1.Isolation and identification of phosphate solubilizing bacteria from indigenous microorganisms (IMO) of cow rumen in East Java, Indonesia as eco-friendly biofertilizer
Meli Astriani ; Siti Zubaidah ; Abdul Latief Abadi ; Endang Suarsini
Malaysian Journal of Microbiology 2020;16(4):253-262
Aims:
Phosphate is an essential nutrient required for plant growth, but its solubility in the soil is relatively low (0.1%).
Microbes can dissolve phosphate to meet crop requirements. This study aimed to isolate phosphate solubilizing bacteria
from indigenous microorganisms (IMO) of cow rumen.
Methodology and results:
The selection of isolates on a Pikovskaya medium was using a clear zone index and a
spectrophotometer for phosphate solubilization measurements. Hypersensitivity was tested on tobacco leaves and
tested antagonists within isolates. The results found that four selected isolates had the highest phosphate dissolving
potential, namely, MTA1, SMAD1, SMAD2, and SMAD3. The culture of selected isolates on plate media showed that the
morphological characters of the four colonies are the same. They had round form (circular), the edge of the colony were
smooth, flat elevation, white and cream color. Isolate MTA1 had the highest phosphate solubilizing activity compared to
the others. The isolate that showed the highest phosphate solubilizing activity were identified based on 16S rRNA gene.
The result of molecular identification showed that strain MTA1 was closely related to Lactobacillus plantarum with a
similarity level of 99%. L. plantarum performed the highest ability to form a clear zone (7.66 mm). The highest
concentration of soluble phosphate was observed on day 5 (278.42 mg/L).
Conclusion, significance, and impact of the study
Lactobacillus plantarum which was isolated from the IMO of cow
rumen in East Java, Indonesia was identified as one of the phosphate solubilizing bacteria that are useful for the
development of eco-friendly biofertilizer. The application of phosphate solubilizing microbes can be used to increase the
soil fertility.
Fertilizers--microbiology
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Indonesia (East Java)
2.Content characteristics of mineral elements and its correlation with soil nutrients and effective components in Chrysanthemum morifolium from different producing areas in Macheng.
Yin LIU ; Meng DAI ; Wu-Zhou BAO ; Bi-Sheng HUANG ; Lan-Ping GUO ; Da-Hui LIU
China Journal of Chinese Materia Medica 2021;46(2):281-289
In this study, 24 copies of samples of Chrysanthemum morifolium and soil from two main production towns in Macheng city were collected, and the contents of 13 mineral elements, 5 effective components and 14 soil nutrient factors in Ch. morifolium were determined. The enrichment characteristics of available soil nutrients by mineral elements were analyzed and the dominant factors affecting the effective components of Ch. morifolium were screened. The results showed that the content of mineral elements and soil nutrients and effective components are very different, and variation of soil fertility was much greater than that of inorganic elements in chrysanthemum plants. In general, the level of element content in Ch. morifolium from different producing areas is K>N>P>Mg>Ca>Fe>Mn>Zn>Cu>Ni>Cr>Pb>Cd. The content of K, N and Mg is higher than that of common crops, and the content of Cu, Cd and Pb in Ch. morifolium from various producing areas does not exceed the relevant standards. The N, P and K enrichment capacity in soil was stronger than that of other elements, and the Ca enrichment ability was the worst. The content of AvCu in the soil was positively correlated with the contents of N, Mg, K, Fe and Cu elements in Ch. morifolium. The contents of chlorogenic acid, luteolin, 3,5-O-dicaffeoylquinic acid reached the pharmacopoeia standard. The percentage of chlorogenic acid and 3,5-O-dicaffeoylquinic acid in Ch. morifolium that from Huangtugang town in the active components were generally higher than that from Futianhe town, and the diffe-rences of luteolin contents in the two producing areas were relatively small. The correlation and regression analysis showed that the contents of Cu, Zn and Cr in Ch. morifolium were positively correlated with the active components, while the contents of Fe, Mn and Ni were negatively correlated with the contents of AvP, AvK, TK, AvMn and AvCu in soil. In general, Zn and Ca fertilizer should be added to the ecological planting of Ch. morifolium, K fertilizer should be added, and N and P fertilizer should be applied appropriately.
Chrysanthemum
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Fertilizers
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Minerals
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Nutrients
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Soil
3.Effect of the solutions in changing technology on reducting waste gases pollution in the Ha Bac Company for introgenous fertilizers and chemicals
Journal of Practical Medicine 2005;0(12):27-29
A study of intervention solutions for the exhaust from 4 thermo-electrical kilns, from synthetic process of in NH3 and dust due to NPK fertilizer production was carried out to evaluate the efficacy of technological improvement solutions in reducing environment pollution. Results: concentration of dust and toxic fumes was reduced, concentration of the exhaust components eliminated to environment through the chimneys of gases-made kilns reduced significantly after changing technology. NH3, CH4, H2 from producing NH3 decreased clearly, dust from producing NPK reduced 1.63-1.92 times
Environmental Pollution
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Gases
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Waste Products
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Fertilizers
4.Effect of environmental factors on growth of Huperzia serrata.
Zhi-an WANG ; Jian-zhong XU ; Xue-ping YU ; Shu-jun SHEN
China Journal of Chinese Materia Medica 2008;33(15):1814-1816
OBJECTIVETo establish and optimize the cultivation systems for wild Huperzia serrata, through assessing the effects of environmental factors on its growth.
METHODH. serrata was planted under natural field condition, the growth status of H. serrata under different light intensities, temperatures, relative humidity (R. H.), fertilizer levels, and so on were investigated and analyzed.
RESULTH. serrata grew nicely under following environmental conditions: temperature ranging from 18.9-26.3 degrees C, R. H. ranging from 81%-90% and 1330-3000 lx light intensity. A cultivation system, in which H. serrata was planted in the bamboo forest and did not occupy the arable land, was established through the study.
CONCLUSIONConcluded that light intensity and R. H are the two factors which greatly confine the growth of H. serrata. As long as the levels of the above two factors meets the demands, H. serrata could be cultivated.
Fertilizers ; Humidity ; Huperzia ; growth & development ; Light ; Temperature
5.Effects of slow release-fertilizers on yield, nutrient contents and quality of Coptis chinensis.
Shi-Jiang CHEN ; De-Li ZHANG ; Guo-Yue ZHONG ; Ying-Fan CAI
China Journal of Chinese Materia Medica 2008;33(20):2313-2316
OBJECTIVETo study the effects of four kind of slow-release fertilizers on yield and quality of Coptis chinensis.
METHODOne to three years C. chinensis was fertilized with slow-release fertilizers twice in April and in September. The yield and nutrient content along with quality of C. chinensis were measured after two years growth.
RESULT AND CONCLUSIONAll of the slow-release fertilizers increased the yield obviously, and the effect of SRF1 and SRF4 is the most significant. Comparing with control group, the N content in aerial part of 1-2 year-old C. chinensis treated with SRF1 and SRF4 was lower and P and K were higher than that of control group, and the N content in aerial part of 3 year-old C. chinensis treated with SRF1 and SRF4 was higher and P and K were higher than that of control group; The N content in the root of land 3 year-old C. chinensis treated with SRF1 and SRF4 showed no significant difference comparing with control group, and P and K were lower than that of control group, the N and P content in root of 2 year-old C. chinensis treated with SRF1 and SRF4 was higher and K were lower than that of control group. After two years growth berberine content of C. chinensis treated with SRF1, SRF2 and SRF3 were significantly increased, and total alkaloid content of C. chinensis treated with SRF1, SRF3 and SRF4 were significantly increased. We recommend that SRF4 is used as the special fertilizer for 1-year-old C. chinensis, and the SRF1 and SRF4 for 2-year-old C. chinensis, and the SRF1 for 3-year-old C. chinensis.
Coptis ; growth & development ; Fertilizers ; Time Factors
6.Present situation and prospects of special fertilizer for traditional Chinese medicine herbs.
Zhang YAN ; Yong LIU ; Ji-Yong WANG ; Wen-Quan WANG
China Journal of Chinese Materia Medica 2004;29(8):719-722
OBJECTIVETo find out the present situation and the development trend special fertilizer of the traditional Chinese medicina plants.
METHODBy consulting a great deal of literatures on special fertilizer and fertilization on traditional Chinese medicine herbs, and based on the scientific research and manufacture experience of the author, and the theoretic actuality of the researches on the fertilization of traditional Chinese medicine herbs, the present study of the special fertilizer inside and outside of our country was analyzed.
CONCLUSIONThe view points of developing special fertilizer for Chinese traditional medicine were put forward, and the development trend of special fertilizer for traditional Chinese medicine herbs was forecasted.
Ecosystem ; Fertilizers ; Plants, Medicinal ; growth & development
7.Preliminary investigation on arbuscular mycorrhiza fungi of cultivated Panax quinquefolium roots.
Zhi-Fang RAN ; Xiao-Tong YANG ; Wei-Na DING ; Jie ZHOU ; Lan-Ping GUO ; Yong-Qing ZHANG
China Journal of Chinese Materia Medica 2020;45(9):2050-2056
In this study, the infection of root arbuscular mycorrhizal fungi(arbuscular mycorrhizal fungi, AMF of Panax quinquefolium in Shandong province was investigated, and the distribution characteristics and infection regularity of AMF were found out. The AMF of P. quinquefolium roots in different habitats was examined by alkali dissociation-trypickin blue staining method to study the infection rate and infection intensity. The contents of ginsenoside(Rb_1, Re, Rg_1, Rb_2, Rd and Rh_1) in the roots of P. quinquefolium was determined by HPLC. The experimental data were SPSS 17.0 statistical software for One-way analysis of variance, cluster analysis and correlation analysis. The results showed that the AMF infection in roots of P. quinquefolium, and there were obvious structures such as hyphae, arbuscular branches and vesicles, and the AMF infection rate and infection intensity showed obvious spatial and temporal heterogeneity with the growth age and origin of P. quinquefolium. The infection rate of AMF in roots of P. quinquefolium from 1 to 3 years increased significantly with the increase of growth years(P<0.05). The infection intensity and infection rate of P. quinquefolium showed a similar change trend, the AMF infection rate and infection intensity reached the highest level in the third year. Cluster analysis showed that the infection rates of roots of P. quinquefolium in similar geographical locations could be clustered together. Correlation analysis showed that the AMF infection rate of P. quinquefolium root was significantly positively correlated with the infection intensity, and the AMF infection rate and infection intensity were significantly positively correlated with the contents of ginsenoside Rg_1, Re and Rb_1. This study explored the distribution characteristics and regularity of AMF in roots of P. quinquefolium under the protected cultivation conditions, and provided basic data for ecological cultivation of P. quinquefolium and research and development of biological bacterial fertilizer.
Fertilizers
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Fungi
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Ginsenosides
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Mycorrhizae
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Panax
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Plant Roots
8.Effects and mechanisms of nitrogen fertilizers on soil and tritrophic interactions in Chinese medicinal plants ecosystem.
Yang GE ; Xiu-Fu WAN ; Sheng WANG ; Chuan-Zhi KANG ; Wen-Jin ZHANG ; Chao-Geng LYU ; Jia-Hui SUN ; Lan-Ping GUO
China Journal of Chinese Materia Medica 2021;46(8):1893-1900
Nitrogen is one of the most frequently used fertilizers in growth of Chinese medicinal plants(CMP). As in many other ecosystems, CMP ecosystem is also composed of plant-herbivore-natural enemy(tritrophic) interactions. Nitrogen fertilizer influences the growth and reproduction of CMP, and it is also able to heavily shape the ecosystem functions of CMP ecosystem through bottom-up forces. Understanding the specific effects of nitrogen fertilizer towards each trophic level will be beneficial to improve the resistance of CMP to herbivore and enhance the control efficiency of nature enemies to herbivore, and eventually, maximize the yield and quality of CMP. Most papers published on nitrogen use in plants focused mainly on the impact of nitrogen fertilization on CMP yield and quality. Influences of nitrogen application on CMP ecosystem get little attention at present. Therefore, this review summed up the potential effects of nitrogen fertilization on CMP ecosystem from perspectives of soil and tritrophic interactions. First of all, nitrogen fertilizer might decrease soil microbial biomass and altered the community structures of soil bacteria, fungi and protozoa. Negative effects of nitrogen fertilizer were found on biodiversity of soil bacteria and protozoa. Different fungi species respond differently to nitrogen fertili-zers. Nitrogen deposition can also decrease the soil pH. Decreases in soil microbial diversity and soil acidification can cause negative effects on CMP growth. In addition, nitrogen fertilizer could regulate the pest resistance of CMP including constitutive and inducible resistance. Both positive and negative effects of nitrogen application were found on pest resistance of CMP. Moreover, the development and predation of natural enemies were influenced by nitrogen deposition. Nitrogen influences natural enemies in many ways including plant volatiles, plant nutrient and structure and the supplementary food quality. Nectar and honeydew of plants and preys serve as important food source for natural enemies especially in early season when preys are still not available. Finally, the interactions between herbivores and their natural enemies were also shaped by nitrogen fertilizer in many aspects like increasing the nutritional content of prey and changing control efficiency of natural enemies. Some herbivores have evolved a strategy to sequester secondary metabolites which they absorbed from plant during their feeding. Studies showed that sequestration efficiency of secondary metabolites in prey could also be regulated by nitrogen. Parasitic, emergence, reproduction rate and longevity of parasites were found positively correlated with nitrogen deposition. Hopefully this study will shed light on practicable and economical application of nitrogen in cultivation of CMP.
China
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Ecosystem
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Fertilizers
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Nitrogen
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Plants, Medicinal
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Soil
9.Effect of combined application of inorganic and organic fertilizers on growth and quality of Salvia miltiorrhiza.
Xiu-Fu WAN ; Sheng WANG ; Yan ZHANG ; Tie-Lin WANG ; Yang GE ; Su-Xia GAO ; Chuan-Zhi KANG ; Chao-Geng LYU ; Rui-Shan WANG ; Lan-Ping GUO
China Journal of Chinese Materia Medica 2021;46(8):1927-1934
The study is aimed through field experiments to study the effect of combined application of organic and chemical fertilizers on the growth and quality of Salvia miltiorrhiza, provide ideas for reducing fertilization while increasing the efficiency as well as improving the quality of produces. The experiment included 6 treatments viz., no fertilization(CK), full application of chemical fertilizer(F), 25% orga-nic fertilizer with 75% chemical fertilizer(M25), 50% organic fertilizer with 50% chemical fertilizer(M50), 75% organic fertilizer with 25% chemical fertilizer(M75), and fully apply organic fertilizer(M100). The results showed that:(1)from the perspective of yield and economic benefits, M75 was the best and M100 second;(2)for effective components, the combined application of organic and chemical fertilizers increased the content of main water-soluble components and the total content of effective components, among which M25 and M50 were better.
Agriculture
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Fertilizers/analysis*
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Nitrogen
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Salvia miltiorrhiza
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Soil
10.Effects of chemical fertilizer reduction and organic fertilizer substitution on yield and quality of Saposhnikovia divaricata.
Qi LI ; Shuai WANG ; Fang-Jun LIU ; Xiao-Cui JIANG ; Li-Min YANG ; Li YANG
China Journal of Chinese Materia Medica 2023;48(17):4647-4654
To explore the suitable fertilizing pattern for Saposhnikovia divaricata in the genuine producing area, a field trial was carried out to investigate the changes in the yield and quality of medicinal materials and soil in different fertilization patterns, such as organic fertilizer substitution(organic fertilizer+NPK fertilizer) and chemical fertilizer reduction(organic fertilizer+NPK fertilizer decrement and organic fertilizer+NPK fertilizer decrement+soil conditioner). The comprehensive analysis of all treatments was based on the medicine quality evaluation data set and soil quality evaluation data set, respectively, by CRITIC weight method. The results showed that(1) the yield of S. divaricate increased by 4.93%-12.67% under the organic fertilizer substitution mode, and the yield increased by 44.43% under the treatment of chemical fertilizer reduction YHT15, which was higher than that of the organic fertilizer substitution mode.(2) The quality of S. divaricate under the two fertilization modes was superior to the standard in the Chinese Pharmacopoeia, and the application of biochar was helpful to improve the quality of S. divaricate quality, with an increase of 82.83%-181.54%. CRITIC method analysis showed that fertilization treatments with high comprehensive scores were YHT15, YH30, and YH15.(3) Soil quality under the two fertilization modes was higher than that under the control. The fertilization treatments with higher comprehensive scores of soil quality were YHT15, YHT30, and YHT. The fertilization mode of adding biochar as soil conditioner, applying an appropriate amount of organic fertilizer, and reducing part of chemical fertilizer is the appropriate way to develop ecological plantation of S. divaricata in the Baicheng area in the western Jilin province. The specific fertilization mode is as follows. The basic fertilizer was 361 kg·hm~(-2) superphosphate+110 kg·hm~(-2) potassium sulfate+82 kg·hm~(-2) organic fertilizer+10 000 kg·hm~(-2) rice husk biochar, and urea was applied as top fertilizer three times, 29, 29, and 20 kg·hm~(-2), respectively.
Agriculture
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Fertilizers/analysis*
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Soil
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Apiaceae
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Nitrogen/analysis*