Bio-Organic Fertilizer Promotes Pear Yield by Shaping the Rhizosphere Microbiome Composition and Functions
文献类型: 外文期刊
第一作者: Wang, Zhonghua
作者: Wang, Zhonghua;Yang, Tianjie;Mei, Xinlan;Wang, Ningqi;Dong, Caixia;Jiang, Gaofei;Xu, Yangchun;Shen, Qirong;Jousset, Alexandre;Wang, Zhonghua;Li, Xiaogang;Yang, Qingsong;Lin, Jing;Banerjee, Samiran
作者机构:
关键词: bioorganic fertilizers; pear yield; plant growth-promoting rhizobacteria; rhizosphere microbiome
期刊名称:MICROBIOLOGY SPECTRUM ( 影响因子:3.7; 五年影响因子:5.9 )
ISSN: 2165-0497
年卷期: 2022 年 10 卷 6 期
页码:
收录情况: SCI
摘要: Bio-organic fertilizers (BOF) containing both organic amendments and beneficial microorganisms have been consistently shown to improve soils fertility and yield. However, the exact mechanisms which link amendments and yields remain disputed, and the complexity of bio-organic fertilizers may work in parallel in several ways. BOF may directly improve yield by replenishing soil nutrients or introducing beneficial microbial genes or indirectly by altering the soil microbiome to enrich native beneficial microorganisms. In this work, we aim to disentangle the relative contributions of direct and indirect effects on pear yield. We treated pear trees with either chemical fertilizer or organic fertilizer with/without the plant-beneficial bacterium Bacillus velezensis SQR9. We then assessed, in detail, soil physicochemical and biological properties (metagenome sequencing) as well as pear yield. We then evaluated the relative importance of direct and indirect effects of soil amendments on pear yield. Both organic treatments increased plant yield by up to 20%, with the addition of bacteria tripling the increase driven by organic fertilizer alone. This increase could be linked to alterations in soil physicochemical properties, bacterial community function, and metabolism. Supplementation of organic fertilizer SQR9 increased rhizosphere microbiome richness and functional diversity. Fertilizer-sensitive microbes and functions responded as whole guilds. Pear yield was most positively associated with the Mitsuaria- and Actinoplanes-dominated ecological clusters and with gene clusters involved in ion transport and secondary metabolite biosynthesis. Together, these results suggested that bio-organic fertilizers mainly act indirectly on plant yield by creating soil chemical properties which promote a plant-beneficial microbiome. IMPORTANCE Bio-organic fertilization is a widely used, eco-friendly, sustainable approach to increasing plant productivity in the agriculture and fruit industries. However, it remains unclear whether the promotion of fruit productivity is related to specific changes in microbial inoculants, the resident microbiome, and/or the physicochemical properties of rhizosphere soils. We found that bio-organic fertilizers alter soil chemical properties, thus manipulating specific microbial taxa and functions within the rhizosphere microbiome of pear plants to promote yield. Our work unveils the ecological mechanisms which underlie the beneficial impacts of bio-organic fertilizers on yield promotion in fruit orchards, which may help in the design of more efficient biofertilizers to promote sustainable fruit production.
分类号:
- 相关文献
作者其他论文 更多>>
-
QTL Mapping of Yield-Related Traits in Tetraploid Wheat Based on Wheat55K SNP Array
作者:Jia, Yatao;Zhang, Yifan;Sun, Yingkai;Ma, Chao;Zhang, Hanbing;Hou, Junbin;Wang, Yong;Ji, Wanquan;Wang, Zhonghua;Bai, Yixiong;Bai, Haibo;Hao, Shuiyuan
关键词:55K SNP array; tetraploid wheat; yield-related traits; QTL
-
Integrated Methylome and Transcriptome Analysis between Wizened and Normal Flower Buds in Pyrus pyrifolia Cultivar 'Sucui 1'
作者:Li, Hui;Liu, Chunxiao;Kan, Jialiang;Lin, Jin;Li, Xiaogang
关键词:pear; wizened bud; methylation feature; auxin; cytokinin
-
Maize zinc uptake is influenced by arbuscular mycorrhizal symbiosis under various soil phosphorus availabilities
作者:Yu, Baogang;Zhou, Chengxiang;Zou, Chunqin;Yu, Baogang;Yu, Peng;Yu, Baogang;Hochholdinger, Frank;Yu, Peng;Wang, Zhonghua;Bucher, Marcel;Bucher, Marcel;Schaaf, Gabriel;Sawers, Ruairidh J. H.;Chen, Xinping;Chen, Xinping
关键词:arbuscular mycorrhizal; extraradical hyphae; maize; phosphorus; RNA sequencing; zinc; zinc transporter
-
Article Trichoderma-secreted anthranilic acid promotes lateral root development via auxin signaling and RBOHF-induced endodermal cell wall remodeling
作者:Chen, Yu;Fu, Yansong;Xia, Yanwei;Miao, Youzhi;Shao, Jiahui;Xun, Weibing;Shen, Qirong;Zhang, Ruifu;Chen, Yu;Fu, Yansong;Xia, Yanwei;Miao, Youzhi;Shao, Jiahui;Xun, Weibing;Shen, Qirong;Zhang, Ruifu;Xuan, Wei;Xuan, Wei;Liu, Yunpeng;Yan, Qiuyan
关键词:
-
Effects of plant tissue permeability on invasion and population bottlenecks of a phytopathogen
作者:Jiang, Gaofei;Shi, Xiaojun;Chen, Xinping;Ding, Wei;Zhang, Yong;Jiang, Gaofei;Zhang, Yuling;Jousset, Alexandre;Zhao, Fang-Jie;Xu, Yangchun;Shen, Qirong;Wei, Zhong;Chen, Min;Zhang, Yong;Ramoneda, Josep;Han, Liangliang;Shi, Yu;Peyraud, Remi;Wang, Yikui;Hikichi, Yasufumi;Ohnishi, Kouhei;Dini-Andreote, Francisco;Dini-Andreote, Francisco;Dini-Andreote, Francisco
关键词:
-
Silicon application enhances wheat defence against Sitobion avenae F. by regulating plant physiological-biochemical responses
作者:Qi, Xiuxiu;Wang, Zhonghua;Han, Yanlai;Wang, Yi;Jiang, Ying;Qi, Xiuxiu;Xue, Xia;Li, Shaojian;Zhang, Zelong
关键词:TEOS; Life cycle of S. avenae F.; Secondary metabolites; Plant hormones; Defense related enzymes
-
Exploring the temporal dynamics of a disease suppressive rhizo-microbiome in eggplants
作者:Zhang, Yuling;Li, Yarong;Hu, Jie;Wang, Ningqi;Quan, Xiaowen;Liu, Jialin;Raza, Waseem;Xu, Yangchun;Jousset, Alexandre;Shen, Qirong;Jiang, Gaofei;Wei, Zhong;Gan, Guiyun;Li, Weiliu;Jiang, Yaqin;Wang, Peng;Wang, Yikui;Jiang, Gaofei;Hu, Jie;Hohmann, Pierre;Hohmann, Pierre
关键词: