ICAR-Central Institute for Subtropical Horticulture (CISH), Lucknow, India.
Division of Microbiology, IARI, New Delhi, India.
Sci Rep. 2021 Oct 15;11(1):20554. doi: 10.1038/s41598-021-00112-0.
This study explores the comparative effect of conventional and organic treatments on the rhizosphere microbiome of Mangifera indica cv. Dashehari. The long-term exposures (about 20 years) were monitored under a subtropical ecosystem. Based on plant growth properties and acetylene reduction assay, 12 bacterial isolates (7 from G1-organic and 5 from G2-conventional systems) were identified as Pseudomonas and Bacillus spp. In the conventional system, dehydrogenase activity significantly decreased (0.053 µg TPF formed g of soil h) and adversely affected the bacterial diversity composition. In comparison, organic treatments had a good impact on dehydrogenase activity (0.784 µg TPF formed g of soil h), alkaline phosphatase (139.25 µg PNP g soil h), and bacterial community composition. The Metagenomics approach targeted the V3 and V4 regions to see the impact in the phylum, order, family, genus, and species for both the treatments. Results showed that phylum Acidobacteria (13.6%), Firmicutes (4.84%), and Chloroflexi (2.56%) were dominating in the G2 system whereas phylum Bacteroides (14.55%), Actinobacteria (7.45%), and Proteobacteria (10.82%) were abundantly dominated in the G1 system. Metagenome sequences are at the NCBI-GenBank sequence read archive with SRX8289747 (G1) and SRX8289748 (G2) in the study PRJNA631113. Results indicated that conventional and organic conditions affect rhizosphere microbiome and their environment.
本研究探讨了常规和有机处理对芒果品种 Dashehari 根际微生物组的比较影响。在亚热带生态系统下进行了约 20 年的长期暴露监测。根据植物生长特性和乙炔还原测定,从 G1-有机和 G2-常规系统中分离出 12 个细菌分离株(7 个来自 G1-有机,5 个来自 G2-常规),鉴定为假单胞菌和芽孢杆菌属。在常规系统中,脱氢酶活性显著降低(0.053 µg TPF 形成 g 土壤 h),并对细菌多样性组成产生不利影响。相比之下,有机处理对脱氢酶活性(0.784 µg TPF 形成 g 土壤 h)、碱性磷酸酶(139.25 µg PNP g 土壤 h)和细菌群落组成有良好的影响。宏基因组学方法针对 V3 和 V4 区域,观察两种处理方式对门、目、科、属和种的影响。结果表明,门酸杆菌(13.6%)、厚壁菌门(4.84%)和绿弯菌门(2.56%)在 G2 系统中占优势,而门拟杆菌门(14.55%)、放线菌门(7.45%)和变形菌门(10.82%)在 G1 系统中占优势。宏基因组序列在 NCBI-GenBank 序列读取档案中,SRX8289747(G1)和 SRX8289748(G2)在研究 PRJNA631113 中。结果表明,常规和有机条件会影响根际微生物组及其环境。