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Results: 1-14 |
Results: 14

Authors: Greggains, V Finch-Savage, WE Atherton, NM Berjak, P
Citation: V. Greggains et al., Viability loss and free radical processes during desiccation of recalcitrant Avicennia marina seeds, SEED SCI R, 11(3), 2001, pp. 235-242

Authors: Walters, C Pammenter, NW Berjak, P Crane, J
Citation: C. Walters et al., Desiccation damage, accelerated ageing and respiration in desiccation tolerant and sensitive seeds, SEED SCI R, 11(2), 2001, pp. 135-148

Authors: Wesley-Smith, J Pammenter, NW Berjak, P Walters, C
Citation: J. Wesley-smith et al., The effects of two drying rates on the desiccation tolerance of embryonic axes of recalcitrant jackfruit (Artocarpus heterophyllus Lamk.) seeds, ANN BOTANY, 88(4), 2001, pp. 653-664

Authors: Wesley-Smith, J Walters, C Pammenter, NW Berjak, P
Citation: J. Wesley-smith et al., Interactions among water content, rapid (nonequilibrium) cooling to-196 degrees C, and survival of embryonic axes of Aesculus hippocastanum L. seeds, CRYOBIOLOGY, 42(3), 2001, pp. 196-206

Authors: Berjak, P Pammenter, N
Citation: P. Berjak et N. Pammenter, The 3(rd) International Workshop on Desiccation Tolerance and Sensitivity of Seeds and Vegetative Plant Tissues - Introduction, SEED SCI R, 10(3), 2000, pp. 283-283

Authors: Pammenter, NW Berjak, P
Citation: Nw. Pammenter et P. Berjak, Evolutionary and ecological aspects of recalcitrant seed biology, SEED SCI R, 10(3), 2000, pp. 301-306

Authors: Boubriak, I Dini, M Berjak, P Osborne, DJ
Citation: I. Boubriak et al., Desiccation and survival in the recalcitrant seeds of Avicennia marina: DNA replication, DNA repair and protein synthesis, SEED SCI R, 10(3), 2000, pp. 307-315

Authors: Calistru, C McLean, M Pammenter, NW Berjak, P
Citation: C. Calistru et al., The effects of mycofloral infection on the viability and ultrastructure ofwet-stored recalcitrant seeds of Avicennia marina (Forssk.) Vierh., SEED SCI R, 10(3), 2000, pp. 341-353

Authors: Drew, PJ Pammenter, NW Berjak, P
Citation: Pj. Drew et al., 'Sub-imbibed' storage is not an option for extending longevity of recalcitrant seeds of the tropical species, Trichilia dregeana Sond., SEED SCI R, 10(3), 2000, pp. 355-363

Authors: Wang, BSP Berjak, P
Citation: Bsp. Wang et P. Berjak, Beneficial effects of moist chilling on the seeds of black spruce (Picea mariana [Mill.] BSP), ANN BOTANY, 86(1), 2000, pp. 29-36

Authors: Reddy, P Mycock, DJ Berjak, P
Citation: P. Reddy et al., The effect of microwave irradiation on the ultrastructure and internal fungi of soybean seed tissues, SEED SCI T, 28(2), 2000, pp. 277-289

Authors: Pammenter, NW Berjak, P
Citation: Nw. Pammenter et P. Berjak, A review of recalcitrant seed physiology in relation to desiccation-tolerance mechanisms, SEED SCI R, 9(1), 1999, pp. 13-37

Authors: Berjak, P Walker, M Watt, MP Mycock, DJ
Citation: P. Berjak et al., Experimental parameters underlying failure or success in plant germplasm cryopreservation: A case study on zygotic axes of Quercus robur L., CRYO-LETT, 20(4), 1999, pp. 251-262

Authors: Pammenter, NW Greggains, V Kioko, JI Wesley-Smith, J Berjak, P Finch-Savage, WE
Citation: Nw. Pammenter et al., Effects of differential drying rates on viability retention of recalcitrant seeds of Ekebergia capensis, SEED SCI R, 8(4), 1998, pp. 463-471
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