在BioDeep NovoCell知识数据库中,参考离子总共被划分为4个级别。
  • Confirmed: 这个参考离子已经通过手动审计得到确认和验证。
  • Reliable: 这个参考离子可能在特定的解剖组织环境中高度保守。
  • Unreliable: 这个参考离子具有较高的排名价值,但缺乏可重复性。
  • Unavailable: 由于排名价值低且缺乏可重复性,这个参考离子不应用于注释。

Found 9 Reference Ions Near m/z 471.0477
NovoCell ID m/z Mass Window Metabolite Ranking Anatomy Context
MSI_000013082 Unavailable 471.0484 471.0484 ~ 471.0484
MzDiff: none
Dimethylellagic acid glucuronide (BioDeep_00000178366)
Formula: C22H18O14 (506.0697)
-0.68 (100%) Plant
[PO:0005020] vascular bundle
MSI_000013791 Unreliable 471.0484 471.0484 ~ 471.0484
MzDiff: none
Dimethylellagic acid glucuronide (BioDeep_00000178366)
Formula: C22H18O14 (506.0697)
0.13 (100%) Plant
[PO:0005417] phloem
MSI_000015207 Unavailable 471.0484 471.0484 ~ 471.0484
MzDiff: none
Dimethylellagic acid glucuronide (BioDeep_00000178366)
Formula: C22H18O14 (506.0697)
-0.62 (100%) Plant
[PO:0006036] root epidermis
MSI_000018621 Unreliable 471.0484 471.0484 ~ 471.0484
MzDiff: none
Dimethylellagic acid glucuronide (BioDeep_00000178366)
Formula: C22H18O14 (506.0697)
1.69 (100%) Plant
[PO:0020124] root stele
MSI_000020055 Unavailable 471.0484 471.0484 ~ 471.0484
MzDiff: none
Dimethylellagic acid glucuronide (BioDeep_00000178366)
Formula: C22H18O14 (506.0697)
-0.52 (100%) Plant
[PO:0025197] stele
MSI_000032488 Unreliable 471.0481 471.0481 ~ 471.0481
MzDiff: none
Glucobrassicin (BioDeep_00000003266)
Formula: C16H20N2O9S2 (448.061)
1.5 (100%) Posidonia oceanica
[PO:0005020] vascular bundle
MSI_000033809 Unreliable 471.0473 471.0473 ~ 471.0473
MzDiff: none
Glucobrassicin (BioDeep_00000003266)
Formula: C16H20N2O9S2 (448.061)
0.51 (100%) Posidonia oceanica
[PO:0005352] xylem
MSI_000049546 Unreliable 471.0476 471.0476 ~ 471.0476
MzDiff: none
Iron(III) ammonium citrate (BioDeep_00000228282)
Formula: C12H22FeN3O14 (488.0451)
1.98 (100%) Mytilus edulis
[UBERON:0009120] gill filament
MSI_000050904 Unreliable 471.0476 471.0476 ~ 471.0476
MzDiff: none
Iron(III) ammonium citrate (BioDeep_00000228282)
Formula: C12H22FeN3O14 (488.0451)
0.64 (100%) Mytilus edulis
[UBERON:2001856] gill ray

Found 6 Sample Hits
Metabolite Species Sample
Dimethylellagic acid glucuronide

Formula: C22H18O14 (506.0697)
Adducts: [M+H-2H2O]+ (Ppm: 15.7)
Plant (Root)
MPIMM_035_QE_P_PO_6pm
Resolution: 30μm, 165x170

Description

Glucobrassicin

Formula: C16H20N2O9S2 (448.061)
Adducts: [M+Na]+ (Ppm: 6.2)
Posidonia oceanica (root)
20190614_MS1_A19r-20
Resolution: 17μm, 262x276

Description

Seagrasses are one of the most efficient natural sinks of carbon dioxide (CO2) on Earth. Despite covering less than 0.1% of coastal regions, they have the capacity to bury up to 10% of marine organic matter and can bury the same amount of carbon 35 times faster than tropical rainforests. On land, the soil’s ability to sequestrate carbon is intimately linked to microbial metabolism. Despite the growing attention to the link between plant production, microbial communities, and the carbon cycle in terrestrial ecosystems, these processes remain enigmatic in the sea. Here, we show that seagrasses excrete organic sugars, namely in the form of sucrose, into their rhizospheres. Surprisingly, the microbial communities living underneath meadows do not fully use this sugar stock in their metabolism. Instead, sucrose piles up in the sediments to mM concentrations underneath multiple types of seagrass meadows. Sediment incubation experiments show that microbial communities living underneath a meadow use sucrose at low metabolic rates. Our metagenomic analyses revealed that the distinct community of microorganisms occurring underneath meadows is limited in their ability to degrade simple sugars, which allows these compounds to persist in the environment over relatively long periods of time. Our findings reveal how seagrasses form blue carbon stocks despite the relatively small area they occupy. Unfortunately, anthropogenic disturbances are threatening the long-term persistence of seagrass meadows. Given that these sediments contain a large stock of sugars that heterotopic bacteria can degrade, it is even more important to protect these ecosystems from degradation.

Glucobrassicin

Formula: C16H20N2O9S2 (448.061)
Adducts: [M+Na]+ (Ppm: 4.5)
Posidonia oceanica (root)
20190613_MS1_A19r-18
Resolution: 17μm, 246x264

Description

Iron(III) ammonium citrate

Formula: C12H22FeN3O14 (488.0451)
Adducts: [M+H-H2O]+ (Ppm: 13.1)
Mytilus edulis (mantle)
20190201_MS38_Crassostrea_Mantle_350-1500_DHB_pos_A28_10um_270x210
Resolution: 10μm, 270x210

Description

Iron(III) ammonium citrate

Formula: C12H22FeN3O14 (488.0451)
Adducts: [M+H-H2O]+ (Ppm: 12.3)
Mytilus edulis (gill)
20190202_MS38_Crassostrea_Gill_350-1500_DHB_pos_A25_11um_305x210
Resolution: 11μm, 305x210

Description

single cell layer class_4 is the gill structure cells, metabolite ion 534.2956 is the top representive ion of this type of cell

Iron(III) ammonium citrate

Formula: C12H22FeN3O14 (488.0451)
Adducts: [M+H-H2O]+ (Ppm: 12.5)
Mytilus edulis (mantle)
20190216_MS38_Mytilus_mantle_350-1500_DHB_pos_A26_10um_275x210
Resolution: 10μm, 275x210

Description