Handbook of Plant and Crop Physiology

(Steven Felgate) #1

  1. VA Wittenbach. Effect of pod removal on leaf photosynthesis and soluble protein composition of field-grown
    soybeans. Plant Physiol 73:121–124, 1983.

  2. IR Cowan, GD Farquhar. Stomatal function in relation to leaf metabolism and environment. In: DH Jenning,
    ed. Integration of Activity in the Higher Plant. London: Cambridge University Press, 1977, pp 471–505.

  3. E Zeiger, A Schwartz. Longevity of guard cell chloroplasts in falling leaves: implication for stomatal function
    and cellular aging. Science 218:680–682, 1982.

  4. T Solomos. Respiration in senescing plant organs: its nature, regulation and physiological significance. In: LD
    Noodén, AC Leopold, eds. Senescence and Aging in Plants. London: Academic Press, 1988, pp 112–146.

  5. AC Liden, HE Akerlund. Induction and activation of the alternative oxidase of potato tuber mitochondria.
    Physiol Plant 87:134–141, 1993.

  6. C Hiser, L McIntosh. Alternative oxidase of potato is an integral membrane protein synthesized de novo during
    aging of tuber slices. Plant Physiol 93:312–318, 1990.

  7. GG Laties. The cyanide-resistant alternative path in higher plant respiration. Annu Rev Plant Physiol
    33:519–555, 1982.

  8. IL Nantes, MM Fagian, R Catisti, P Arruda, IG Maia, AE Vercesi. Low temperature and aging-promoted
    expression of PUMP in potato tuber mitochondria. FEBS Lett 457:103–106, 1999.

  9. P Jezek, AD Costa, AE Vercesi. Reconstituted plant uncoupling mitochondrial protein allows for proton
    translocation via fatty acid cycling mechanism. J Biol Chem 272:24272–24278, 1997.

  10. P Siffel, J Kutik, NN Lebedev. Spectroscopically analyzed degradation of chlorophyll-protein complexes and
    chloroplast ultrastructure during yellowing of leaves. Photosynthetica 25:395–407, 1991.

  11. J Hidema, A Makino, Y Kurita, T Mae, K Ojima. Changes in the levels of chlorophyll and light-harvesting
    chlorophylla/bprotein in rice leaves aged under different irradiances from full expansion through senescence.
    Plant Cell Physiol 33:1209–1214, 1992.

  12. AJ Young, R Wellings, G Britton. The fate of chloroplast pigments during senescence of primary leaves of
    Hordeum vulgareandAvena sativa. J Plant Physiol 137:701–705, 1990.

  13. V Scheumann, S Schoch, W Rudiger. Chlorophyll breduction during senescence of barley seedlings. Planta
    209:364–370, 1999.

  14. D Amir-Shapira, EE Goldschmidt, A Altman. Chlorophyll catabolism in senescing plant tissues: in vivo
    breakdown intermediates suggest different degradative pathways for Citrusfruit and parsley leaves. Proc Natl
    Acad Sci U S A 84:1901–1905, 1987.

  15. T Tsuchiya, H Ohta, K Okawa, A Iwamatsu, H Shimada, T Masuda, K Takamiya. Cloning of chlorophyllase,
    the key enzyme in chlorophyll degradation: finding of a lipase motif and the induction by methyl jasmonate.
    Proc Natl Acad Sci U S A 96:15362–15367, 1999.

  16. B Luthy, E Martinoia, P Matile, H Thomas. Thylakoid-associated chlorophyll oxidase: distinction from
    lipoxygenase. Z Pflanzenphysiol 113:423–434, 1984.

  17. N Yamauchi, AE Watada. Regulated chlorophyll degradation in spinach leaves during storage. J Am Soc
    Hortic Sci 116:58–62, 1991.

  18. VJ Dwarki, VNK Francis, GJ Bhat, G Padmanaban. Regulation of cytochrome P-450 messengers RNA and
    apoprotein levels by heme. J Biol Chem 262:16958–16962, 1987.

  19. DY Chang, JP Miksche, SS Dhillon. DNA changes involving repeated sequences in senescing soybean
    (Glycine max) cotyledon nuclei. Physiol Plant 64:409–417, 1985.

  20. JB Harris, VG Schaefer, SS Dhillon, JP Miksche. Differential decline in DNA in aging leaf tissues. Plant Cell
    Physiol 23:1267–1273, 1982.

  21. CJ Brady. Nucleic acid and protein synthesis. In: L D Noodén, AC Leopold, eds. Senescence and Aging in
    Plants. London: Academic Press, 1988, pp 147–181.

  22. FB Abeles, LJ Dunn. Restriction fragment length polymorphism analysis of DNA from senescing cotyledon
    tissue. Plant Sci 72:13–18, 1990.

  23. R Tomas, A Vera, M Martin, B Sabater. Changes in protein synthesis without evidence of DNA methylation
    in barley chloroplasts during leaf growth and development. Plant Sci 85:71–77, 1992.

  24. KN Lohman, S Gan, MC John, RM Amasino. Molecular analysis of natural leaf senescence in Arabidopsis
    thaliana. Physiol Plant 92:322–328, 1994.

  25. V Buchanan-Wollaston. Isolation of cDNA clones for genes that are expressed during leaf senescence in
    Brassica napus. Plant Physiol 105:839–846, 1994.

  26. H Pfitzinger, L Marechal-Drouard, DTN Pillay, JH Weil, P Guillemaut. Variations during leaf development of
    the relative amounts of two bean (Phaseolus vulgaris) chloroplast phenylalanyl transfer RNA which differ in
    their minor nucleotide content. Plant Mol Biol 14:969–976, 1990.

  27. C Jayabaskaran, M Kuntz, P Guillemaut, JH Weil. Variations in the levels of chloroplast transfer RNA and
    aminoacyl transfer RNA synthetases in senescing leaves of Phaseolus vulgaris. Plant Physiol 92:136–140,
    1990.

  28. F Stirpe, L Barbieri, P Gorini, P Valbonesi, A Bolognesi, L Polito. Activities associated with the presence of
    ribosome-inactivating proteins increase in senescent and stressed leaves. FEBS Lett 382:309–312, 1996.

  29. A Blank, TA McKeon. Expression of three RNase activities during natural and dark-induced senescence of
    wheat leaves. Plant Physiol 97:1409–1413, 1991.


198 PEÑARRUBIA AND MORENO

Free download pdf