Phytochromes and Shade-avoidance Responses in Plants
Tóm tắt
Từ khóa
Tài liệu tham khảo
Aukerman MJ, Hirschfeld M, Wester L, Weaver M, Clack T, Amasino RM, Sharrock RA. 1997 . A deletion in the PHYD gene of the Arabidopsis Wassilewskija ecotype defines a role for phytochrome D in red/far-red light sensing. Plant Cell9: 1317–1332.
Ballaré CL. 1999 . Keeping up with the neighbours: phytochrome sensing and other signalling mechanisms. Trends in Plant Science4: 97–102.
Ballaré CL, Scopel AL, Sánchez RA. 1990 . Far-red radiation reflected from adjacent leaves: an early signal of competition in plant canopies. Science247: 329–332.
Ballaré CL, Scopel AL, Sánchez RA. 1991 . Photocontrol of stem elongation in pant neighbourhoods: effects of photon fluence rate under natural conditions of radiation. Plant, Cell and Environment14: 57–65.
Ballaré CL, Casal JJ, Kendrick RE. 1991 . Responses of light-grown wild-type and long-hypocotyl mutant cucumber seedlings to natural and stimulated shade light. Photochemistry and Photobiology54: 819–826.
Blázquez MA, Weigel D. 1999 . Independent regulation of flowering by phytochrome B and gibberellins in Arabidopsis. Plant Physiology120: 1025–32.
Blázquez MA, Ahn JH, Weigel D. 2003 . A thermosensory pathway controlling flowering time in Arabidopsis thaliana. Nature Genetics33: 168–171.
Briggs WR, Huala E. 1999 . Blue-light photoreceptors in higher plants. Annual Review of Cell and Developmental Biology15: 33–62.
Carabelli M, Sessa G, Ruberti I, Morelli G. 1993 . The Arabidopsis ATHB-2 and -4 genes are strongly induced by far-red-rich light. The Plant Journal4: 469–479.
Carabelli M, Morelli G, Whitelam GC, Ruberti I. 1996 . Twilight-zone and canopy shade induction of the ATHB-2 homeobox gene in green plants. Proceedings of the National Academy of Sciences USA93: 3530–3535.
Casal JJ, Sánchez RA. 1994 . Impaired stem growth response to blue light irradiance in light-grown transgenic tobacco seedlings overexpressing Avena phytochrome A. Physiologia Plantarum91: 268–272.
Casal JJ, Smith H. 1989 . The function, action and adaptive significance of phytochrome in light-grown plants. Plant, Cell and Environment12: 855–862.
Casal JJ, Ballaré CL, Tourn M, Sánchez RA. 1994 . Anatomy, growth and survival of a long-hypocotyl mutant of Cucumis sativus deficient in phytochrome B. Annals of Botany73: 569–575.
Casal JJ, Sánchez RA, Deregibus VV. 1986 . The effect of plant density on tillering: the involvement of R/FR ratio and the proportion of radiation intercepted per plant. Environmental and Experimental Botany26: 365–371.
Cashmore AR, Jarillo JA, Wu YJ, Liu D. 1999 . Cryptochromes: blue light receptors for plants and animals. Science284: 760–765.
Clack T, Mathews S, Sharrock RA. 1994 . The phytochrome apoprotein family in Arabidopsis is encoded by five genes: the sequences and expression of PHYD and PHYE. Plant Molecular Biology25: 413–427.
Devlin PF, Rood SB, Somers DE, Quail PH, Whitelam GC. 1992 . Photophysiology of the elongated internode (ein) mutant of Brassica rapa: ein mutant lacks a detectable phytochrome B-like protein. Plant Physiology100: 1442–1447.
Devlin PF, Halliday KJ, Harberd NP, Whitelam GC. 1996 . The rosette habit of Arabidopsis thaliana is dependent upon phytochrome action: novel phytochromes control internode elongation and flowering time. The Plant Journal10: 1127–1134.
Devlin PF, Patel SR, Whitelam GC. 1998 . Phytochrome E influences internode elongation and flowering time in Arabidopsis. Plant Cell10: 1479–1487.
Devlin PF, Robson PRH, Patel SR, Goosey L, Sharrock RA, Whitelam GC. 1999 . Phytochrome D acts in the shade-avoidance syndrome in Arabidopsis by controlling elongation and flowering time. Plant Physiology119: 909–915.
Dorn LA, Hammond Pyle E, Schmitt J. 2000 . Plasticity to cues and resources in Arabidopsis thaliana: testing for adaptive value and costs. Evolution54: 1982–1994.
Dowson-Day MJ, Millar AJ. 1999 . Circadian dysfunction causes aberrant hypocotyl elongation patterns in Arabidopsis. The Plant Journal17: 63–71.
Franklin KA, Praekelt U, Stoddart WM, Billingham OE, Halliday KJ, Whitelam GC. 2003 . Phytochromes B, D and E act redundantly to control multiple physiological responses in Arabidopsis. Plant Physiology131: 1340–1346.
Franklin KA, Davis SJ, Stoddart WM, Vierstra RD, Whitelam GC. 2003 . Mutant analyses define multiple roles for phytochrome C in Arabidopsis thaliana photomorphogenesis. Plant Cell15: 1981–1989.
Furuya M, Song P-S. 1994 . Assembly and properties of holophytochrome. In: Kendrick RE, Kronenberg GHM, eds. Photomorphogenesis in plants. Dordrecht: Kluwer, 105–140.
Gilbert IR, Jarvis PG, Smith H. 2001 . Proximity signal and shade avoidance differences between early and late successional trees. Nature411: 792–795.
Goosey L, Palecanda L, Sharrock RA. 1997 . Differential patterns of expression of the Arabidopsis PHYB, PHYD, and PHYE phytochrome genes. Plant Physiology115: 959–969.
Halliday KJ, Whitelam GC. 2003 . Changes in photoperiod or temperature alter the functional relationships between phytochromes and reveal roles for phyD and phyE. Plant Physiology131: 1913–1920.
Halliday KJ, Koornneef M, Whitelam GC. 1994 . Phytochrome B and at least one other phytochrome mediate the accelerated flowering response of Arabidopsis thaliana L. to low red/far-red ratio. Plant Physiology104: 1311–1315.
Halliday KJ, Salter MG, Thingnaes E, Whitelam GC. 2003 . Phytochrome control of flowering is temperature sensitive and correlates with expression of the floral integrator FT. The Plant Journal33: 875–885.
Holmes MG, Smith H. 1975 . The function of phytochrome in plants growing in the natural environment. Nature254: 512–514.
Johnson E, Bradley JM, Harberd NP, Whitelam GC. 1994 . Photoresponses of light-grown phyA mutants of Arabidopsis: phytochrome A is required for the perception of daylength extensions. Plant Physiology105: 141–149.
López-Juez E, Nagatani A, Tomizawa K-I, Deak M, Kern R, Kendrick RE, Furuya M. 1992 . The cucumber long hypocotyl mutant lacks a light-stable PHYB-like phytochrome. Plant Cell4: 241–251.
McCormac AC, Cherry JR, Hershey HP, Vierstra RD, Smith H. 1991 . Photoresponses of transgenic tobacco plants expressing an oat phytochrome gene. Planta185: 162–170.
McCormac AC, Whitelam GC, Smith H. 1992 . Light grown plants of transgenic tobacco expressing an introduced oat phytochrome A gene under the control of a constitutive viral promoter exhibit persistent growth inhibition by far-red light. Planta188: 173–181.
McLaren JS, Smith H. 1978 . The function of phytochrome in the natural environment. VI. Phytochrome control of the growth and development of Rumex obtusifolius under simulated canopy light environments. Plant, Cell and Environment1: 61–67.
Møller SG, Ingles PJ, Whitelam GC. 2002 . The cell biology of phytochrome signalling. New Phytologist154: 553–590.
Ni M, Tepperman JM, Quail PH. 1998 . PIF3, a phytochrome-interacting factor necessary for normal photoinduced signal transduction, is a novel basic helix–loop–helix protein. Cell95: 657–667.
Pierik R, Visser EJW, de Kroon H, Voesenek LACJ. 2003 . Ethylene is required in tobacco to successfully complete with proximate neighbours. Plant, Cell and Environment26: 1229–1234.
Pierik R, Voesenek LACJ, de Kroon H, Visser EJW. 2004 . Density-induced plant size reduction and size inequalities in ethylene-sensing and ethylene-insensitive tobacco. Plant Biology6: 201–205.
Pierik R, Whitelam GC, Voesenek LACJ, de Kroon H, Visser EJW. 2004 . Canopy studies on ethylene-insensitive tobacco identify ethylene as a novel element in blue light and plant-plant signalling. The Plant Journal38: 310–319.
Quail PH. 1994 . Phytochrome genes and their expression. In: Kendrick RE, Kronenberg GHM, eds. Photomorphogenesis in plants, 2nd edn. Dordrecht: Kluwer, 71–104.
Reed JW, Nagpal P, Poole DS, Furuya M, Chory J. 1993 . Mutations in the gene for red/far-red light receptor phytochrome B alter cell elongation and physiological responses throughout Arabidopsis development. Plant Cell5: 147–157.
Robson PRH, Whitelam GC, Smith H. 1993 . Selected components of the shade-avoidance syndrome are displayed in a normal manner in mutants of Arabidopsis thaliana and Brassica rapa deficient in phytochrome B. Plant Physiology102: 1179–1184.
Robson PRH, McCormac AC, Irvine AS, Smith H. 1996 . Genetic engineering of harvest index in tobacco through overexpression of a phytochrome gene. Nature Biotechnology14: 995–998.
Salter MG, Franklin KA, Whitelam GC. 2003 . Gating of the rapid shade-avoidance response by the circadian clock in plants. Nature11: 680–683.
Schena M, Davis RW. 1992 . HD-Zip proteins: members of an Arabidopsis homeodomain protein superfamily. Proceedings of the National Academy of Sciences of the USA89: 3894–3898.
Schäfer E, Bowler C. 2002 . Phytochrome-mediated photoperception and signal transduction in higher plants. EMBO Reports3: 1042–1048.
Schmitt J, McCormac AC, Smith H. 1995 . A test of the adaptive plasticity hypothesis using transgenic and mutant plants disabled in phytochrome-mediated elongation responses to neighbours. American Naturalist146: 937–953.
Schmitt J, Stinchcombe JR, Heschel MS, Huber H. 2003 . The adaptive evolution of plasticity: phytochrome-mediated shade avoidance responses. Integrative and Comparative Biology43: 459–469.
Sharrock RA, Quail PH. 1989 . Novel phytochrome sequences in Arabidopsis thaliana: structure, evolution, and differential expression of a plant regulatory photoreceptor family. Genes and Development3: 1745–1757.
Simpson GG, Dean C. 2002 . Arabidopsis, the Rosetta stone of flowering time? Science296: 285–289.
Smith H. 1982 . Light quality, photoperception and plant strategy. Annual Review of Plant Physiology33: 481–518.
Smith H, Whitelam GC. 1990 . Phytochrome, a family of photoreceptors with multiple physiological roles. Plant, Cell and Environment13: 695–707.
Smith H, Whitelam GC. 1997 . The shade avoidance syndrome: multiple responses mediated by multiple phytochromes. Plant, Cell and Environment20: 840–844.
Somers DE, Sharrock RA, Tepperman JM, Quail PH. 1991 . The hy3 long hypocotyl mutant of Arabidopsis is deficient in phytochrome B. Plant Cell3: 1263–1274.
Steindler C, Matteucci A, Sessa G, Weimar T, Ohgishi M, Aoyama T, Morelli G, Ruberti I. 1999 . Shade avoidance responses are mediated by the ATHB-2 HD-zip protein, a negative regulator of gene expression. Development126: 4235–4245.
Whitelam GC, Smith H. 1991 . Retention of phytochrome-mediated shade avoidance responses in phytochrome-deficient mutants of Arabidopsis, cucumber and tomato. Journal of Plant Physiology39: 119–125.
