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173. Paez-Espino, D., Chen, I.A., Palaniappan, K., et al.: IMG/VR: a database of cultured and
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174. Paez-Espino, D., Eloe-Fadrosh, E.A., Pavlopoulos, G.A., Thomas, A.D., Huntemann, M.,
Mikhailova, N., Rubin, E., Ivanova, N.N., Kyrpides, N.C.: Uncovering Earth’s virome Nature
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175. Palatinszky, M., Herbold, C., Jehmlich, N., Pogoda, M., Han, P., von Bergen, M., Lagkouvardos, I., Karst, S.M., Galushko, A., Koch, H., Berry, D., Daims, H., Wagner, M.: Cyanate
as an energy source for nitrifiers. Nature 524, 105–108 (2015). https://doi.org/10.1038/nature
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176. Parker, M.T.: An ecological framework of the human virome provides classification of current
knowledge and identifies areas of forthcoming discovery. Yale J. Biol. Med. 89, 339–351
PMC5045143 (2016)
177. Parton, W.J., Scurlock, J.M.O., Ojima, D.S., Schimel, D.S., Hall, D.O., Scopegram Group
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Global Change Biol. 1, 13–22 (1995). https://doi.org/10.1111/j.1365-2486.1995.tb00002.x
178. Parvathi, A., Jasna, V., Aparna, S., Ram, A.S.P., Aswathy, V.K., Balachandran, K.K.,
Muraleedharan, K.R., Mathew, D., Sime-Ngando, T.: High incidence of lysogeny in the
oxygen minimum zones of the Arabian Sea (Southwest Coast of India). Viruses 10, 588
(2018). https://doi.org/10.3390/v10110588
55
161. Millen, S., Gross, C., Donhauser, N., Mann, M.C., Péloponèse, Jr., J.-M., Thoma-Kress, A.K.:
Collagen IV (COL4A1, COL4A2), a component of the viral biofilm, is induced by the HTLV1 Oncoprotein Tax and impacts virus transmission. Front. Microbiol. 23 (2019). https://doi.
org/10.3389/fmicb.2019.02439
162. Mosier, A., Parkin, T.: Gaseous emissions (CO 2 , CH 4 , N 2 O and NO) from diverse agricultural
soils. In: Benckiser, G., Schnell, S. (eds.) Biodiversity in Agricultural Production Systems,
pp. 317–348. Taylor and Francis, Boca Raton pp (2007)
163. Mougari, S., Bekliz, M., Abrahao, J., et al.: Guarani Virophage, a new sputnik-like isolate
from a Brazilian lake. Front. Microbiol. (2019). https://doi.org/10.3389/fmicb.2019.01003
164. Mundepi, A., Cabrera, M., Norton, J., Habteselassie, M.: Ammonia oxidizers as biological
health indicators of elevated Zn and Cu in poultry litter amended soil. Water Air Soil Pollut.
230, 239 (2019). https://doi.org/10.1007/s11270-019-4283-x
165. Nacry, P., Bouguyon, E., Gojon, A.: Nitrogen acquisition by roots: physiological and developmental mechanisms ensuring plant adaptation to a fluctuating resource. Plant Soil 370, 1–29
(2013). https://doi.org/10.1007/s11104-013-1645-9
166. Nakatsukasa-Akune, M., Yamashita, K., Shimoda, Y., et al.: Suppression of root nodule formation by artificial expression of the TrEnodDR1 (coat protein of White clover cryptic virus 1)
gene in Lotus japonicus. Mol. Plant Microbe Interact. 18, 1069–1080 (2005). https://doi.org/
10.1094/mpmi-18-1069
167. Naumov, A.: New relationship in carbon cycle. Low Carbon Econ. 3, 111–114 (2012). https://
doi.org/10.4236/lce.2012.323015
168. Newbold, C.J., de la Fuente, G., Belanche, A., Ramos-Morales, E., McEwan, N.R.: The role
of ciliate protozoa in the rumen. Front Microbiol. 6, 1313 (2015). https://doi.org/10.3389/
fmicb.2015.01313
169. Ni, T., Zeng, Q.: Diel Infection of Cyanobacteria by Cyanophages. Front. Mar. Sci. 2, 123
(2016). https://doi.org/10.3389/fmars.2015.0012311
170. Opitz v. Boberfeld, W. Grünlandlehre - biologische und ökologische Grundlagen, Ulmer,
Germany (1994)
171. Osiander, C.N., Tafel, G.L.F., Schwab, G. (Hrsg.): First edition of Xenophon’s von Athen
Werke, Band 40, Von der Haushaltskunst und Hiero oder Herrscherleben. Publisher Metzler
JB, Stuttgart, – In: Griechische Prosaiker in neuen Uebersetzungen (1831). https://www.boo
klooker.de›Bücher›Angebote›titel=Griechische+Prosai
172. De Paepe, M., Taddei, F.: Viruses’ life history: towards a mechanistic basis of a trade-off
between survival and reproduction among phages. PLoS Biol. 4, e273 (2006). https://doi.org/
10.1371/journal.pbio.0040193
173. Paez-Espino, D., Chen, I.A., Palaniappan, K., et al.: IMG/VR: a database of cultured and
uncultured DNA viruses and retroviruses. Nucl. Acids Res. 45, D457–D465 (2017). https://
doi.org/10.1093/nar/gkw1030
174. Paez-Espino, D., Eloe-Fadrosh, E.A., Pavlopoulos, G.A., Thomas, A.D., Huntemann, M.,
Mikhailova, N., Rubin, E., Ivanova, N.N., Kyrpides, N.C.: Uncovering Earth’s virome Nature
536, 425–430 (2016). https://doi.org/10.1038/nature19094
175. Palatinszky, M., Herbold, C., Jehmlich, N., Pogoda, M., Han, P., von Bergen, M., Lagkouvardos, I., Karst, S.M., Galushko, A., Koch, H., Berry, D., Daims, H., Wagner, M.: Cyanate
as an energy source for nitrifiers. Nature 524, 105–108 (2015). https://doi.org/10.1038/nature
14856
176. Parker, M.T.: An ecological framework of the human virome provides classification of current
knowledge and identifies areas of forthcoming discovery. Yale J. Biol. Med. 89, 339–351
PMC5045143 (2016)
177. Parton, W.J., Scurlock, J.M.O., Ojima, D.S., Schimel, D.S., Hall, D.O., Scopegram Group
Members: impact of climate change on grassland production and soil carbon worldwide.
Global Change Biol. 1, 13–22 (1995). https://doi.org/10.1111/j.1365-2486.1995.tb00002.x
178. Parvathi, A., Jasna, V., Aparna, S., Ram, A.S.P., Aswathy, V.K., Balachandran, K.K.,
Muraleedharan, K.R., Mathew, D., Sime-Ngando, T.: High incidence of lysogeny in the
oxygen minimum zones of the Arabian Sea (Southwest Coast of India). Viruses 10, 588
(2018). https://doi.org/10.3390/v10110588
