| Literature DB >> 26802172 |
Fei Wang1, Ning Shi1, Rongfeng Jiang1, Fusuo Zhang1, Gu Feng2.
Abstract
This study used a [(13)C]DNA stable isotope probing (SIP) technique to elucidate a direct pathway for the translocation of (13)C-labeled photoassimilate from maize plants to extraradical mycelium-associated phosphate-solubilizing bacteria (PSB) that mediate the mineralization and turnover of soil organic phosphorus (P) in the hyphosphere. Inoculation with PSB alone did not provide any benefit to maize plants but utilized the added phytate-P to their own advantage, while inoculation with Rhizophagus irregularis alone significantly promoted shoot biomass and P content compared with the control. However, compared with both sole inoculation treatments, combined inoculation with PSB and R. irregularis in the hyphosphere enhanced organic P mineralization and increased microbial biomass P in the soil. There was no extra benefit to plant P uptake but the hyphal growth of R. irregularis was reduced, suggesting that PSB benefited from the arbuscular mycorrhizal (AM) fungal mycelium and competed for soil P with the fungus. The combination of T-RFLP (terminal restriction fragment length polymorphism) analysis with a clone library revealed that one of the bacteria that actively assimilated carbon derived from pulse-labeled maize plants was Pseudomonas alcaligenes (Pseudomonadaceae) that was initially inoculated into the hyphosphere soil. These results provide the first in situ demonstration of the pathway underlying the carbon flux from plants to the AM mycelium-associated PSB, and the PSB assimilated the photosynthates exuded by the fungus and promoted mineralization and turnover of organic P in the soil.Entities:
Keywords: 13CO2 pulse labeling; AM fungus; hyphosphere; maize; organic phosphate; phosphate-solubilizing bacteria (PSB).
Mesh:
Substances:
Year: 2016 PMID: 26802172 PMCID: PMC4783358 DOI: 10.1093/jxb/erv561
Source DB: PubMed Journal: J Exp Bot ISSN: 0022-0957 Impact factor: 6.992
Fig. 1.Schematic drawing of the two-compartment cultivation system (rhizobox) used in this study. The rhizoboxes were divided into a root compartment and a hyphal compartment separated by a 30 µm nylon mesh and a buffer zone. Overall dimensions were 10×10×15cm. (This figure is available in colour at JXB online.)
Fig. 2.Schematic drawing of pulse labeling of maize plants with 13CO2. A 75ml aliquot of 13CO2 (99 atom% 13C) was injected every hour from 10:00h to 16:00h (seven times a day) into the top chamber for a total of 5 d. (This figure is available in colour at JXB online.)
Mycorrhizal colonization and hyphal density in the hyphal compartment of maize plants inoculated with R. irregularis or uninoculated, and supplied with two organic P levels (0 or 75mg P kg−1) and with or without phosphate-solubilizing bacterial inoculation in the hyphosphere
| Root colonization (%) | Hyphal density (m g−1 soil) | ||||
|---|---|---|---|---|---|
| P0 | P75 | P0 | P75 | ||
| Control | 0.32±0.03 c A | 0.31±0.02 b A | 0 c A | 0 c A | |
|
| 55.12±2.45 b B | 64.57±1.78 a A | 12.09±0.13 a B | 14.24±0.27 a A | |
| PSB | 0.33±0.03 c A | 0.29±0.03 b A | 0 c A | 0 c A | |
|
| 60.92±0.63 a A | 64.83±2.27 a A | 9.93±0.31 b B | 11.79±0.21 b A | |
| Significance | |||||
| Mycorrhiza | *** | *** | |||
| PSB | NS | *** | |||
| Organic P level | ** | *** | |||
| Mycorrhiza×PSB | NS | *** | |||
| Mycorrhiza×organic P level | ** | *** | |||
| PSB×organic P level | NS | NS | |||
| Mycorrhiza×PSB×organic P level | NS | NS | |||
Data are presented as the mean (n=3) ±SE.
Values followed by different lower case letters in a column or upper case letters in a row are significantly different at the P<0.05 level. Significance of treatments and interactions was determined by ANOVA. NS indicates no significant difference, *P< 0.05, **P< 0.01, and ***P<0.001.
Shoot dry weight and P content of maize with or without R. irregularis inoculation, and supplied with two organic P levels (0 or 75mg P kg−1) and with or without phosphate-solubilizing bacterial inoculation in the hyphosphere
| Shoot biomass (g per plant) | Shoot P content (mg per plant) | |||||
|---|---|---|---|---|---|---|
| P0 | P75 | P0 | P75 | |||
| Control | 4.67±0.26 b A | 5.09±0.44 b A | 3.47±0.23 b A | 3.77±0.27 b A | ||
|
| 8.29±0.53 a A | 9.32±0.12 a A | 7.88±0.64 a B | 10.52±0.27 a A | ||
| PSB | 4.52±0.46 b A | 5.22±0.18 b A | 3.96±0.52 b A | 3.77±0.09 b A | ||
|
| 8.61±0.17 a A | 9.62±0.45 a A | 9.49±0.86 a A | 10.99±1.11 a A | ||
| Significance | ||||||
| Mycorrhiza | *** | *** | ||||
| PSB | NS | NS | ||||
| Organic P level | NS | * | ||||
| Mycorrhiza×PSB | NS | NS | ||||
| Mycorrhiza×organic P level | NS | * | ||||
| PSB×organic P level | NS | NS | ||||
| Mycorrhiza×PSB×organic P level | NS | NS | ||||
Data are presented as the mean (n=3) ±SE. Values followed by different lower case letters in a column or upper case letters in a row are significantly different at the P<0.05 level. Significance of treatments and interactions was determined by ANOVA. NS indicates no significant difference, *P<0.05, **P<0.01, and *** P < 0.001.
Soil pH and actual acid phosphomonoesterase phosphatase activity in the hyphosphere of maize with or without R. irregularis inoculation, and supplied with two organic P levels (0 or 75mg P kg−1) and with or without phosphate-solubilizing bacterial inoculation in the hyphosphere
| pH | Actual phosphatase activity | |||
|---|---|---|---|---|
| P0 | P75 | P0 | P75 | |
| Control | 6.39±0.01 a A | 6.40±0.02 a A | 0.45±0.03 b A | 0.47±0.01 b A |
|
| 6.20±0.01 c A | 6.20±0.02 b A | 0.64±0.01 a B | 0.70±0.01 a A |
| PSB | 6.37±0.01 a A | 6.39±0.01 a A | 0.49±0.02 b A | 0.48±0.04 b A |
|
| 6.29±0.03 b A | 6.23±0.00 b A | 0.60±0.01 a B | 0.72±0.03 a A |
| Significance | ||||
| | *** | *** | ||
| PSB | * | NS | ||
| Organic P level | NS | * | ||
| Mycorrhiza×PSB | ** | NS | ||
| Mycorrhiza×organic P level | * | * | ||
| PSB×organic P level | NS | NS | ||
| Mycorrhiza×PSB×organic P level | NS | NS | ||
Data are presented as the mean (n=3) ± SE. Values followed by different lower case letters in a column or upper case letters in a row are significantly different at the P < 0.05 level. Significance of treatments and interactions was determined by ANOVA. NS indicates no significant difference, *P<0.05, **P<0.01, and *** P<0.001.
NaHCO3-extracted organic P and microbial biomass phosphorus (MBP) in the hyphosphere of maize with or without R. irregularis inoculation, and supplied with two organic P levels (0 or 75mg P kg−1) and with or without phosphate-solubilizing bacterial inoculation in the hyphosphere
| Organic P concentration (mg kg−1) | MBP (mg kg−1) | ||||
|---|---|---|---|---|---|
| P0 | P75 | P0 | P75 | ||
| Control | 6.36±0.58 a B | 8.65±0.38 a A | 1.90±0.03 c B | 2.45±0.09 c A | |
|
| 5.65±0.62 ab B | 7.61±0.55 a A | 2.08±0.02 c B | 2.59±0.02 c A | |
| PSB | 5.45±0.02 ab A | 6.12±0.22 b A | 2.85±0.07 b B | 3.44±0.07 b A | |
|
| 4.32±0.59 b A | 5.05±0.32 b A | 4.45±0.10 a B | 4.87±0.09 a A | |
| Significance | |||||
| Mycorrhiza | ** | *** | |||
| PSB | *** | *** | |||
| Organic P level | *** | *** | |||
| Mycorrhiza×PSB | NS | *** | |||
| Mycorrhiza×organic P level | NS | NS | |||
| PSB×organic P level | * | NS | |||
| Mycorrhiza×PSB×organic P level | NS | NS | |||
Data are presented as the mean (n=3) ±SE. Values followed by different lower case letters in a column or upper case letters in a row are significantly different at the P<0.05 level. Significance of treatments and interactions was determined by ANOVA. NS indicates no significant difference, * P<0.05, ** P<0.01, and *** P<0.001.
Carbon isotope ratios of plant roots and hyphosphere soil after 13CO2 application to maize inoculated with R. irregularis and phosphate-solubilizing bacteria in the hyphal compartment in labeling experiment 2
| Labeling status | Treatment | δ13C ‰ | |
|---|---|---|---|
| Root | Hyphosphere soil | ||
| Labeled samples | M+PSB | 2111.6±235.4 | 176.6±58.0 |
| Unlabeled samples | M+PSB | –21.4±0.4 | –22.1±0.3 |
Data are presented as the mean (n=2) ± SE.
Fig. 3.T-RFLP fingerprints of the bacterial 16S rRNA genes retrieved from density-resolved gradient fractions of 13C-labeled hyphosphere soil (a) and non-labeled control soil (b) in labeling experiment 2. The CsTFA buoyant densities (g ml−1) of the DNA fractions are shown in brackets. The number of base pairs and changes in T-RFs with DNA buoyant density are indicated by arrows.
Phylogenetic affiliations and clone number of bacterial 16S rRNA genes retrieved from ‘heavy’ (BD 1.587g ml−1) and ‘light’ (BD 1.563g ml−1) DNA fractions of maize hyphosphere soil in labeling experiment 2
| Phylogenetic group | Heavy | Light | T-RF (bp) |
|---|---|---|---|
| Alphaproteobacteria | |||
| Bradyrhizobiaceae | 4 | 150, 441 | |
| Methylobacteriaceae | 1 | 150 | |
| Uncultured | 10 | 3 |
|
| Betaproteobacteria | 150 | ||
| Oxalobacteraceae | 2 | 109, 488 | |
| Uncultured | 7 | 4 | 452, 488, 492 |
| Gammaproteobacteria | |||
| Pseudomonadaceae | 1 | 490 | |
| Uncultured | 3 | 2 | 82, 141, 186 |
| Actinobacteria | |||
| Streptomycetaceae | 5 | 1 |
|
| Nocardioidaceae | 1 | 1 | 142, 161 |
| Micrococcaceae | 1 | 67 | |
| Uncultured | 3 | 1 | 161 |
| Firmicutes | 3 | 2 | 145, 153 |
| Cyanobacteria | 9 |
| |
| Uncultured | 21 | 20 | 82, 95, |
T-RFs with a relative abundance of >5% in total (105 clones) are indicated in bold.
T-RF represents phosphate-solubilizing bacterium Pseudomonas alcaligenes added to the hyphal compartment in this study.
Fig. 4.Phylogenetic relationship of bacterial 16S rRNA gene clone sequences derived from ‘heavy’ and ‘light’ DNA fractions of maize hyphosphere soil in labeling experiment 2. Sequences of the HD library represent the ‘heavy’ DNA fraction; those of the LD library represent the ‘light’ DNA fraction. The sequences obtained in this study are shown in bold, the in silico T-RF sizes of clone sequences digested with MspI are given in brackets, and the GenBank accession numbers of sequences are indicated. The scale bar represents 5% sequence divergence.