenterobacterroggenkampiied5onnitrogenmetabolismrelatedmicroecologyinthesugarcanerhizosphereatdifferentnitrogenlevels