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1.甘肃中医药大学 药学院,兰州 730000
2.甘肃省科学院 生物研究所,甘肃省微生物资源开发利用重点实验室,兰州 730000
3.西北中藏药协同创新中心,甘肃省中药质量与标准研究重点实验室培育基地,兰州 730000
姚阳阳,在读硕士,从事药用植物资源保护与利用研究,E-mail:yyy510508@163.com
杨涛,硕士,副研究员,从事中药材微生态及生物技术研究,Tel:0931-4563768,E-mail:yangtao8383@163.com; *
王引权,博士,教授,博士生导师,从事中药质量综合评价研究,Tel:0931-4613982,E-mail:kjkfpp@163.com
收稿日期:2021-07-03,
网络出版日期:2021-08-12,
纸质出版日期:2022-04-20
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姚阳阳,杨涛,王引权等.两类根际复配促生菌剂对当归生长、生理特征及药效成分的影响[J].中国实验方剂学杂志,2022,28(08):131-138.
YAO Yang-yang,YANG Tao,WANG Yin-quan,et al.Effect of Two Kinds of Compound Rhizosphere Growth-promoting Bacteria on Growth,Physiological Characteristics and Pharmacodynamic Components ofAngelicae Sinensis Radix[J].Chinese Journal of Experimental Traditional Medical Formulae,2022,28(08):131-138.
姚阳阳,杨涛,王引权等.两类根际复配促生菌剂对当归生长、生理特征及药效成分的影响[J].中国实验方剂学杂志,2022,28(08):131-138. DOI: 10.13422/j.cnki.syfjx.20211856.
YAO Yang-yang,YANG Tao,WANG Yin-quan,et al.Effect of Two Kinds of Compound Rhizosphere Growth-promoting Bacteria on Growth,Physiological Characteristics and Pharmacodynamic Components ofAngelicae Sinensis Radix[J].Chinese Journal of Experimental Traditional Medical Formulae,2022,28(08):131-138. DOI: 10.13422/j.cnki.syfjx.20211856.
目的
2
研究叶面喷施两类根际复配促生菌剂对当归生长与生理特征、药效成分的影响,以期为当归生态种植提供功能性微生物菌剂奠定基础。
方法
2
在田间叶面喷施浓度为1×10
8
CFU·mL
-1
的复配促生菌剂T1(假单胞菌属CBS5、CBS7和CBSB)和T2(芽孢杆菌属5C1、5C5和5C7),以喷施无菌马铃薯葡萄糖肉汤培养基为对照(CK)。常规方法测定当归植株生长指标,利用便携式光合测量系统测定当归植株光合生理指标,试剂盒法测定植物和微生物相关酶活性,超高效液相色谱串联质谱法分析植物内源激素水平,高效液相色普法测定阿魏酸、洋川芎内酯I、阿魏酸松柏酯、洋川芎内酯A、
Z
-藁本内酯含量。
结果
2
与CK比较,2种复合菌剂能促进当归植株生长,增加生物量;提高叶片净光合速率、气孔导度、胞间CO
2
浓度、蒸腾速率,增加过氧化氢酶、过氧化物酶、超氧化物歧化酶、多胺氧化酶、二胺氧化酶和多酚氧化酶的活性,增加植株中内源茉莉酸、细胞分裂素及赤霉素水平,提高当归药材阿魏酸、洋川芎内酯A、
Z
-藁本内酯含量;降低膜脂过氧化产物丙二醛和衰老因子脱落酸的含量;减少根腐发病率。
结论
2
叶面喷施两类根际复配促生菌剂对当归生长、光合作用和抗胁迫能力均有促进作用,对当归药材品质形成有不同程度的提升。综合分析,当归叶面喷施复合菌剂T1处理的促生增质作用优于T2处理。
Objective
2
To study the effects of foliar spraying of two kinds of compound rhizosphere growth-promoting agents on the growth and physiological characteristics of Angelicae Sinensis Radix (ASR), as well as the pharmacodynamic components, in order to lay a foundation for providing functional microbial agents for ecological cultivation of ASR.
Method
2
The compound growth-promoting agents T1 (
Pseudomonas
CBS5, CBS7 and CBSB) and T2 (
Bacillus
5C1, 5C5 and 5C7) with the concentration of 1×10
8
CFU·mL
-1
were sprayed on the leaf surface of the field, and the sterile potato glucose broth medium was used as the control (CK). The plant growth indexes of ASR were measured by conventional methods, the photosynthetic physiological indexes of ASR were measured by portable photosynthetic measurement system, the enzyme activities of plants and microorganisms were measured by kit method, and the endogenous hormone levels were analyzed by ultra-performance liquid chromatography tandem mass spectrometry. The contents of ferulic acid, senkyunolide I, coniferyl ferulate, senkyunolide A and
Z
-ligustilide were determined by high performance liquid chromatography.
Result
2
Compared with CK, the two compound inoculants could promote the growth of ASR and increase the biomass, increase the leaf net photosynthetic rate, stomatal conductance, intercellular CO
2
concentration, transpiration rate, increase catalase, peroxidase, superoxide dismutase, polyamine oxidase, diamine oxidase and polyphenol oxidase enzyme activities, increase endogenous jasmonic acid, cytokinin and gibberellin levels in plants, increase the contents of ferulic acid, senkyunolide A and
Z
-ligustilide, reduce the contents of malondialdehyde and abscisic acid, and reduce the incidence of root rot.
Conclusion
2
Foliar spraying of two kinds of rhizosphere compound growth-promoting agents can promote the growth, photosynthesis and stress resistance of ASR, and can improve the quality of ASR in different degrees. Comprehensive analysis shows that T1 treatment is better than T2 treatment in the growth-promoting and quality-enhancing of ASR.
国家药典委员会 . 中华人民共和国药典:一部 [M]. 北京 : 中国医药科技出版社 , 2020 : 139 .
康天兰 , 刘学周 , 曹占凤 , 等 . 甘肃中药材生产形势分析及发展对策 [J]. 甘肃农业科技 , 2019 ( 1 ): 90 - 94 .
王红阳 , 康传志 , 张文晋 , 等 . 中药生态农业发展的土地利用策略 [J]. 中国中药杂志 , 2020 , 45 ( 9 ): 1990 - 1995 .
EGAMBERDIEVA D , SHRIVASTAVA S , VARMA A . Plant-growth-promoting Rhizobacteria (PGPR) and Medicinal Plants [M]. Berlin : Springer International Publishing , 2015 .
YADAV A N , KUMAR R , KUMAR S , et al . Beneficial microbiomes:Biodiversity and potential biotechnological applications for sustainable agriculture and human health [J]. J Appl Biol Biotechnol , 2017 , 5 ( 6 ): 45 - 57 .
欧阳湖 , 任建国 , 焦松林 , 等 . 促生菌 Bacillus sp. KTS-1-1和/或氮磷钾复合肥对太子参生长及代谢的影响 [J]. 中国土壤与肥料 , 2020 ( 6 ): 262 - 271 .
雷海英 , 赵青松 , 杨潇 , 等 . 苦参根际高效固氮菌的分离及复合菌肥对幼苗的促生效应 [J]. 生物技术通报 , 2020 , 36 ( 9 ): 157 - 166 .
MARTIN R H , GARCIA V A , RAMOS S B , et al . Metabolic elicitors of Pseudomonas fluorescens N 21.4 elicit flavonoid metabolism in blackberry fruit [J]. J Sci Food Agr , 2021 , 101 ( 1 ): 205 - 214 .
GAO Y G , LIU Q , ZANG P , et al . An endophytic bacterium isolated from Panax ginseng C. A. Meyer enhances growth,reduces morbidity,and stimulates ginsenoside biosynthesis [J]. Phytochem Lett , 2015 , 11 : 132 - 138 .
FENG W M , LIU P , YAN H , et al . Impact of Bacillus on phthalides accumulation in Angelica sinensis (Oliv.) by stoichiometry and microbial diversity analysis [J]. Front Microbiol , 2021 , 11 : 611143 .
杨涛 , 赵疆 , 方彦昊 , 等 . 甘肃贝母生防菌分离及其对腐烂病防治的研究 [J]. 中药材 , 2021 , 44 ( 1 ): 1 - 6 .
BARNAWAL D , MAJI D , BHARTI N , et al . ACC deaminase-containing Bacillus subtilis reduces stress ethylene-induced damage and improves mycorrhizal colonization and rhizobial nodulation in Trigonella foenum-graecum under drought stress [J]. J Plant Growth Regul , 2013 , 32 ( 4 ): 809 - 822 .
杨涛 , 赵疆 , 闫鹏勋 , 等 . 纳米铁和褪黑素对驯化栽培条件下甘肃贝母产量和品质的影响 [J]. 中国实验方剂学杂志 , 2021 , 27 ( 7 ): 144 - 150 .
杨涛 , 姚阳阳 , 张永涛 , 等 . 不同植物激素和微生物对重茬地当归产量和品质的影响 [J]. 中药材 , 2021 , 44 ( 5 ): 1063 - 1068 .
刘妍如 , 唐志书 , 宋忠兴 , 等 . 以药效成分群-活性-功效关联作用筛选当归质量标志物 [J]. 中草药 , 2021 , 52 ( 9 ): 2626 - 2637 .
代宇佳 , 罗晓峰 , 周文冠 , 等 . 生物和非生物逆境胁迫下的植物系统信号 [J]. 植物学报 , 2019 , 54 ( 2 ): 255 - 264 .
TAO X Y , WU Q , LI J Y , et al . Ethylene biosynthesis and signal transduction are enhanced during accelerated ripening of postharvest tomato treated with exogenous methyl jasmonate [J]. Sci Hortic , 2021 , 281 : 109965 .
GUO R T , JI S D , WANG Z Y , et al . Trichoderma asperellum xylanases promote growth and induce resistance in poplar [J]. Microbiol Res , 2021 , 248 : 126726 .
谷文超 , 阳文武 , 张杰 , 等 . 混合接种丛枝菌根真菌对木香幼苗生长及化学成分的影响 [J]. 中国实验方剂学杂志 , 2020 , 26 ( 14 ): 173 - 181 .
黎海灵 , 郭冬琴 , 杨敏 , 等 . 不同丛枝菌根真菌组合对滇重楼光合生理和化学成分的影响 [J]. 中国实验方剂学杂志 , 2021 , 27 ( 7 ): 134 - 143 .
MEENA M , SWAPNIL P , DIVYANSHUK , et al . PGPR‐mediated induction of systemic resistance and physiochemical alterations in plants against the pathogens:Current perspectives [J]. J Basic Microb , 2020 , 60 ( 10 ): 828 - 861 .
山雨思 , 代欢欢 , 何潇 , 等 . 外源茉莉酸甲酯和水杨酸对盐胁迫下颠茄生理特性和次生代谢的影响 [J]. 植物生理学报 , 2019 , 55 ( 9 ): 1335 - 1346 .
官玲亮 , 白琳 , 庞玉新 , 等 . 外源水杨酸对艾纳香活性成分、抗氧化酶活力及内源激素含量的影响 [J]. 中药材 , 2019 , 42 ( 3 ): 490 - 494 .
陈飘雪 , 陈飞 , 袁洁 , 等 . 内生菌复合接种对茅苍术生长和倍半萜积累的影响 [J]. 生态学杂志 , 2020 , 39 ( 9 ): 2944 - 2952 .
路星星 , 强玮 , 付维 , 等 . 茉莉酸甲酯对钩藤生物碱合成的影响 [J]. 分子植物育种 , 2021 , 19 ( 12 ): 3612 - 3618 .
WEI X M , CAO P , WANG G , et al . Microbial inoculant and garbage enzyme reduced cadmium (Cd) uptake in Salvia miltiorrhiza (Bge.) under Cd stress [J]. Ecotoxicol Environ Saf , 2020 , 192 : 110311 .
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