Cargando…

Improved ginseng production under continuous cropping through soil health reinforcement and rhizosphere microbial manipulation with biochar: a field study of Panax ginseng from Northeast China

The production of ginseng, an important Chinese medicine crop, has been increasingly challenged by soil degradation and pathogenic disease under continuous cropping in Northeast China. In a field experiment, an Alfisol garden continuously cropped with Chinese ginseng (Panax ginseng C. A. Meyer) was...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Cheng, Xia, Rong, Tang, Man, Chen, Xue, Zhong, Bin, Liu, Xiaoyu, Bian, Rongjun, Yang, Li, Zheng, Jufeng, Cheng, Kun, Zhang, Xuhui, Drosos, Marios, Li, Lianqing, Shan, Shengdao, Joseph, Stephen, Pan, Genxing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9273955/
https://www.ncbi.nlm.nih.gov/pubmed/35836471
http://dx.doi.org/10.1093/hr/uhac108
_version_ 1784745208493113344
author Liu, Cheng
Xia, Rong
Tang, Man
Chen, Xue
Zhong, Bin
Liu, Xiaoyu
Bian, Rongjun
Yang, Li
Zheng, Jufeng
Cheng, Kun
Zhang, Xuhui
Drosos, Marios
Li, Lianqing
Shan, Shengdao
Joseph, Stephen
Pan, Genxing
author_facet Liu, Cheng
Xia, Rong
Tang, Man
Chen, Xue
Zhong, Bin
Liu, Xiaoyu
Bian, Rongjun
Yang, Li
Zheng, Jufeng
Cheng, Kun
Zhang, Xuhui
Drosos, Marios
Li, Lianqing
Shan, Shengdao
Joseph, Stephen
Pan, Genxing
author_sort Liu, Cheng
collection PubMed
description The production of ginseng, an important Chinese medicine crop, has been increasingly challenged by soil degradation and pathogenic disease under continuous cropping in Northeast China. In a field experiment, an Alfisol garden continuously cropped with Chinese ginseng (Panax ginseng C. A. Meyer) was treated with soil amendment at 20 t ha(−1) with maize (MB) and wood (WB) biochar, respectively, compared to conventional manure compost (MC). Two years after the amendment, the rooted topsoil and ginseng plants were sampled. The changes in soil fertility and health, particularly in the soil microbial community and root disease incidence, and in ginseng growth and quality were portrayed using soil physico-chemical assays, biochemical assays of extracellular enzyme activities and gene sequencing assays as well as ginsenoside assays. Topsoil fertility was improved by 23% and 39%, ginseng root biomass increased by 25% and 27%, and root quality improved by 6% and 18% with WB and MB, respectively, compared to MC. In the ginseng rhizosphere, fungal abundance increased by 96% and 384%, with a significant and insignificant increase in bacterial abundance, respectively, under WB and MB. Specifically, the abundance of Fusarium spp. was significantly reduced by 19–35%, while that of Burkholderia spp. increased by folds under biochar amendments over MC. Relevantly, there was a significant decrease in the abundance proportion of pathotrophic fungi but a great increase in that of arbuscular mycorrhizal fungi, along with an enhanced microbial community network complexity, especially fungal community complexity, under biochar amendments. Thus, biochar, particularly from maize residue, could promote ginseng quality production while enhancing soil health and ecological services, including carbon sequestration, in continuously cropped fields.
format Online
Article
Text
id pubmed-9273955
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-92739552022-07-13 Improved ginseng production under continuous cropping through soil health reinforcement and rhizosphere microbial manipulation with biochar: a field study of Panax ginseng from Northeast China Liu, Cheng Xia, Rong Tang, Man Chen, Xue Zhong, Bin Liu, Xiaoyu Bian, Rongjun Yang, Li Zheng, Jufeng Cheng, Kun Zhang, Xuhui Drosos, Marios Li, Lianqing Shan, Shengdao Joseph, Stephen Pan, Genxing Hortic Res Article The production of ginseng, an important Chinese medicine crop, has been increasingly challenged by soil degradation and pathogenic disease under continuous cropping in Northeast China. In a field experiment, an Alfisol garden continuously cropped with Chinese ginseng (Panax ginseng C. A. Meyer) was treated with soil amendment at 20 t ha(−1) with maize (MB) and wood (WB) biochar, respectively, compared to conventional manure compost (MC). Two years after the amendment, the rooted topsoil and ginseng plants were sampled. The changes in soil fertility and health, particularly in the soil microbial community and root disease incidence, and in ginseng growth and quality were portrayed using soil physico-chemical assays, biochemical assays of extracellular enzyme activities and gene sequencing assays as well as ginsenoside assays. Topsoil fertility was improved by 23% and 39%, ginseng root biomass increased by 25% and 27%, and root quality improved by 6% and 18% with WB and MB, respectively, compared to MC. In the ginseng rhizosphere, fungal abundance increased by 96% and 384%, with a significant and insignificant increase in bacterial abundance, respectively, under WB and MB. Specifically, the abundance of Fusarium spp. was significantly reduced by 19–35%, while that of Burkholderia spp. increased by folds under biochar amendments over MC. Relevantly, there was a significant decrease in the abundance proportion of pathotrophic fungi but a great increase in that of arbuscular mycorrhizal fungi, along with an enhanced microbial community network complexity, especially fungal community complexity, under biochar amendments. Thus, biochar, particularly from maize residue, could promote ginseng quality production while enhancing soil health and ecological services, including carbon sequestration, in continuously cropped fields. Oxford University Press 2022-05-17 /pmc/articles/PMC9273955/ /pubmed/35836471 http://dx.doi.org/10.1093/hr/uhac108 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nanjing Agricultural University https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Liu, Cheng
Xia, Rong
Tang, Man
Chen, Xue
Zhong, Bin
Liu, Xiaoyu
Bian, Rongjun
Yang, Li
Zheng, Jufeng
Cheng, Kun
Zhang, Xuhui
Drosos, Marios
Li, Lianqing
Shan, Shengdao
Joseph, Stephen
Pan, Genxing
Improved ginseng production under continuous cropping through soil health reinforcement and rhizosphere microbial manipulation with biochar: a field study of Panax ginseng from Northeast China
title Improved ginseng production under continuous cropping through soil health reinforcement and rhizosphere microbial manipulation with biochar: a field study of Panax ginseng from Northeast China
title_full Improved ginseng production under continuous cropping through soil health reinforcement and rhizosphere microbial manipulation with biochar: a field study of Panax ginseng from Northeast China
title_fullStr Improved ginseng production under continuous cropping through soil health reinforcement and rhizosphere microbial manipulation with biochar: a field study of Panax ginseng from Northeast China
title_full_unstemmed Improved ginseng production under continuous cropping through soil health reinforcement and rhizosphere microbial manipulation with biochar: a field study of Panax ginseng from Northeast China
title_short Improved ginseng production under continuous cropping through soil health reinforcement and rhizosphere microbial manipulation with biochar: a field study of Panax ginseng from Northeast China
title_sort improved ginseng production under continuous cropping through soil health reinforcement and rhizosphere microbial manipulation with biochar: a field study of panax ginseng from northeast china
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9273955/
https://www.ncbi.nlm.nih.gov/pubmed/35836471
http://dx.doi.org/10.1093/hr/uhac108
work_keys_str_mv AT liucheng improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT xiarong improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT tangman improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT chenxue improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT zhongbin improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT liuxiaoyu improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT bianrongjun improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT yangli improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT zhengjufeng improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT chengkun improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT zhangxuhui improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT drososmarios improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT lilianqing improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT shanshengdao improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT josephstephen improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina
AT pangenxing improvedginsengproductionundercontinuouscroppingthroughsoilhealthreinforcementandrhizospheremicrobialmanipulationwithbiocharafieldstudyofpanaxginsengfromnortheastchina