Study of variation in the growth, photosynthesis, and content of secondary metabolites in Eucommia triploids
Author:
Funder
Beijing Municipal Natural Science Foundation
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Ecology,Physiology,Forestry
Link
http://link.springer.com/content/pdf/10.1007/s00468-019-01818-5.pdf
Reference56 articles.
1. Allario T, Brumos J, Colmeneroflores JM, Tadeo F, Froelicher Y, Talon M, Navarro L, Ollitrault P, Morillon R (2011) Large changes in anatomy and physiology between diploid Rangpur lime (Citrus limonia) and its autotetraploid are not associated with large changes in leaf gene expression. J Exp Bot 62(8):2507
2. Austin RB, Morgan CL, Ford MA, Bhagwat SG (1982) Flag leaf photosynthesis of Triticum aestivum and related diploid and tetraploid species. Ann Bot 49(2):177–189
3. Bamba T, Fukusaki E, Nakazawa Y, Kobayashi A (2002) In-situ chemical analyses of trans-polyisoprene by histochemical staining and Fourier transform infrared microspectroscopy in a rubber-producing plant Eucommia ulmoides Oliver. Planta 215(6):934–939
4. Bierhuizen JF, Slatyer RO (1965) Effect of atmospheric concentration of water vapour and CO2 in determining transpiration-photosynthesis relationships of cotton leaves. Agr Meteorol 2(4):259–270
5. Bingham ET (1980) Maximizing heterozygosity in autopolyploids. Basic Life Sci 13:471–489
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