生物技术通报 ›› 2025, Vol. 41 ›› Issue (7): 299-311.doi: 10.13560/j.cnki.biotech.bull.1985.2025-0070
孙孟雪1(
), 张艺潆1, 徐鹏2, 孙卓1, 王云贺1(
), 韩忠明1,3(
)
收稿日期:2025-01-21
出版日期:2025-07-26
发布日期:2025-07-22
通讯作者:
王云贺,女,博士,副教授,研究方向 :中药资源评价;E-mail: wangyunhe2015@163.com作者简介:孙孟雪,女,硕士研究生,研究方向 :药用植物保护及病害防治;E-mail: 17860368861@163.com
基金资助:
SUN Meng-xue1(
), ZHANG Yi-ying1, Xu Peng2, SUN Zhuo1, WANG Yun-he1(
), HAN Zhong-ming1,3(
)
Received:2025-01-21
Published:2025-07-26
Online:2025-07-22
摘要:
目的 从健康防风根部中分离、筛选出具有促生特性的菌株,探究其对防风植株的促生效果,挖掘内生细菌开发利用的潜力。 方法 采用稀释涂布法从健康防风根部中分离内生细菌,并通过选择培养基筛选具有固氮、溶磷、产IAA和产铁载体的促生细菌;通过形态学、生理生化鉴定和16S rRNA基因测序对促生菌株进行分类归属;基于抗生素标记法和盆栽试验探究内生细菌在土壤中的定殖能力及其对防风植株生长的影响。 结果 在防风根部中共分离出202株内生细菌,26株具有固氮能力,21株具有溶磷能力,24株具有产IAA能力,27株具有产铁载体能力。其中2株内生细菌具有3种及3种以上不同的促生功能,分别为MX-56和MX-31,鉴定为密歇根克雷伯氏菌(Klebsiella michiganensis),韩国假单胞菌(Pseudomonas koreensis)。两株抗利福平标记菌株可稳定定殖于防风根围土壤中,且在盆栽试验中,与CK相比,MX-56处理下防风的株高、根长、根粗、地上鲜重、根鲜重和根干重增长最为明显,分别增加13.47%、43.04%、42.75%、31.43%、63.21%和77.12%(P<0.05),与CK相比,菌株MX-31和MX-56处理下防风植株中两种色原酮总含量分别提高了33.72%和30.23%。 结论 从健康防风根中分离筛选到2株具有较好促生效果的韩国假单胞菌MX-31和密歇根克雷伯氏菌MX-56,可以显著提高防风植株的生物量和药效成分含量。
孙孟雪, 张艺潆, 徐鹏, 孙卓, 王云贺, 韩忠明. 防风内生细菌的分离鉴定及其促生特性分析[J]. 生物技术通报, 2025, 41(7): 299-311.
SUN Meng-xue, ZHANG Yi-ying, Xu Peng, SUN Zhuo, WANG Yun-he, HAN Zhong-ming. Isolation and Identification of Endophytic Bacteria from Saposhnikovia divaricata and Analysis of Its Growth-promoting Characteristics[J]. Biotechnology Bulletin, 2025, 41(7): 299-311.
图2 防风固氮菌固氮酶活性图中不同字母代表显著性差异(P<0.01),下同
Fig. 2 Nitrogenase activity of nitrogen-fixing bacteria in S. divaricataDifferent letters in the figure indicate significant differences (P<0.01), the same below
图11 内生细菌菌株形态与革兰氏染色观察结果A:MX-56在NA培养基上的菌落形态;B:MX-56革兰氏染色显微观察图片;C:MX-31在NA培养基上的菌落形态;D:MX-31革兰氏染色显微观察图片。显微观察图片为徕卡DM 2500 100X镜拍摄后LAS X软件放大35%,未改变其分辨率
Fig. 11 Morphological and Gram staining observations of endophytic bacterial strainsA: Colony morphology of MX-56 in NA medium. B: Microscopic observation of MX-56 Gram staining. C: Colony morphology of MX-31 in in NA medium. D: Microscopic observation of MX-31 Gram staining; The microscopic image was taken with a Leica DM 2500 100X lens and magnified 35% by LAS X software without changing the resolution
| Item | MX-56 | MX-31 |
|---|---|---|
| 木糖 | + | + |
| 葡萄糖分解 | + | - |
| L-阿拉伯糖 | + | + |
| D-甘露醇 | - | + |
| 甲基红试验 | - | - |
| V-P测试 | + | - |
| OF试验 | 氧化型 | 氧化型 |
| 硫化氢产生 | - | - |
| 明胶水解 | - | - |
| 淀粉水解 | - | - |
| 氧化酶 | - | - |
| 硝酸盐还原 | + | - |
表1 内生细菌的生理生化鉴定结果
Table 1 Results of physiological and biochemical identification of endophytic bacteria
| Item | MX-56 | MX-31 |
|---|---|---|
| 木糖 | + | + |
| 葡萄糖分解 | + | - |
| L-阿拉伯糖 | + | + |
| D-甘露醇 | - | + |
| 甲基红试验 | - | - |
| V-P测试 | + | - |
| OF试验 | 氧化型 | 氧化型 |
| 硫化氢产生 | - | - |
| 明胶水解 | - | - |
| 淀粉水解 | - | - |
| 氧化酶 | - | - |
| 硝酸盐还原 | + | - |
| 标记菌株 Strain | 定殖数量 Colonization quantity (1×104 CFU/g) | |||||||
|---|---|---|---|---|---|---|---|---|
| 0 d | 4 d | 7 d | 10 d | 15 d | 20 d | 30 d | ||
| MX-31 | 1 000 | 343.33±14.53b | 172.67±4.63c | 20±0.58e | 513.33±12.02a | 118.33±4.41d | 45±2.89e | |
| MX-56 | 1 000 | 245±2.89b | 20.33±0.33e | 510±11.55a | 224.3±4.48c | 108.6±1.45d | 26.7±0.57e | |
表2 标记菌株在土壤中的定殖数量
Table 2 Amount of colonizing bacteria of marked strains in soil
| 标记菌株 Strain | 定殖数量 Colonization quantity (1×104 CFU/g) | |||||||
|---|---|---|---|---|---|---|---|---|
| 0 d | 4 d | 7 d | 10 d | 15 d | 20 d | 30 d | ||
| MX-31 | 1 000 | 343.33±14.53b | 172.67±4.63c | 20±0.58e | 513.33±12.02a | 118.33±4.41d | 45±2.89e | |
| MX-56 | 1 000 | 245±2.89b | 20.33±0.33e | 510±11.55a | 224.3±4.48c | 108.6±1.45d | 26.7±0.57e | |
菌株 Strain | 株高 Plant height (cm) | 根长 Root length (cm) | 根粗 Root diameter (mm) | 地上鲜重 Shoot fresh weight (g) | 根鲜重 Root fresh weight (g) | 根干重 Root dry weight (g) |
|---|---|---|---|---|---|---|
| CK | 55.17±1.01b | 24.00±0.84c | 5.17±0.35c | 10.18±0.12b | 4.73±0.33b | 1.18±0.04b |
| MX-31 | 58.33±1.38ab | 29.00±0.71b | 6.20±0.28b | 12.75±0.24a | 7.37±0.1a | 1.79±0.03c |
| MX-56 | 62.60±0.75a | 34.33±0.67a | 7.38±0.15a | 13.38±0.11a | 7.72±0.41a | 2.09±0.14a |
表3 不同菌处理对防风形态指标的影响
Table 3 Effect of different bacterial treatments on the morphological indexes of S. divaricata
菌株 Strain | 株高 Plant height (cm) | 根长 Root length (cm) | 根粗 Root diameter (mm) | 地上鲜重 Shoot fresh weight (g) | 根鲜重 Root fresh weight (g) | 根干重 Root dry weight (g) |
|---|---|---|---|---|---|---|
| CK | 55.17±1.01b | 24.00±0.84c | 5.17±0.35c | 10.18±0.12b | 4.73±0.33b | 1.18±0.04b |
| MX-31 | 58.33±1.38ab | 29.00±0.71b | 6.20±0.28b | 12.75±0.24a | 7.37±0.1a | 1.79±0.03c |
| MX-56 | 62.60±0.75a | 34.33±0.67a | 7.38±0.15a | 13.38±0.11a | 7.72±0.41a | 2.09±0.14a |
处理 Treatments | 升麻素苷含量 Content of prim-O-glucosylcimifugin (%) | 5-O-甲基维斯阿米醇苷含量 Content of 5-O-methylvisaminide (%) | 药典规定总含量 Total content specified in pharmacopoeia (%) |
|---|---|---|---|
| CK | 0.28±0.002b | 0.58±0.002b | 0.86±0.004b |
| MX-31 | 0.45±0.051a | 0.70±0.021a | 1.15±0.073a |
| MX-56 | 0.38±0.011a | 0.74±0.027a | 1.12±0.038a |
表4 不同菌处理对防风升麻素苷和5-O-甲基维斯阿米醇苷含量的影响
Table 4 Effects of different treatments on the contents of prim-O-glucosylcimifugin and 5-O-methylvisaminide
处理 Treatments | 升麻素苷含量 Content of prim-O-glucosylcimifugin (%) | 5-O-甲基维斯阿米醇苷含量 Content of 5-O-methylvisaminide (%) | 药典规定总含量 Total content specified in pharmacopoeia (%) |
|---|---|---|---|
| CK | 0.28±0.002b | 0.58±0.002b | 0.86±0.004b |
| MX-31 | 0.45±0.051a | 0.70±0.021a | 1.15±0.073a |
| MX-56 | 0.38±0.011a | 0.74±0.027a | 1.12±0.038a |
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