Effects of humic acids on the growth of bacteria

Eurasian Soil Science - Tập 43 Số 3 - Trang 305-313 - 2010
В. В. Тихонов1, A. V. Yakushev1, Yu. A. Zavgorodnyaya1, Б. А. Бызов1, В. В. Демин1
1Moscow State University

Tóm tắt

Từ khóa


Tài liệu tham khảo

G. A. Batalkin, M. M. Koganov, and L. Yu. Makhno, “Permeability of Membranes for Some Humic Substances and Physiological Activity of Sodium Humate Preparations,” in Theory of the Physiologically Active Substances (Tr. Dnepropetrovsk. S-kh. Inst., 8, 117–121 (1983).

M. V. Biryukov, Extended Abstract of Candidate’s Dissertation in Biology (2006).

L. F. Bobyr’, Extended Abstract of Candidate’s Dissertation in Biology (Chisinau, 1984).

B. A. Byzov, T. Yu. Nechitailo, B. K. Bumazhkin, et al., “Cultivated Microorganisms from the Digestive System of Earthworms,” Mikrobiologiya 78(2), 1–10 (2009).

D. B. Vakhmistrov, O. A. Zverkova, E. Yu. Debets, and N. E. Mishustina, “Humic Acids: Relationship between Surface Activity and Stimulation Effect on Plant Growth,” Dokl. Akad. Nauk SSSR 293(5), 1277–1280 (1987).

A. I. Gorovaya, A. F. Kulik, and I. A. Oginova, “The Role of Physiologically Active Humic Preparations on Regulation of Cell-Cycle Processes,” in Regulation of Cell Cycle, I. N. Gudkov (Ed.) (Kiev, 1985) [in Russian].

V. V. Demin, V. A. Terent’ev, and Yu. A. Zavgorodnyaya, “Probable Mechanism of the Action of Humic Substances on Living Cells,” in Humic Substances in the Biosphere. Proc. II Intern. Conf. in Moscow, February 3–6, 2003 (Izd. Mosk. Gos. Univ., Moscow, 2004), pp. 37–41 [in Russian].

H. Determan, Gel Chromatography (Springer, New York, 1968).

I. D. Komissarov and L. F. Loginov, “Chemical Nature and Molecular Structure of Humic Acids,” in Chemistry of Humic Acids, Their Role in Nature, and Prospects of Their Use in Economy (Tyumen, 1981) [in Russian].

E. S. Kudrina, “Impact of Humic Acid on Some Groups of Soil Microorganisms and Its Role as the Source of Nutrients,” Tr. Pochv. Inst. im. V.V. Dokuchaeva, Vol. 38, pp. 185–254 (1951).

D. S. Orlov, “Properties and Functions of Humic Substances,” in Humic Substances in the Biosphere (Nauka, Moscow, 1993), pp. 16–27 [in Russian].

D. S. Orlov and L. A. Grishina, Practicum on Humus Chemistry (Izd. Mosk. Gos. Univ., Moscow, 1981) [in Russian].

I. V. Perminova, “Humic Substances: A Challenge for Chemists in the XXI Century,” Khimiya i Zhizn’, No. 1, 50–56 (2008).

J. S. Pert, Principles of Microbe and Cell Cultivation (Blackwell, Oxford, 1975).

A. I. Popov, Humic Substances: Properties, Structure, and Formation (Izd. S.-Peterb. Univ., St. Petersburg, 2004) [in Russian].

J. Rabek, Experimental Methods in Polymer Chemistry (Wiley, Chichester, 1980).

E. Z. Tepper, Nocardia Microorganisms and Humus Decomposition (Nauka, Moscow, 1976) [in Russian].

E. B. Tret’yakova, T. G. Dobrovol’skaya, B. A. Byzov, and D. G. Zvyagintsev, “Bacterial Communities Associated with Soil Invertebrates,” Mikrobiologiya 65(1), 102–110 (1996).

N. V. Khomyakov, S. A. Kharin, T. Yu. Nechitailo, et al., “Response of Soil Microorganisms to the Impact of Digesting Liquid of Earthworms,” Mikrobiologiya, No. 76, 45–54 (2007).

L. A. Khristeva, “The Role of Humic Substances in Nutrition of Higher Plants and Humic Fertilizers,” Tr. Pochv. Inst. im. V.V. Dokuchaeva, Vol. 38, pp. 108–184 (1951).

S. N. Chukov, Structural-Functional Parameters of Soil Organic Matter under Conditions of Anthropogenic Loads (Izd. S.-Peterb. Univ., St. Petersburg, 2001) [in Russian].

R. Ansorg and W. Rochus, “Studies on the Antimicrobial Effect of Natural and Synthetic Humic Acids,” Arzneimittel-Forschung/Drug Research 28(12), 2195–2199 (1978).

C. A. Edwards and K. E. Fletcher, “Interactions between Earthworms and Microorganisms in Organic Matter Breakdown,” Agric. Ecosys. Environ. 24(1–3), 235–247 (1988).

F. Fafa and A. Piccolo, “Effects of Humic Substances on the Bioavailability and Aerobic Biodegradation of Polychlorinated Biphenyls in a Model Soil,” Biotechnol. Bioeng. 77(2), 204–211 (2002).

Z. Filip and J. Berthelin, “Analytical Determination of the Microbial Utilization and Transformation of Humic Acids Extracted from Municipal Refuse,” Anal. Bioanal. Chem. 371(5), 675–681 (2001).

Z. Filip and J. Kubat, “Microbial Utilization and Transformation of Humic Substances Extracted from Soils of Long-Term Field Experiments,” Eur. J. Soil Biol. 37, 167–174 (2001).

M. Gryndler, H. Hršelová, et al., “Hyphal Growth and Mycorrhiza Formation by the Arbuscular Mycorrhizal Fungus Glomus claroideum BEG 23 Is Stimulated by Humic Substances,” Mycorrhiza 15(7), 483–488 (2005).

E. Loffredo, M. Berloco, F. Casulli, and N. Senesi, “In Vitro Assessment of the Inhibition of Humic Substances on the Growth of Two Strains of Fusarium oxysporum,” Biol. Fertil. Soils 43, 759–769 (2007).

J. Pascual, C. Garcia, T. Hernandez, et al., “Effectiveness of Municipal Waste Compost and Its Humic Fraction in Suppressing Pythium ultimum,” Microb. Ecol. 44(1), 59–68 (2002).

A. M. Semenov, “Physiological Bases of Oligotrophy of Microorganisms and Concept of Microbial Community,” Microb. Ecol. 22, 239–247 (1991).

C. Steinberg, S. Kamara, V. Y. Prokhotskaya, et al., “Dissolved Humic Substances-Ecological Driving Forces from the Individual to the Ecosystem Level,” Freshwater Biol. 51(7), 1189–1210 (2006).

D. Trigo and P. Lavelle, “Changes in Respiration Rate and Some Physicochemical Properties of Soil during Gut Transit through Allolobophora molleri (Lumbricidae, Oligochaeta),” Biol. Fertil. Soils 15(3), 185–188 (1993).

D. Vacca, W. Bleam, and W. Hikey, “Isolation of Soil Bacteria Adapted to Degrade Humic Acid-Sorbed Phenanthrene,” Appl. Environ. Microbiol. 71(7), 3797–3805 (2005).

G. Vallini, A. Pera, M. Agnolucci, and M. Valdrighi, “Humic Acids Stimulate Growth and Activity of in Vitro Tested Axenic Cultures of Soil Autotrophic Nitrifying Bacteria,” Biol. Fertil. Soils 24(3), 243–248 (1997).

Yu. A. Zavgorodnyaya, V. V. Demin, and A. V. Kurakov, “Biochemical Degradation of Soil Humic Acids and Fungal Melanins,” Organic Geochemistry 33, 347–355 (2002).