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The New Phytologist
|
April 20, 2021
Inorganic carbon acquisition by aquatic photolithoatrophs of the Dighty Burn, Angus, U.K.: uses and limitations of natural abundance measurements of carbon isotopes
J A Raven, A M Johnston, J R Newman, et al.
Plant Physiology
|
January 12, 2001
Comparison of gas exchange and bioassay determinations of the ammonia compensation point in Luzula sylvatica (Huds.) Gaud
P W Hill, J A Raven, B Loubet, et al.
Astrobiology
|
January 31, 2012
Life and light: exotic photosynthesis in binary and multiple-star systems
J T O'Malley-James, J A Raven, C S Cockell, et al.
Oecologia
|
March 18, 2017
Inorganic carbon assimilation in the Isoetids, Isoetes lacustris L. and Lobelia dortmanna L
K Richardson, H Griffiths, M L Reed, et al.
The New Phytologist
|
April 17, 2021
Variations of the natural abundances of nitrogen and carbon isotopes in Triticum aestivum, with special reference to phloem and xylem exudates
T Yoneyama, L L Handley, C M Scrimgeour, et al.
FEBS Letters
|
November 30, 2000
Iron stress restricts photosynthetic intersystem electron transport in Synechococcus sp. PCC 7942
A G Ivanov, Y I Park, E Miskiewicz, et al.
Phytochemistry
|
September 15, 2001
Altritol synthesis by Notheia anomala
J A Raven, J Beardall, J A Chudek, et al.
Nature
|
May 3, 2001
Phosphorus limitation of nitrogen fixation by Trichodesmium in the central Atlantic Ocean
S A Sañudo-Wilhelmy, A B Kustka, C J Gobler, et al.
Proceedings. Biological Sciences
|
August 4, 2017
Oceanic protists with different forms of acquired phototrophy display contrasting biogeographies and abundance
S G Leles, A Mitra, K J Flynn, et al.
Annals of Botany
|
April 9, 2010
Stomatal vs. genome size in angiosperms: the somatic tail wagging the genomic dog?
J G Hodgson, M Sharafi, A Jalili, et al.
Page
of 5
Search research articles
Search
Showing results (31-40 of 41) with videos related to
Sort By:
Page
of 5
The New Phytologist
|
April 20, 2021
Inorganic carbon acquisition by aquatic photolithoatrophs of the Dighty Burn, Angus, U.K.: uses and limitations of natural abundance measurements of carbon isotopes
J A Raven, A M Johnston, J R Newman, et al.
Plant Physiology
|
January 12, 2001
Comparison of gas exchange and bioassay determinations of the ammonia compensation point in Luzula sylvatica (Huds.) Gaud
P W Hill, J A Raven, B Loubet, et al.
Astrobiology
|
January 31, 2012
Life and light: exotic photosynthesis in binary and multiple-star systems
J T O'Malley-James, J A Raven, C S Cockell, et al.
Oecologia
|
March 18, 2017
Inorganic carbon assimilation in the Isoetids, Isoetes lacustris L. and Lobelia dortmanna L
K Richardson, H Griffiths, M L Reed, et al.
The New Phytologist
|
April 17, 2021
Variations of the natural abundances of nitrogen and carbon isotopes in Triticum aestivum, with special reference to phloem and xylem exudates
T Yoneyama, L L Handley, C M Scrimgeour, et al.
FEBS Letters
|
November 30, 2000
Iron stress restricts photosynthetic intersystem electron transport in Synechococcus sp. PCC 7942
A G Ivanov, Y I Park, E Miskiewicz, et al.
Phytochemistry
|
September 15, 2001
Altritol synthesis by Notheia anomala
J A Raven, J Beardall, J A Chudek, et al.
Nature
|
May 3, 2001
Phosphorus limitation of nitrogen fixation by Trichodesmium in the central Atlantic Ocean
S A Sañudo-Wilhelmy, A B Kustka, C J Gobler, et al.
Proceedings. Biological Sciences
|
August 4, 2017
Oceanic protists with different forms of acquired phototrophy display contrasting biogeographies and abundance
S G Leles, A Mitra, K J Flynn, et al.
Annals of Botany
|
April 9, 2010
Stomatal vs. genome size in angiosperms: the somatic tail wagging the genomic dog?
J G Hodgson, M Sharafi, A Jalili, et al.
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of 5