Handbook of Plant and Crop Physiology

(Steven Felgate) #1

  1. JE Garbarino, WR Belknap. Isolation of a ubiquitin-ribosomal protein gene (ubi3) from potato and expression
    of its promoter in transgenic plants. Plant Mol Biol 24:119–127, 1994.

  2. JE Garbarino, T Oosumi, WR Belknap. Isolation of a polyubiquitin promoter and its expression in transgenic
    potato plants. Plant Physiol 109:1371–1378, 1995.

  3. N Ito, K Tomizawa, K Tanaka, M Matsui, RE Kendrick, T Sato, H Nakagawa. Characterization of 26S
    proteasome alpha- and beta-type and ATPase subunits from spinach and their expression during early stages
    of seedling development. Plant Mol Biol 34:307–316, 1997.

  4. K Nakashima, T Kiyosue, K Yamaguchi-Shinozaki, K Shinozaki. A nuclear gene, erd1, encoding a
    chloroplast-targeted Clp protease regulatory subunit homolog is not only induced by water stress but also
    developmentally up-regulated during senescence in Arabidopsis thaliana. Plant J 12:851–861, 1997.

  5. K Nakabayashi, M Ito, T Kiyosue, K Shinozaki, A Watanabe. Identification of clpgenes expressed in
    senescingArabidopsisleaves. Plant Cell Physiol 40:504–514, 1999.

  6. LM Weaver, JE Froehlich, RM Amasino. Chloroplast-targeted ERD1 protein declines but its mRNA increases
    during senescence in Arabidopsis. Plant Physiol 119:1209–1216, 1999.

  7. A Kato, M Hayashi, Y Takeuchi, M Nishimura. CDNA cloning and expression of a gene for 3-ketoacyl-CoA
    thiolase in pumpkin cotyledons. Plant Mol Biol 31:843–852, 1996.

  8. IA Graham, CJ Leaver, SM Smith. Induction of malate synthase gene expression in senescent and detached
    organs in cucumber. Plant Cell 4:349–357, 1992.

  9. N Sakurai, T Hayakawa, T Nakamura, T Yamaya. Changes in the cellular localization of cytosolic glutamine
    synthetase protein in vascular bundles of rice leaves at various stages of development. Planta 200:306–311,



  10. C Callard, M Axelos, L Mazzolini. Novel molecular markers for late phases of the growth cycle of Arabidop-
    sis thalianacell-suspension cultures are expressed during organ senescence. Plant Physiol 112:705–715, 1996.

  11. MH Walter, J-W Liu, J Wunn, D Hess. Bean ribonuclease-like pathogenesis-related protein gene (Ypr10)
    displays complex patterns of developmental, dark-induced and exogenous-stimulus-dependent expression. Eur
    J Biochem 239:281–293, 1996.

  12. Y Azumi, A Watanabe. Evidence for a senescence-associated gene induced by darkness. Plant Physiol
    95:577–583, 1991.

  13. SA OH, SY Lee, IK Chung, C-H Lee, HG Nam. A senescence-associated gene of Arabidopsis thalianais
    distinctively regulated during natural and artificially induced leaf senescence. Plant Mol Biol 30:739–754,



  14. M García-Hernández, A Murphy, L Taiz. Metallothioneins 1 and 2 have distinct but overlapping expression
    patterns in Arabidopsis. Plant Physiol 118:387–397, 1998.

  15. A Van-Gysel, M Van-Montagu, DA Inzé. Negatively light-regulated gene from Arabidopsis thalianaencodes
    a protein showing high similarity to blue copper-binding proteins. Gene 136:79–85, 1993.

  16. E Himelblau, H Mira, S-J Lin, VC Culotta, L Peñarrubia, RM Amasino. Identification of a functional homolog
    of the yeast copper homeostasis gene ATX1fromArabidopsis. Plant Physiol 117:1227–1234, 1998.

  17. A DeLong, A Calderonurrea, SL Dellaporta. Sex determination gene TASSELSEED2of maize encodes a
    short-chain alcohol dehydrogenase required for stage-specific floral organ abortion. Cell 74:757–768, 1993.

  18. AB Bleecker. The evolutionary basis of leaf senescence: method to the madness? Curr Opin Plant Biol
    1:73–78, 1998.

  19. LL Hensel, V Grbic, DA Baumgarten, AB Bleecker. Developmental and age-related processes that influence
    the longevity and senescence of photosynthetic tissues in Arabidopsis. Plant Cell 5:553–564, 1993.

  20. R Hayati, DB Egli, SJ Crafts-Brandner. Carbon and nitrogen supply during seed filling and leaf senescence in
    soybean. Crop Sci 35:1063–1069, 1995.

  21. DA Navarre, TJ Wolpert. Victorin induction of an apoptotic/senescence-like response in oats. Plant Cell
    11:237–249, 1999.

  22. N Dai, A Schaffer, M Petreikov, Y Shahak, Y Giller, K Ratneer, A Levine, D Granot. Overexpression of
    Arabidopsishexokinase in tomato plants inhibits growth, reduces photosynthesis, and induces rapid
    senescence. Plant Cell 11:1253–1266, 1999.

  23. A Smart. Gene expression during leaf senescence. New Phytol 126:419–448, 1994.

  24. JD Miller, RN Arteca, EJ Pell. Senescence-associated gene expression during ozone-induced leaf senescence
    inArabidopsis. Plant Physiol 120:1015–1024, 1999.

  25. EJ Pell, MS Dann. Multiple stress–induced foliar senescence and implications for whole-plant longevity.
    In: HA Mooney, WE Winner, EJ Pell, eds. Response of Plants to Multiple Stresses. San Diego: Academic
    Press, 1991, pp 189–204.

  26. L Peñarrubia, J Moreno. Molecular mechanisms of plant responses to elevated levels of tropospheric ozone. In:
    M Pessarakli, ed. Handbook of Plant and Crop Stress. 2nd ed. New York: Marcel Dekker, 1999, pp 769–793.

  27. S Gan, RM Amasino. Cytokinins in plant senescence: from spray and pray to clone and play. Bioessays
    18:557–656, 1996.

  28. N Ori, MT Juarez, D Jackson, J Yamaguchi, GM Banowetz, S Hake. Leaf senescence is delayed in tobacco
    plants expressing the maize homeobox gene knotted1under the control of a senescence-activated promoter.
    Plant Cell 11:1073–1080, 1999.


202 PEÑARRUBIA AND MORENO
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