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Falsehood!!!

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Sometimes bodies say this because it seems reasonable to them … what, with activity basal so continued ago and so abundant geological mushing-around accident back then. But sometimes bodies say this, and complete absolutely innocent adage it, because they appetite to bandy the boilerplate being off clue and accomplish them anticipate that Evolutionary Analysis has this big gap — at the alpha — in which any-old affectionate of adventure can fit, including a abnormal or religious story, or alike aloof a airy Jungian story, or annihilation but a adventure about molecules interacting.

So, the purpose of this blog column is to be handy, to point to, to aftermath a articulation to, in acknowledgment to that question. Every time somebody says “We can apperceive annihilation about the agent of activity bla bla bla” you acknowledge with a articulation to this post. In the meantime, if you anticipate there is article missing in this column that should be conveyed to anyone authoritative that argument, amuse add it to the comments.

Here’s the cipher to archetype and accomplished to articulation to this post:

<a href=”http://scienceblogs.com/gregladen/2011/07/we_can_know_nothing_about_the.php”>”We can apperceive annihilation about the agent of life”</a>

Below are two lists. The aboriginal account is a set of blog posts by a array of science bloggers about the agent of life. The additional account is the bibliography my accession of Mendeley (reference administration software) discharge out at me back I asked it to acquisition all the references to “Origin of Life” on my adamantine drive or adjacent localities. This includes alone a subset (about 5%) of my PDF files and none of my cardboard files (of which there are about 5,000) of which, in turn, apparently alone 1 or 2% abode this issue, as it is not my field.

So, the advertence account is conditional and aloof to get your stared, but additionally serves the purpose of demonstrating how there is absolutely a bit of assignment on the topic.

At present, we apperceive article about the agent of life. I anticipate we could apperceive a lot more, and I anticipate we will eventually. The affirmation that we can’t because it isn’t accident now and happened a continued time ago is amiss for several reasons: 1) Are you abiding it is not accident now?; 2) It could be replicated in the lab; 3) It ability be accident about else, or affirmation of it could be begin on addition angelic object; and 4) Yes, indeed, it turns out that we absolutely can reconstruct things through inference from age-old data, modeling, and agreement that happened in the past, and do so scientifically. If you apprehend addition cogent you that you can’t, that this is not science, that it violates the accurate method, again you are audition the words of a being who either knows annihilation about science or is cogent you a lie, because science can and does abode the past.

So, afterwards added ado, the lists:

A sampling of blog posts on the agent of life:

Is the agent of activity altered from evolution?Super-Hero Agreement #1: The Agent of LifeThe Agent of Activity and of the AtmosphereOrigins of Activity – Amino Acids and the Triplet CodonOrigin of Activity – RNA Self ReplicatorsNew place, new view, apathetic reactions and the origins of lifeNASA’s new organism, the acceptation of life, and Darwin’s Additional TheoryArsenic and Old LaceCommon ancestor of activity – Q.E.D?Report from Alife XII: life’s origin, and its evolutionThe agent of activity cannot escape basal amoebic chemistryThe Agent of Activity on Earth: New ResearchOrigin of Activity (mica)Amino acerbic crystallisation and the agent of lifeThe Agent of Life: RNA?Why are all alluvial lifeforms lefties?A Simple Affectionate of LifeLife, The Universe, and Everything Else…Avalon and the agent of multicellular lifeThe Agent of Activity on Earth: New Research

A sampling of mainly associate advised analysis and science beat annotation accompanying to the agent of life:

Albarède, F. (2009). Volatile accession history of the earthbound planets and activating implications. Nature, 461(7268), 1227-33. Macmillan Publishers Limited. All rights reserved. doi:10.1038/nature08477

Andersson, R. E. (1980). Microbial lipolysis at low temperatures. Applied and Environmental Microbiology, 39(1), 36-40. Retrieved from http://www.ncbi.nlm.nih.gov/pubmed/6766702

Anon. (2009). Darwin and microbiology. Nature reviews. Microbiology, 7(8), 546. Nature Publishing Group. doi:10.1038/nrmicro2197

Anon. (2010a). Napthalene, amplitude & life. Nature India. Nature Publishing Group. doi:10.1038/nindia.2010.38

Anon. (2010b). Hydrothermal Vents ▪ Ocean Policy ▪ Age-old Greeks. Accurate American, 302(4), 8-10. Accurate American, Inc. doi:10.1038/scientificamerican0410-8

Anon. (2010c). Probing the agent of life. Nature India. Nature Publishing Group. doi:10.1038/nindia.2010.132

Ater, J., Wochner, A., Pinheiro, V. B., Coulson, A., & Holliger, P. (2010). Ice as a protocellular average for RNA replication. Nature communications, 1, 76. Nature Publishing Group, a analysis of Macmillan Publishers Limited. All Rights Reserved. doi:10.1038/ncomms1076

Baele, J.-M., Bouvain, F., De Jong, J., Matielli, N., Papier, S., & Preat, A. (2008). Adamant microbial mats in avant-garde and phanerozoic environments. Proceedings of SPIE, 7097, 70970N-70970N-12. Spie. doi:10.1117/12.801597

Bakermans, C. (2008). Limits for microbial activity at subzero temperatures. Psychrophiles from biodiversity to biotechnology, 17-28. Springer. Retrieved from http://www.springerlink.com/index/p121287548h670j7.pdf

Ball, P. (2010). Some like it hot. Nature. Nature Publishing Group. doi:10.1038/news.2010.590

Barricelli, N. A. (1963). Numerical testing of change theories. Part II. Preliminary tests of performance, symbiogenesis and earthbound life. Acta Biotheoretica, (16), 99 – 126. Retrieved from http://en.wikipedia.org/wiki/Genetic_algorithm

Bedau, M., Church, G., Rasmussen, S., Caplan, A., Benner, S., Fussenegger, M., Collins, J., et al. (2010). Activity afterwards the constructed cell. Nature, 465(7297), 422-4. Nature Publishing Group. doi:10.1038/465422a

Beer, D. D., & Kühl, M. (2001). INTERFACIAL MICROBIAL MATS AND BIOFILMS. Biofilms (pp. 374-394).

Bergman, J. (2000). Why abiogenesis is impossible. Creation Analysis Society Quarterly, 36(4).

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Biello, D., & Harmon, K. (2010). Tools for Life. Accurate American, 303(2), 17-18. Accurate American, Inc. doi:10.1038/scientificamerican0810-17

Bigot, Y., Samain, S., Augé-Gouillou, C., & Federici, B. A. (2008). Atomic affirmation for the change of ichnoviruses from ascoviruses by symbiogenesis. BMC Evolutionary Biology, 8, 253. BioMed Central. Retrieved from http://www.pubmedcentral.nih.gov/articlerender.fcgi?artid=2567993&tool=pmcentrez&rendertype=abstract

Blaney, D. L. (2002). Using Mars’s Sulfur Aeon to Constrain the Duration and Timing of Fluvial Processes, 12p.

Bottrell, S. H., & Raiswell, R. (2000). Sulfur isotopes and microbial sulfur cycling in sediments. In R. E. Riding & S. M. Awramik (Eds.), Microbial Sediments (pp. 96-104). Springer-Verlag.

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Bradley, A. S. (2009). Expanding the Limits of Life. Accurate American, 301(6), 62-67. Accurate American, Inc. doi:10.1038/scientificamerican1209-62

Caracciolo, A. B., Giuliano, G., Di Corcia, A., Crescenzi, C., & Silvestri, C. (2001). Microbial abasement of terbuthylazine in apparent clay and alluvium at two altered temperatures. Bulletin of Environmental Contamination and Toxicology, 67(6), 815-820.

Carrapiço, F., & Rodrigues, T. (2005). Symbiogenesis and the aboriginal change of life. Proc of SPIE, 5906, 242-245.

Castenholz, R. W. (2009). Mats, Microbial. (J. Seckbach & A. Oren, Eds.)Environmental Microbiology and Ecology, 14, 278-292. Springer Netherlands. doi:10.1007/978-90-481-3799-2

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Chpt Aravena, R., & Mayer, B. (2010). Isotopes and Processes in the Nitrogen and Sulfur Cycles. Control, 203-246.

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Deck, C., Jauker, M., & Richert, C. (2011). Efficient enzyme-free artful of all four nucleobases templated by anchored RNA. Nature Chemistry, 3(8), 603-608. Nature Publishing Group. doi:10.1038/nchem.1086

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Dewitt, D. A. (2000). Theories of the Agent and Aboriginal Change of Life. National Geographic.

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Dunker, A. K., & Kriwacki, R. W. (2011). The Orderly Chaos of Proteins. Accurate American, 304(4), 68-73. Accurate American, Inc. doi:10.1038/scientificamerican0411-68

Dupraz, C., Reid, R. P., Braissant, O., Decho, A. W., Norman, R. S., & Visscher, P. T. (2009). Processes of carbonate precipitation in avant-garde microbial mats. Earth-Science Reviews, 96(3), 141-162. Elsevier B.V. doi:10.1016/j.earscirev.2008.10.005

Eisenreich, W., Dandekar, T., Heesemann, J., & Goebel, W. (2010). Carbon metaism of intracellular bacterial bacilli and accessible links to virulence. Nature reviews. Microbiology, 8(6), 401-12. Nature Publishing Group. doi:10.1038/nrmicro2351

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Goldman, N., Reed, E. J., Fried, L. E., William Kuo, I.-F., & Maiti, A. (2010). Amalgam of glycine-containing complexes in impacts of comets on aboriginal Earth. Nature chemistry, 2(11), 949-54. Nature Publishing Group. doi:10.1038/nchem.827

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