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In order to explore the effects of soil fungi on plant growth in different environments.
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创建时间:
2024-09-17
相关数据集
Predatory mechanisms in co-culture of M.xanthus and E.coli Transcriptome. Myxococcus xanthus
M.xanthus (Predator) and E.coli (Prey) were co-cultured, the predator's and the prey's response were studied by transcriptomics. The response of E.coli to the outer membrane vesicles and the culture s
NIAID Data Ecosystem20
Transcriptomic analysis of microbial communities isolated from the rhizospheres of wheat, oat and pea, compared to unplanted soil.. Crop plant rhizosphere metatranscriptomics
Rhizosphere microbes are key players in biogeochemical cycles and maintainance of plant health and productivity. Here we used metatranscriptomic analysis of rRNA depleted RNA from the rhizospheres of
NIAID Data Ecosystem10
Additional file 2: Table S1. of Whole transcriptomic analysis of the plant-beneficial rhizobacterium Bacillus amyloliquefaciens SQR9 during enhanced biofilm formation regulated by maize root exudates
Novel noncoding RNAs predicted by Rockhopper. The expression level listed in the table was obtained by Rockhopper. Con_24, negative control, 24 h post- inoculation; Ma_24, maize root exudates treatmen
Figshare2016-12-15 更新00
Sorted cell/s from wastewater in WWTP, Nijmegen, Netherlands - WWTP_P2_D18 metagenome. wastewater metagenome
High throughput identification of cell-cell associations in environmental samples
NIAID Data Ecosystem10
Dataset: Method and timing of rhizobacteria inoculation to plant roots alters success and strength of aphid suppression
Insect pests cause substantial yield losses globally, necessitating novel pest control approaches beyond chemical pesticides. Rhizobacteria, beneficial root-associated bacteria, present a promising al
NIAID Data Ecosystem00



