| Literature DB >> 26691455 |
Longfei Zhao1, Yajun Xu1, Xin-He Lai2, Changjuan Shan3, Zhenshan Deng4, Yuliang Ji5.
Abstract
A total of 48 endophytic bacteria were isolated from surface-sterilized tissues of the medicinal plant Lonicera japonica, which is grown in eastern China; six strains were selected for further study based on their potential ability to promote plant growth in vitro (siderophore and indoleacetic acid production). The bacteria were characterized by phylogenetically analyzing their 16S rRNA gene similarity, by examining their effect on the mycelial development of pathogenic fungi, by testing their potential plant growth-promoting characteristics, and by measuring wheat growth parameters after inoculation. Results showed that the number of endophytic bacteria in L. japonica varied among different tissues, but it remained relatively stable in the same tissues from four different plantation locations. Among the three endophytic strains, strains 122 and 124 both had high siderophore production, with the latter showing the highest phosphate solubilization activity (45.6 mg/L) and aminocyclopropane-1-carboxylic acid deaminase activity (47.3 nmol/mg/h). Strain 170 had the highest indoleacetic acid (IAA) production (49.2 mg/L) and cellulase and pectinase activities. After inoculation, most of the six selected isolates showed a strong capacity to promote wheat growth. Compared with the controls, the increase in the shoot length, root length, fresh weight, dry weight, and chlorophyll content was most remarkable in wheat seedlings inoculated with strain 130. The positive correlation between enzyme (cellulose and pectinase) activity and inhibition rate on Fusarium oxysporum, the IAA production, and the root length of wheat seedlings inoculated with each tested endophytic strain was significant in regression analysis. Deformity of pathogenic fungal mycelia was observed under a microscope after the interaction with the endophytic isolates. Such deformity may be directly related to the production of hydrolytic bacterial enzymes (cellulose and pectinase). The six endophytic bacterial strains were identified to be Paenibacillus and Bacillus strains based on the results of 16S rRNA gene sequencing analysis and their physiological and biochemical characteristics. Results indicate the promising application of endophytic bacteria to the biological control of pathogenic fungi and the improvement of wheat crop growth.Entities:
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Year: 2015 PMID: 26691455 PMCID: PMC4704640 DOI: 10.1590/S1517-838246420140024
Source DB: PubMed Journal: Braz J Microbiol ISSN: 1517-8382 Impact factor: 2.476
Density of endophytic bacteria isolated from different tissues of L. japonica (× 104 cfu/g).
| Origin sites | Roots | Stems | Leaves |
|---|---|---|---|
| Shangqiu, Henan Province | 3.56 ± 0.0038a,
| 0.87 ± 0.0048a | 2.98 ± 0.0051a |
| Huaxian, Henan Province | 3.89 ± 0.0038b | 0.96 ± 0.0089b | 2.61 ± 0.0029b |
| Pingyi, Shangdong Province | 3.67 ± 0.0092c | 0.83 ± 0.0060c | 2.87 ± 0.0062c |
| Juye, Shangdong Province | 3.37 ± 0.0142d | 0.86 ± 0.0021a | 2.45 ± 0.0092d |
| Mean | 3.62 ± 0.0078 | 0.88 ± 0.0055 | 2.73 ± 0.0059 |
Notes: Data are the mean of three samples. ± represents the standard errors of the mean.
The same letter indicates no significant differences between treatments at 0.05 levels.
PGPC of endophytic bacteria.
| Strains | Sid. (C) (mg/L) | Sid. (H) (mg/L) | Pho. (mg/L) | IAA production (mg/L) | ACC deaminase (nmol/mg/h) | Cellulase activity (D/d) | Pectinase activity (D/d) |
|---|---|---|---|---|---|---|---|
| 122 | 61.6 ± 0.17a | 76.3 ± 0.56a | 35.3 ± 0.26a | 18.3 ± 0.12a | 45.2 ± 0.36a | 1.20 ± 0.08a | 1.34 ± 0.01a |
| 124 | 87.2 ± 0.36b | 56.1 ± 0.26b | 45.6 ± 0.46b | 11.5 ± 0.12b | 47.3 ± 0.26b | 1.14 ± 0.05a | 1.20 ± 0.06b |
| 130 | 41.7 ± 0.53c | 45.5 ± 0.53c | 14.9 ± 0.72c | 29.3 ± 0.35c | 35.6 ± 031c | 0.56 ± 0.03c | 0.59 ± 0.05c |
| 132 | – | – | 1.87 ± 0.07d | 22.9 ± 0.14d | – | 0.76 ± 0.03d | 0.82 ± 0.01d |
| 135 | 1.8 ± 0.06d | 0.90 ± 0.09d | – | 12.6 ± 0.17e | 12.3 ± 0.39d | 1.36 ± 0.03b | 1.43 ± 0.02a |
| 170 | 21.9 ± 0.36e | 23.4 ± 0.26e | – | 49.2 ± 0.46f | – | 2.58 ± 0.06e | 2.64 ± 0.04e |
| Control | / | / | / | – | / | – | – |
Note: Sid. (C), Siderophore production (Catechol-type); Sid. (H), Siderophore production (Hydroxamate-type); Pho phosphate solubilization; IAA, indoleacetic acid; ACC, 1-aminocyclopropane-1-carboxylic acid, activity (nmol α-ketobutyrate/mg biomass/h. D/d indicates the ability to produce siderophores, cellulose, and pectinase. D, diameter of colony and halo; d - colony diameter.
Average (±, standard deviation), the data in columns is average values of three repetitions.
The same letter means no significant differences between treatments at 0.01 level; negative action, blank; control for IAA assay was LB (10 g NaCl/L) without inoculated bacterial suspension under the same incubation condition.
Inhibition of endophytic bacteria by pathogenic fungi.
| Strains | Source |
|
|
| |||
|---|---|---|---|---|---|---|---|
| 122 | Root | 2.9 | 64.63 | 4.6 | 46.51 | 3.4 | 57.50 |
| 124 | Root | 2.1 | 74.39 | 5.6 | 34.89 | 2.3 | 71.25 |
| 130 | Stem | 6.6 | 19.51 | 3.3 | 61.63 | 2.1 | 73.75 |
| 132 | Leaf | 6.5 | 20.73 | 2.5 | 70.93 | 4.2 | 47.50 |
| 135 | Root | 3.3 | 59.76 | 3.1 | 63.95 | 4.1 | 48.75 |
| 170 | Stem | 2.8 | 65.85 | 3.1 | 63.95 | 2.9 | 63.75 |
| Control | / | 8.2 | 0 | 8.6 | 0 | 8.0 | 0 |
Notes: Data are the mean of three samples.
Colony diameter, cm.
Inhibition ratio of pathogenic fungus (%) = (Control colony diameter-treatment colony diameter)100/ Control colony diameter.
Controls for antifungal activity assays were fungal mycelia cultivated for 7 d on PDA plates without the tested strains under the same incubation condition.
Figure 1Regression analysis of the effect of endophytic bacteria on root length and the pathogenic fungus F. oxysporum. (A) Regression analysis of bacterial IAA and root lengths of seedlings inoculated with endopyhtic bacteria. (B) Regression analysis of bacterial cellulase activity and inhibition rate of F. oxysporum. (C) Regression analysis of bacterial pectinase activity and inhibition rate of F. oxysporum. Names of strains are shown on different data dots.
Figure 2Morphological changes of the mycelia of plant pathogenic fungi upon interaction with Lonicera japonica endophytes. Images in A, B, and C were representative of normal mycelia of M. grisea MG01, F. oxysporum FO02, and A. alternata AA03. Images in D, E, F were the atrophy and deformity of M. grisea MG01 mycelia (by strain 130), bending knot of F. oxysporum FO02 mycelia (by strain 124), autolysis, fracture, and atrophy of A. alternata AA03 mycelia (by strain 132).
Figure 3Effect of six endophytic bacteria on shoot length (A), root length (B), fresh weight (C), and dry weight (D) of wheat seedlings. Each value is the mean of ten replicates. Bars represent the standard deviations of mean. Statistical significance was determined at p < 0.05 according to the Tukey's test. The asterisk represents significant differences.
Figure 4Effect of six endophytic bacteria on the chlorophyll content of wheat seedlings. Each value is the mean of three replicates. Bars represent the standard deviations of the mean. Statistical significance was determined at p < 0.05 according to the Tukey's test. The asterisk represents significant differences.
Figure 5Neighbor-joining tree based on the alignment of nucleotide sequences of the 16S rRNA gene from the tested strains (shown in bold) and reference strains. GenBank accession numbers were placed in parentheses. Bootstrap values greater than 50% were indicated. Scale bar represents the number of substitutions per site.
Identification and classification of the tested strains.
| Strains | Genus affiliation | Accession No. of the 16S rDNA sequence | Best closest match | Similarity (%) |
|---|---|---|---|---|
| 122 |
| KC208613 |
| 98.7 |
| 124 |
| KC208614 |
| 99.1 |
| 130 |
| KC208617 |
| 100 |
| 132 |
| KC208615 |
| 99.6 |
| 135 |
| KC208616 |
| 99.7 |
| 170 |
| KC208618 |
| 99.6 |