The influence of slope on Spartium junceum root system: morphological, anatomical and biomechanical adaptation
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science
Link
http://link.springer.com/article/10.1007/s10265-017-0919-3/fulltext.html
Reference55 articles.
1. Bengough AG, Bransby MF, Hans J, McKenna SJ, Roberts TJ, Valentine TA (2006) Root responses to soil physical conditions; growth dynamics from field to cell. J Exp Bot 57:437–447
2. Bengough AG, Mullins CE (1990) Mechanical impedance to root growth-a review of experimental techniques and root growth responses. J Soil Sci 41:341–358
3. Bécel C, Vercambre G, Pagès L (2012) Soil penetration resistance, a suitable soil property to account for variations in root elongation and branching. Plant Soil 353:169–180
4. Chiatante D, Tognetti R, Scippa GS, Congiu T, Baesso B, Terzaghi M, Montagnoli A (2015) Interspecific variation in functional traits of oak seedlings (Quercus ilex, Quercus trojana, Quercus virgiliana) grown under artificial drought and fire conditions. J Plant Res 128:595–611
5. Chiatante D, Sarnataro M, Fusco S, Di Iorio A, Scippa GS (2003) Modification of root morphological parameters and root architecture in seedlings of Fraxinus ornus L. and Spartium junceum L. growing on slopes. Plant Biosyst 137:47–56
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