The response of Spartium junceum roots to slope: anchorage and gene factors.
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Bruno Lasserre | Antonino Di Iorio | Donato Chiatante | B. Lasserre | M. Di Michele | G. Scippa | D. Chiatante | A. Di Iorio | Michela Di Michele | Gabriella Stefania Scippa | Antonello Costa | Antonello Costa
[1] E. Jamet,et al. What do transgenic plants tell us about the regulation and function of cell-wall structural proteins like extensins? , 2000 .
[2] Ayelet Gilad,et al. The water- and salt-stress-regulated Asr1 (abscisic acid stress ripening) gene encodes a zinc-dependent DNA-binding protein. , 2004, The Biochemical journal.
[3] A. R. Ennos,et al. The Responses of Field-grown Sunflower and Maize to Mechanical Support , 1997 .
[4] A. R. Ennos,et al. A comparative study of the response of the roots and shoots of sunflower and maize to mechanical stimulation , 1996 .
[5] Jacobs,et al. The effect of wind sway on the form and development of Pinus radiata D. Don , 1954 .
[6] M. J. Jaffe,et al. Thigmomorphogenesis: the effect of mechanical perturbation on plants , 1993, Plant Growth Regulation.
[7] D. Pot,et al. Developing SSCP markers in two Pinus species , 2004, Molecular Breeding.
[8] F. Telewski,et al. Thigmomorphogenesis: a dose response to flexing in Ulmus americana seedlings. , 1998, Tree physiology.
[9] D. Pot,et al. Seasonal variation in transcript accumulation in wood-forming tissues of maritime pine (Pinus pinaster Ait.) with emphasis on a cell wall glycine-rich protein , 2003, Planta.
[10] C. Mitchell,et al. Calcium ion involvement in growth inhibition of mechanically stressed soybean (Glycine max) seedlings. , 1989, Physiologia plantarum.
[11] C. Lluch,et al. Effects of salt stress on growth, photosynthesis and nitrogen fixation in chick-pea (Cicer arietinum L.) , 1998 .
[12] T. Marler,et al. Root development of ‘Red Lady’ papaya plants grown on a hillside , 1997, Plant and Soil.
[13] Bruno Lasserre,et al. Root system architecture of Quercus pubescens trees growing on different sloping conditions. , 2005, Annals of botany.
[14] N. L. Biddington,et al. The effects of mechanically-induced stress in plants — a review , 1986, Plant Growth Regulation.
[15] Donald H. Gray,et al. Biotechnical and Soil Bioengineering Slope Stabilization: A Practical Guide for Erosion Control , 1996 .
[16] A. Iorio,et al. Root response to mechanical stress in plants growing on slopes: an experimental system for morphological, biochemical and molecular analysis , 2003 .
[17] A. Watson,et al. Tree species performance and slope stability. , 1995 .
[18] S. Fusco,et al. Modification of root morphological parameters and root architecture in seedlings of Fraxinus ornus L. and Spartium junceum L. growing on slopes , 2003 .
[19] Karl J. Niklas,et al. Effects of Vibration on Mechanical Properties and Biomass Allocation Pattern ofCapsella bursa-pastoris(Cruciferae) , 1998 .
[20] J. Harris,et al. The Brassica napus extA extensin gene is expressed in regions of the plant subject to tensile stresses , 1996, Planta.
[21] B. J. Atwell,et al. Physiological responses of lupin roots to soil compaction , 1988, Plant and Soil.
[22] C. Plomion,et al. Compression wood-responsive proteins in developing xylem of maritime pine (Pinus pinaster ait.). , 2000, Plant physiology.
[23] A. Stokes,et al. Responses of young trees to wind and shading: effects on root architecture , 1995 .
[24] R. J. Rickson,et al. Slope Stabilization and Erosion Control: A Bioengineering Approach , 1994 .
[25] M. J. Jaffe,et al. Morphogenetic Responses of Plants to Mechanical Stimuli or Stress , 1980 .
[26] K W Cremer,et al. Effects of stocking and thinning on wind damage in [pine] plantations. , 1982 .
[27] R. Bostock,et al. Quantification of lignin formation in almond bark in response to wounding and infection by Phytophthora species , 1988 .
[28] P. Larson. Stem Form of Young Larix As Influenced by Wind and Pruning , 1965 .
[29] S. Koutaniemi,et al. Lignification related enzymes in Picea abies suspension cultures. , 2002, Physiologia plantarum.
[30] Wayne Richter. A Structural Approach to the Function of Buttresses of Quararibea Asterolepis , 1984 .
[31] A. R. Ennos,et al. Responses of the Root Systems of Sunflower and Maize to Unidirectional Stem Flexure , 1998 .
[32] B. Nicoll,et al. Responses of young Sitka spruce clones to mechanical perturbation and nutrition: effects on biomass allocation, root development, and resistance to bending , 1997 .
[33] Sokal Rr,et al. Biometry: the principles and practice of statistics in biological research 2nd edition. , 1981 .
[34] Barry Gardiner,et al. THE EFFECT OF WIND ON THE MECHANICAL PROPERTIES OF THE WOOD OF BEECH (FAGUS SYLVATICA L.) GROWING IN THE BORDERS OF SCOTLAND , 1998 .
[35] B. Nicoll,et al. Orientation of the lateral roots of trees: I. Upward growth of surface roots and deflection near the soil surface. , 1991, The New phytologist.
[36] C. Lluch,et al. Effects of salt stress on growth, photosynthesis and nitrogen fixation in chick-pea (Cicer arietinum L.) , 1998 .
[37] M. Delgado,et al. Nitrogen fixation and carbon metabolism by nodules and bacteroids of pea plants under sodium chloride stress , 1993 .
[38] F. Telewski,et al. Wind and Trees: Wind-induced physiological and developmental responses in trees , 1995 .
[39] E. Hunt,et al. Thigmomorphogenesis: The Interaction of Wind and Temperature in the Field on the Growth of Phaseolus vulgaris L. , 1980 .
[40] N. Coppin,et al. Use of Vegetation in Civil Engineering , 1990 .
[41] T. E. Timell. Compression Wood in Gymnosperms , 1986 .
[42] A. R. Ennos,et al. The Effects of Soil Bulk Density on the Morphology and Anchorage Mechanics of the Root Systems of Sunflower and Maize , 1999 .
[43] Alexia Stokes,et al. Tree Root Response to Mechanical Stress , 1997 .