Revealing the role of the rhizosphere microbiota in reproductive growth for fruit productivity when inorganic fertilizer is partially replaced by organic fertilizer in pear orchard fields
文献类型: 外文期刊
第一作者: Shi, Chun-Hui
作者: Shi, Chun-Hui;Wang, Xiao-Qing;Jiang, Shuang;Zhang, Li-Qing;Luo, Jun;Shi, Chun-Hui;Wang, Xiao-Qing;Jiang, Shuang;Zhang, Li-Qing;Luo, Jun;Zhang, Li-Qing;Luo, Jun
作者机构:
期刊名称:MICROBIAL BIOTECHNOLOGY ( 影响因子:5.7; 五年影响因子:6.4 )
ISSN: 1751-7915
年卷期: 2023 年 16 卷 6 期
页码:
收录情况: SCI
摘要: In order to address the global crisis in pear productivity, there has been increased attention given to advocating for the use of organic fertilizers. As part of this effort, researchers have been investigating the microbial properties of organic fertilizers to better understand their potential impact on fruit productivity. Our research focused specifically on the impact of four different ratios of sheep manure (SM) and chemical fertilizers (CF) on pear productivity. We found that replacing CF with SM resulted in a proliferation of gammaproteobacteria, Chlamydiae, Bastocatellia and Clostridia in the soil rhizosphere, which is the region around the roots of plants where most nutrient uptake occurs. Using redundancy analysis, we were able to determine that SM was particularly effective at promoting the growth of gammaproteobacteria and clostridia, which were associated with C:N ratios around 14:1 as well as the availability of K, Fe, Zn and Cu. This combination of factors was conducive to a transition from vegetative growth to reproductive growth, resulting in an increase in pear production from 43 to 56 tons per hectare. We also discovered that Blastociella acts as a buffering system in regulating soil acidity. Taken together, our findings indicate that a combination of SM and CF can improve the abundance of beneficial bacteria in the rhizosphere, leading to an increase in pear productivity.
分类号:
- 相关文献
作者其他论文 更多>>
-
Whole genome and transcriptome analyses in dairy goats identify genetic markers associated with high milk yield
作者:Zhao, Jianqing;Shi, Chenbo;Kamalibieke, Jiayidaer;Mu, Yuanpan;Zhu, Lu;Wang, Wei;Luo, Jun;Gong, Ping;Lv, Xuefeng
关键词:Dairy goat; Selective signal analysis; Genome-wide association study; Transcriptomic analyses; Milk yield
-
Design and verification of a 25 K multiple-SNP liquid-capture chip by target sequencing for dairy goat
作者:Zhao, Jianqing;Wang, Yaling;Kamalibieke, Jiayidaer;Zhang, Fuhong;Shi, Huaiping;Wang, Wei;Luo, Jun;Gong, Ping
关键词:Dairy goat; Chip design; Genotyping by target sequencing; Liquid chip
-
DDX3X and virus interactions: functional diversity and antiviral strategies
作者:Ma, Shengming;Mao, Qian;Weng, Shaoting;Zhang, Kunpeng;Teng, Man;Luo, Jun
关键词:DDX3X; virus; immune response; molecular interaction; cross-species heterogeneity
-
Effects of starter diets with different neutral detergent fiber levels on gastrointestinal tract development, microbial profiles, nutrient digestibility, and growth performance in Xinong Saanen dairy goat kids
作者:Hu, Qingyong;Wang, Xinpei;Luo, Jun;Mu, Yuanpan;Yang, Min;Wang, Ping;Usman, Muhammad;Loor, Juan J.;Gong, Ping
关键词:dairy goat kids; digestibility; microbiota; neutral detergent fiber
-
The interplay between ScSWEET11 promoters and Paracidovorax avenae effectors regulate resistance in sugarcane
作者:Liu, Junhong;Du, Cuicui;Zhao, Ping;Yang, Shiwei;Zhong, Hui;Zang, Shoujian;Wu, Binghua;Luo, Jun;Que, Youxiong;Wang, Hengbo;Liu, Junhong;Que, Youxiong;Wang, Hengbo;Zhang, Zhiqiang
关键词:sugarcane; SWEETs;
Paracidovorax avenae ; effectors; plant-microbe interactions -
Critical role of ferroptosis in viral infection and host responses
作者:Mao, Qian;Teng, Man;Luo, Jun;Mao, Qian;Teng, Man;Luo, Jun;Mao, Qian;Luo, Qin;Ma, Sheng-Min;Luo, Jun
关键词:Virus; Ferroptosis; Programmed cell death; Host responses; Anti-viral therapy
-
Genome-wide identification of Saccharum Sec14-like PITP gene family reveals that ScSEC14-1 is positively involved in disease resistance
作者:Su, Yachun;Feng, Jingfang;You, Chuihuai;Zang, Shoujian;Wang, Wei;Wang, Dongjiao;Mao, Huaying;Chen, Yao;Luo, Jun;Que, Youxiong;Su, Yachun;Su, Yachun;Sun, Tingting;Que, Youxiong
关键词:Sugarcane; Phosphatidylinositol transfer protein (PITP); Genome-wide identification; Pathogen infection; Disease resistance