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 1-20    21-28 
1.
Werger Marinus J.A. Optimization in canopy structure and leaf nitrogen distribution in herbaceuous plant communities // Dev. Ecol. Perspect. 21st Cent.. -Yokohama, 1990.-С.122

2.
Werger Marinus J.A. Light capture and plant architecture determine co-existence and competitive exclusion in grassland succession - and Grazing interferes in this process // Abh. Westfal. Mus. Naturk., 2008. Vol. 70, N 3-4.-С.471-488

3.
The excess light energy that is neither utilized in photosynthesis nor dissipated by photoprotective mechanisms determines the rate of photoinactivation in photosystem II // Plant and Cell Physiol., 2003. Vol. 44, N 3.-С.318-325

4.
Plant responses to elevated CO[2] concentration at different scales: Leaf, whole plant, canopy, and population // Ecol. Res., 2005. Vol. 20, N 3.-С.243-253

5.
Photosynthesis- nitrogen relationships in species at different altitudes on Mount Kinabalu, Malaysia // Ecol. Res., 2002. Vol. 17, N 3.-С.305-313

6.
Photosynthesis- nitrogen relationships in species at different altitudes on Mount Kinabalu, Malaysia // Ecol. Res., 2002. Vol. 17, N 3.-С.305-313

7.
Onoda Effect of elevated CO[2] levels on leaf starch, nitrogen and photosynthesis of plants growing at three natural CO[2] springs in Japan // Ecol. Res., 2007. Vol. 22, N 3.-С.475-484

8.
Onoda Does leaf photosynthesis adapt to CO[2]-enriched environments? An experiment on plants originating from three natural CO[2] springs // New Phytol., 2009. Vol. 182, N 3.-С.698-709

9.
Kinugasa Потребление энергии в ходе роста однолетнего растения // Nihon seitai gakkaishi, 2003. Vol. 53, N 1.-С.55-60

10.
Kinugasa Reproductive allocation of an annual, Xanthium canadense, at an elevated carbon dioxide concentration // Oecologia, 2003. Vol. 137, N 1.-С.1-9

11.
Kato Masaharu C. Photoprotection of photosynthesis of Chenopodium album leaves grown at different irradiance and nitrogen nutrition // Plant and Cell Physiol., 1999. Vol. 40, Suppl..-С.119

12.
Kato Masaharu C. Leaf discs floated on water are different from intact leaves in photosynthesis and photoinhibition // Photosynth. Res., 2002. Vol. 72, N 1.-С.65-70

13.
Kachi Optimal time of seedling emergence in a dune-population of Oenothera glazioviana // Ecol. Res., 1990. Vol. 5, N 1.-С.143-152

14.
Hirose Глобальные изменения [климата] и продуктивность растений // Nihon seitai gakkaishi, 1997. Vol. 47, N 3.-С.289-293

15.
Hirose Глобальные изменения [климата] и продуктивность растений // Nihon seitai gakkaishi, 1997. Vol. 47, N 3.-С.289-293

16.
Hirose Canopy structure and photon flux partitioning among species in a herbaceous plant community // Ecology, 1995. Vol. 76, N 2.-С.466-474

17.
Hirose Canopy development and leaf nitrogen distribution in a stand of Carex acutiformis // Ecology, 1989. Vol. 70, N 6.-С.1610-1618

18.
Hikosaka Photosynthetic rates and partitioning of absorbed light energy in photoinhibited leaves // Physiol. plant., 2004. Vol. 121, N 4.-С.699

19.
Hikosaka Light acquisition and use by individuals competing in a dense stand of an annual herb, Xanthium canadense // Oecologia, 1999. Vol. 118, N 3.-С.388-396

20.
Hikosaka Leaf and canopy photosynthesis of C[3] plants at elevated CO[2] in relation to optimal partitioning of nitrogen among photosynthetic components: Theoretical prediction // Ecol. Modell., 1998. Vol. 106, N 2-3.-С.247-259

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