1.Development of DUS testing guidelines for new Atractylodes lancea varieties.
Cheng-Cai ZHANG ; Ming QIN ; Xiu-Zhi GUO ; Zi-Hua ZHANG ; Hao-Kuan ZHANG ; Xiao-Yu DAI ; Sheng WANG ; Lan-Ping GUO
China Journal of Chinese Materia Medica 2025;50(6):1515-1523
Atractylodes lancea is a perennial herbaceous plant of Asteraceae, with rhizomes for medical use. However, A. lancea plants from different habitats have great variability, and the germplasm resources of A. lancea are unclear and mixed during production. Therefore, it is urgent to protect new varieties of A. lancea. The distinctness, uniformity, and stability(DUS) testing of new plant varieties is the foundation of plant variety protection, and the DUS testing guidelines are the technical basis for variety approval agencies to conduct DUS testing. In this study, the phenotypic traits of 94 germplasm accessions of A. lancea were investigated considering the breeding and variety characteristics of A. lancea in China. The traits were classified and described, and 24 traits were preliminarily determined, including 20 basic traits that must be tested and four traits selected to be tested. The 20 basic traits included 3 quality traits, 5 false quality traits, and 12 quantitative traits, corresponding to 1 plant traits, 2 stem traits, 8 leaf traits, 6 flower traits, and 3 seed traits. The measurement ranges and coefficients of variation of eight quantitative traits were determined, on the basis of which the grading criteria and codes of the traits were determined and assigned. The guidelines has guiding significance for the trait evaluation, utilization, and breeding of new varieties of A. lancea.
Atractylodes/growth & development*
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China
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Phenotype
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Guidelines as Topic
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Plant Breeding
2.Research on climatic factors of ecology suitability regionalization of atractylodis.
Zhe-tian TAN ; Hao WANG ; Shou-dong ZHU ; Yu-ping YAN ; Lan-ping GUO ; Yu-guang ZHENG
China Journal of Chinese Materia Medica 2015;40(21):4171-4176
Through study on the correlation between atractylodis lactones ingredient content and climatic factors, we research regionalization from climatic of five main producing provinces of the country, in order to provide a scientific basis for atractylodis' conscious cultivation. By sampling from 40 origins which from five main producing provinces of the country, we use SPSS to analysis variation of atractylodis lactones ingredient content in different conditions of climatic factors and the effect of each factors. Then according to the relationship between atractylodis lactones ingredient content and climatic factors, we use ArcGIS to conduct ecological suitability regionalization based on climatic factors. The most suitable climatic condition for cultivation of atractylodis: the wettest month precipitation 220-230 mm, the warmest average temperature 25 degrees C, the average temperature of driest season 10 degrees C.
Atractylodes
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chemistry
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growth & development
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China
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Climate
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Ecology
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Ecosystem
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Seasons
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Temperature
3.Effects of different microhabitas on growth and four kinds of volatile oil components of Atractylodes lancea.
Yan ZHANG ; Sakurai MIKI ; Guang YANG ; Xiu-ji TAKEDA ; Mei-lan CHEN ; Shou-dong ZHU ; Ling WANG ; Lan-ping GUO
China Journal of Chinese Materia Medica 2015;40(21):4142-4148
To investigate the suitable site environment for Atractylodes lancea, field trials in different niches was carried out, and the seedling growth, biomass and volatile oil components in different microhabitas was studied. The study found that the survival rate, plant height, volatile oil content of those which growing under the bamboo were significantly higher than those exposed in the open field. The survival rate understory was (76 ± 15.1) %, plant height understory was (77 ± 14. 8) cm and the summation of the four kinds of volatile oil content understory reached up to 4.09%; The same evaluation values of these indicators of the four faces in the open field respectively: survival rate is 30%, plant height was (77 ± 14.8) cm and the summation of the four kinds of volatile oil content was 2.24%. But, the yield of the understory (41 ± 22.3) g was significantly lower than those four faces in the open field (104.5 g) on the contrary. For the four open field towards, the yield of the east facing, which organic matter and other nutritional conditions were better than others, was significantly higher than those in the other facings. A. lancea was found to be an anti-poor and shading-like or growing in east facing slope herb through the correlation analysis of light, temperature, soil and leaf nutrients with seedling growth, biomass and volatile oil components. It also reminds us that the understory herb with high survival rate, low incidence, low management costs, and high medicinal ingredients, although it's production is not so high, but it can be improved by increased organic fertilizer. So the ecological planting patterns which can intercropping herbs with the forest was proposed.
Atractylodes
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chemistry
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growth & development
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metabolism
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Drugs, Chinese Herbal
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chemistry
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metabolism
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Molecular Structure
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Oils, Volatile
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chemistry
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metabolism
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Seedlings
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chemistry
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growth & development
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metabolism
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Soil
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chemistry
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Temperature
4.Research on topographic factors of ecology suitability regionalization of Atractylodis macrocephala.
Zhe-Tian TAN ; Lu-Qi HUANG ; Guo-Chuan LI ; Shou-Dong ZHU ; Fang-Jie HOU ; Yu-Guang ZHENG
China Journal of Chinese Materia Medica 2014;39(23):4566-4570
Through study on the correlation between Atractylodis macrocephala lactones ingredient content and topographic factors, we researched regionalization from topography of five main producing provinces of the country, in order to provide a scientific basis for A. macrocephala reasonable cultivation. By sampling from 40 origins of five main producing provinces of the country, the variation of A. macrocephala lactones ingredient content in different conditions of topographic factors and the effect of altitude, slope and aspect was analyzed by SPSS. Then according to the relationship between A. macrocephala lactones ingredient content and topographic factors, the ecological suitability regionalization was conducted by using ArcGIS based on topographic factors. It is suitable for growth of A. macrocephala in the hilly and mountainous areas of southern whose A. macrocephala lactones ingredient content is in high levels. It is unsuitable for growth of A. macrocephala in Northern plain areas, but we can cultivate A. macrocephala in the hilly and mountainous areas of Northern. The most suitable topographic condition for cultivation of A. macrocephala : altitude 200 meters above, slope 3.00-4.99 degrees.
Altitude
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Atractylodes
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chemistry
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growth & development
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China
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Conservation of Natural Resources
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Drugs, Chinese Herbal
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analysis
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Ecosystem
5.Pollen morphological characteristics, viability test and storage of endangered medicinal plant Atractylodes lancea.
Lin LI ; Wei GU ; Jianguo CHAO ; Jie GAO ; Juanjuan ZHOU ; Xiuyuan SHEN
China Journal of Chinese Materia Medica 2012;37(11):1546-1549
OBJECTIVETo study the pollen morphological characteristics, viability test and storage character of the endangered plant Atractylodes lancea.
METHODPollen grains morphologies of A. lancea were observed by scanning electron microscope. The optimum culture medium and viability determination methods were screened out by liquid culture and dyeing methods, and then the pollen germination capacities in different storage conditions were detected.
RESULTThe pollen grains are quasi-spherical, with tricolpate and spinous sculpture. The optimal culture medium was ME3 + 16% PEG4000 + 10% sucrose, in which the pollen germination capacity reached to 62.1%, while the other three dyeing methods were not able to be applied to detecting the pollen viability of A. lancea. The low storage temperature could significantly prolong the storage time of pollen of A. lancea. At -80 degrees C, pollen viability could be maintained for 60 days.
CONCLUSIONLiquid culture method is suitable for the determination of pollen germination of A. lancea, and the rate of pollen germination is closely related to the storage time and temperature. At last, this study provides a foundation for the artificial pollination and cultivating in wildness of A. lancea.
Atractylodes ; drug effects ; growth & development ; physiology ; ultrastructure ; Endangered Species ; Germination ; drug effects ; Microscopy, Electron, Scanning ; Plants, Medicinal ; drug effects ; growth & development ; physiology ; ultrastructure ; Pollen ; drug effects ; growth & development ; physiology ; ultrastructure ; Polyethylene Glycols ; pharmacology
6.Effect of endophytic fungal elicitors on growth and atractylodin accumulation of cell suspension cultures of Atractylodes lancea.
Jinhua TAO ; Xuelian PU ; Shu JIANG
China Journal of Chinese Materia Medica 2011;36(1):27-31
OBJECTIVETo investigate the effects of endophytic fungal elicitors on the growth and atractylodin accumulation of cell suspension cultures of Atractylodes lancea.
METHODThe endophytic fungal elicitors were added to the medium with different concentrations and culture period. Their effects on biomass, atractylodin content and relevant enzyme activities in suspension cultured cells were studied.
RESULTThe cell growth was not affected by elicitors at low concentration and obviously inhibited at high concentration. Inhibition rate reached 46.7% by 100 mg L(-1) elicitor. In addition, six strains from A. lancea, among which Rhizoctonia SP1 activity was higher, had distinctly promoted the accumulation of atractylodin. Atractylodin biosynthesis was notably promoted by 20-60 mg L(-1) Rhizoctonia SP1 elicitor. When 40 mg L(-1) Rhizoctonia SP1 elicitor was added in the medium at the 12 day, the maximum content of atractylodin was 28.06 microg L(-1) at the 21 day with 48.3% higher than that of the control and PPO, POD and CAT activities remarkably increased.
CONCLUSIONAdding the endophytic elicitors to the medium is able to be effective approaches to enhance atractylodin yield in the suspension culture cell of A. lancea.
Atractylodes ; growth & development ; microbiology ; physiology ; Cell Culture Techniques ; Cells, Cultured ; Fungi ; physiology ; Furans ; metabolism ; Symbiosis
7.Remote sensing resource monitoring on Atractylodes lancea.
Yu-Zhang SUN ; Lan-Ping GUO ; Wen-Quan ZHU ; Lu-Qi HUANG ; Xiao-He GU ; Li-Jian HAN ; Yao-Zhong PAN
China Journal of Chinese Materia Medica 2008;33(4):353-356
Remote sensing technology was used for investigation of the resources of Atractylodes lancea. Firstly, the general situation of Jiangshu Maoshan and A. lancea in Maoshan was introduced; Secondly, the methods of remote sensing on the resource of the wild drugs were explained. Thirdly, the TM images were interpret according to the differences of the objects reflex spectrum, and growth environments in Damao mountain, Ermao mountain and Xiaomao mountain were divided into different sub-areas according to the results of the field investigations. Finally, the resource of A. lancea in Jiangshu Maoshan was estimated.
Atractylodes
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growth & development
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Conservation of Natural Resources
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methods
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Geographic Information Systems
8.Biomass structure analysis of Atractylodes lancea in different ecological environments.
Yu-Zhang SUN ; Lan-Ping GUO ; Xiao-Qiong YANG ; Lu-Qi HUANG ; Wen-Quan ZHU ; Yao-Zhong PAN
China Journal of Chinese Materia Medica 2008;33(13):1516-1518
OBJECTIVETo study the ecological environments of Atractylodes lancea by biomass structural analysis.
METHODThrough the scientific investigation in Maoshan, the sampling spots were set up, the relation between growth and ecological environments was researched and the ecological environments of A. lancea were divided as following: the vegetation layer, the shrub layer, the shrub-weed layer and the weed layer. The ramet biomass, height, leaves and coverage of A. lancea were studied.
RESULTThe several factors (ramet biomass, height, leaves and coverage) showed the regular change. Among maximum, minimum and average, the shrub layer was the biggest, the shrub and weed layer was the second biggest and the vegetation layer and the weed layer was the least.
CONCLUSIONA. lancea tends to distribute in the shrub layer and the shrub-weed layer.
Atractylodes ; anatomy & histology ; growth & development ; Biomass ; Drugs, Chinese Herbal ; Ecosystem ; Plant Structures ; anatomy & histology ; growth & development
9.Change of microbial community in rhizoma sphere of cultivated Atractylodes lancea.
Lan-ping GUO ; Lu-qi HUANG ; You-xu JIANG ; Mei-lan CHEN ; Dong-mei LV ; Yan ZENG
China Journal of Chinese Materia Medica 2007;32(12):1131-1133
OBJECTIVETo find the development rules of microbial community in rhizoma sphere of the cultivated Atractylodes lancea.
METHODTotal bacteria, fungi and actinomyces were counted by CFU x g(-1) though dilution plate method. And genomic DNA of microbes were extracted and amplified by primers of E. coli's 27f and 1492r to get the 16S rDNA, then the restriction endonuclease Hinf was used to digest the 16S rDNA.
RESULTTotal bacteria, fungi and actinomyces in 2-year old soil were lower than in 1-year old soil, they decreased 46. 14%, 49. 25%, 31.88% respectively and made the ratio of themselves changed. At the same time, all the 8 soil samples got fine 16S rDNA bands, which were about 1500 bp. And the main bands of most of the samples were found at 1000 bp, but the weak bands of each were different although most bands in the same year samples were more similar than in different year ones.
CONCLUSIONIt is indicated that the change of soil microbial community may has some relation to the continous cropping barrier of A. lancea.
Actinomyces ; genetics ; isolation & purification ; Atractylodes ; growth & development ; Bacteria ; genetics ; isolation & purification ; Biodiversity ; Colony Count, Microbial ; DNA, Ribosomal ; genetics ; Fungi ; genetics ; isolation & purification ; Plants, Medicinal ; growth & development ; RNA, Ribosomal, 16S ; genetics ; Rhizome ; growth & development ; Soil Microbiology
10.Key influencing factors on essential oil components of Atractylodes lancea and study on its division of climate adaptability.
Lan-Ping GUO ; Lu-Qi HUANG ; You-Xu JIANG ; Xu-Long LIU ; Yao-Zhong PAN ; Dong-Mei LU ; Qing ZHANG
China Journal of Chinese Materia Medica 2007;32(10):888-893
OBJECTIVETo find the key factors that influence the content of the essential oil components of Atractylodes lancea and classify the habitat of A. lancea based the essential oil components, as well as explore a new method to conduct division of Chinese natural medicin through geographic information system (GIS) ultimately.
METHODThe key factors were obtained by canonical correlation and stepwise regressive analysis. Then the interpolation of climatic data for 30 years (1971-2000) was done by Sufer 7.0, and the habitat division was done by ARCGIS 9. 0.
RESULTThere were 6 correlation models between climate factors and 6 main essential oil componets were obtained, and a division map about essential oil components content of A. lancea base on clamate adaptability were drawn. It was found that the climate condition in Octobers played a key role on forming the essential oil components and the interaction of tempreture and precipitation was the most important factor on forming the essential oil components of A. lancea.
CONCLUSIONThe adaptive habitat for forming the essential oil components of A. lancea was different from growing A. lancea ones. And GIS can be used perspective for division of Chinese natural medicine.
Atractylodes ; chemistry ; growth & development ; radiation effects ; China ; Climate ; Ecosystem ; Geography ; Oils, Volatile ; analysis ; Plants, Medicinal ; chemistry ; growth & development ; radiation effects ; Rain ; Sunlight ; Temperature

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