The role of ethylene and darkness in accelerated shoot elongation of Ammophila breviligulata upon sand burial
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L. Voesenek | M. Maun | W. H. van der Putten | C. Blom | L. Voesenek | L. A. C. J. Voesenek | M. A. Maun
[1] F. B. Abeles,et al. Ethylene in Plant Biology , 2022 .
[2] M. Jackson,et al. Anaerobic promotion of stem extension in Potamogeton pectinatus. Roles for carbon dioxide, acidification and hormones , 1996 .
[3] D. Seliskar. The Effect of Accelerated Sand Accretion on Growth, Carbohydrate Reserves, and Ethylene Production in Ammophila breviligulata (Poaceae) , 1994 .
[4] H. Kroon,et al. Plasticity in morphology and biomass allocation in Cynodon dactylon, a grass species forming stolons and rhizomes. , 1994 .
[5] W. G. Hopkins,et al. Effects of Sand Accretion on photosynthesis, Leaf-Water Potential and Morphology of Two Dune Grasses , 1993 .
[6] L. Voesenek,et al. Enhanced ethylene production by primary roots of Zea mays L. in response to sub-ambient partial pressures of oxygen , 1993 .
[7] E. Lavernia,et al. An experimental investigation , 1992, Metallurgical and Materials Transactions A.
[8] J. García-Martínez,et al. Interaction of gibberellins and phytochrome in the control of cowpea epicotyl elongation , 1992 .
[9] Jianhua Zhang,et al. Effects of burial in sand on the growth and reproduction of Cakile edentula , 1992 .
[10] R. Whalley,et al. Effects of salt spray and sand burial on Spinifex sericeus R. Br. , 1992 .
[11] I. Raskin,et al. The effect of ethylene on the growth and development of wild-type and mutant Arabidopsis thaliana (L.) Heynh , 1991 .
[12] M. Sykes,et al. An experimental investigation into the response of New Zealand sand dune species to different depths of burial by sand. , 1990 .
[13] Jianhua Zhang,et al. Effects of sand burial on seed germination, seedling emergence, survival, and growth of Agropyron psammophilum , 1990 .
[14] Laurentius A. C. J. Voesenek,et al. Growth responses of Rumex species in relation to submergence and ethylene , 1989 .
[15] A. Davy,et al. Regenerative potential of Elymus farctus from rhizome fragments and seed , 1986 .
[16] M. Maun,et al. The effects of burial by sand on Ammophila breviligulata , 1984 .
[17] D. Disraeli. The effect of sand deposits on the growth and morphology of ammophila breviligulata , 1984 .
[18] R. A. Eldred,et al. A multivariate approach to the problem of decline in vigour of Ammophila , 1982 .
[19] A. J. Willis. The Influence of Mineral Nutrients on the Growth of Ammophila Arenaria , 1965 .
[20] J. Marshall. CORYNEPHORUS CANESCENS (L.) P. BEAUV. AS A MODEL FOR THE AMMOPHILA PROBLEM , 1965 .
[21] Charles C. Laing. Studies in the Ecology of Ammophila breviligulata. I. Seedling Survival and Its Relation to Population increase and Dispersal , 1958, Botanical Gazette.
[22] D. Ranwell. MOVEMENT OF VEGETATED SAND DUNES AT NEWBOROUGH WARREN, ANGLESEY , 1958 .
[23] W. Engelaar. Roots, nitrification and nitrate acquisition in waterlogged and compacted soils , 1994 .
[24] K. Sand‐Jensen,et al. Seasonal acclimatization of eelgrass Zostera marina growth to light , 1993 .
[25] R. Crawford. Plant life in aquatic and amphibious habitats , 1987 .
[26] J. Letey,et al. Measurement of gas diffusion coefficient under relatively low air-filled porosity [Aeration, soil diffusivity, gas movement]. , 1984 .