Accession |
SAMC393304 |
Sample name |
FC8 |
Title |
24 |
Sample type |
Environmental/Metagenome Genomic Sequences MIMS.me -- soil |
Organism |
soil metagenome |
Description |
uncultivated soil |
Attributes |
Collection date | 2019-12-13 |
environment biome | Soil |
environment feature | Agricultural soil |
environment material | Agricultural soil |
Geographic location | China: Shaanxi |
Latitude and longitude | 33.31 N 108.83 E |
depth | 20cm |
elevation | 40m |
agrochemical additions | |
aluminium saturation | |
aluminium saturation method | |
altitude | |
annual and seasonal precipitation | |
annual and seasonal temperature | |
crop rotation | |
current land use | |
current vegetation | |
current vegetation method | |
drainage classification | |
extreme event | |
extreme salinity | |
FAO classification | |
fire | |
flooding | |
heavy metals | |
heavy metals method | |
horizon | |
horizon method | |
links to additional analysis | |
link to classification information | |
link to climate information | |
local classification | |
local classification method | |
microbial biomass | |
microbial biomass method | |
miscellaneous parameter | |
pH | |
pH method | |
pooling of DNA extracts | |
previous land use | |
previous land use method | |
profile position | |
salinity method | |
sieving | |
slope aspect | |
soil type | |
slope gradient | |
soil type method | |
storage conditions | |
texture | |
texture method | |
tillage | |
total N method | |
total nitrogen | |
total organic carbon method | |
total organic carbon | |
water content of soil | |
water content of soil method | |
sample volume or weight for DNA extraction | |
Reference for biomaterial | |
Relationship to oxygen | |
Sample collection device or method | |
Sample material processing | |
Sample size | |
source material identifiers | |
Isolation source | |
Custom Attributes | |
|
Release date |
2021-06-17 |
BioProject Accession |
PRJCA005506 |
Submitter |
Yuan Yuan (y_yuan0732@163.com)
|
Organization |
China Academy of Chinese Medical Sciences |
Submission date |
2021-06-17 |