PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2011 | 33 | 4 |

Tytuł artykułu

Influence of ploidy level on morphology, growth and drought susceptibility in Spathiphyllum wallisii

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
In this study, we analysed morphological, anatomical and physiological effects of polyploidisation in Spathiphyllum wallisii in order to evaluate possible interesting advantages of polyploids for ornamental breeding. Stomatal density was negatively correlated with increased ploidy level. Stomatal size increased in polyploids. Tetraploid Spathiphyllum plants had more ovate and thicker leaves. The inflorescence of tetraploids had a more ovate and thicker spathum, a more cylindrical spadix and a thicker but shorter flower stalk. Biomass production of the tetraploids was reduced, as expressed by lower total dry weights, and tetraploids produced fewer shoots and leaves compared with their diploid progenitors. Furthermore, tetraploid Spathiphyllum plants were more resistant to drought stress compared with diploid plants. After 15 days of drought stress, diploids showed symptoms of wilting, while the tetraploids showed almost no symptoms. Further, measurements of stomatal resistance, leaf water potential, relative water content and proline content indicated that the tetraploid genotypes were more resistant to drought stress compared with the diploids.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

33

Numer

4

Opis fizyczny

p.1149-1156,fig.,ref.

Twórcy

autor
  • Institute for Agricultural and Fisheries Research (ILVO), Applied Genetics and Breeding, Caritaddtraat 21, 9090 Melle, Belgium
autor
  • Faculty of BioScience Engineering, Ghent University, Coupure Links 653 9000 Ghent, Belgium
  • Research Centre for Ornamental Plants (PCS), Schaessestraat 18, 9070 Destelbergen, Belgium
  • . Institute for Agricultural and Fisheries Research (ILVO), Applied Genetics and Breeding, Caritaddtraat 21, 9090 Melle, Belgium
autor
  • Faculty of BioScience Engineering, Ghent University, Coupure Links 653 9000 Ghent, Belgium
  • Faculty biosciences and Landscape Architecture, University College Ghent University Association, Voskenslaan 270, 9000 Ghent, Belgium

Bibliografia

  • Adams KL, Wendel JF (2005) Polyploidy and genome evolution in plants. Curr Opin Plant Biol 8:135–141
  • Allum J, Bringloe D, Roberts A (2007) Chromosome doubling in a Rosa rugosa Thunb. hybrid by exposure of in vitro nodes to oryzalin: the effects of node length, oryzalin concentration and exposure time. Plant Cell Rep 26:1977–1984
  • Araus JL, Alegre L, Tapia L, Calafell R (1986) Relationship between leaf structure and gas exchange in wheat leaves at different insertion levels. J Exp Bot 37:1323–1333
  • Aryavand A, Ehdaie B, Tran B, Waines JG (2003) Stomatal frequency and size differentiate ploidy levels in Aegilops neglecta. Genet Resour Crop Evol 50:175–182
  • Barr HD, Weatherley PE (1962) A re-examination of the relative turgidity technique of estimating water deficit in leaves. Aust J Biol Sci 15:416–428
  • Bates LS, Waldren RP, Teare ID (1973) Rapid determination of free proline for water-stress studies. Plant Soil 39:205–207
  • Boyer J (1982) Plant productivity and environment. Science 218:443–448
  • Cai H, Biswas DK, Shang AQ, Zhao LJ, Li WD (2007) Photosynthetic response to water stress and changes in metabolites in Jasminum sambac. Photosynthetica 45:503–509
  • Cornic G (2000) Drought stress inhibits photosynthesis by decreasing stomatal aperture-not by affecting ATP synthesis. Trends Plant Sci 5:187–188
  • Dewey DR (1980) Some application and misapplication of induced polyploidy to plant breeding. In: Lewis WH (ed) Polyploidy: biological relevance, vol 13. Plenum Press, New York, pp 445–470
  • Dhooghe E, Grunewald W, Leus L, Van Labeke MC (2008) In vitro polyploidisation of Helleborus species. Euphytica 165:89–95
  • Eeckhaut T, Werbrouck S, Leus L, Van Bockstaele E, Debergh P (2004) Chemically induced polyploidization of Spathiphyllum wallisii Regel through somatic embryogenesis. Plant Cell Tissue Organ Cult 78:241–246
  • Fonnesbech M, Fonnesbech A (1979) In vitro propagation of Spathiphyllum. Sci Hortic 10:21–25
  • Galmes J, Flexas J, Savé R, Medrano H (2007) Water relations and stomatal characteristics of Mediterranean plants with different growth forms and leaf habits: responses to water stress and recovery. Plant Soil 290:139–155
  • Gu XF, Yang AF, Meng H, Zhang JR (2005) In vitro induction of tetraploid plants from diploid Zizyphus jujuba Mill. Cv. Zhanhua. Plant Cell Rep 24:671–676
  • Hamill S, Smith M, Dodd W (1992) In vitro induction of banana autotetraploids by colchicine treatment of micropropagated diploids. Aust J Bot 40:887–896
  • Hetherington AM, Woodward FI (2003) The role of stomata in sensing and driving environmental change. Nature 424:901–908
  • Kermani MJ, Sarasan V, Roberts AV, Yokoya K, Wentworth J, Sieber VK (2003) Oryzalin-induced chromosome doubling in Rosa and its effect on plant morphology and pollen viability. Theor Appl Genet 107:1195–1200
  • Khosravi P, Kermani M, Nematzadeh G, Bihamta M, Yokoya K (2008) Role of mitotic inhibitors and genotype on chromosome doubling of Rosa. Euphytica 160:267–275
  • Kobayashi N, Yamashita S, Ohta K, Hosoki T (2008) Morphological characteristics and their inheritance in colchicine-induced Salvia polyploids. J Japan Soc Hort Sci 77(2):186–191
  • Kundu SK, Tigerstedt PMA (1998) Variation in net photosynthesis, stomatal characteristics, leaf area and whole-plant phytomass production among ten provenances of neem (Azadirachta indica). Tree Physiol 19:47–52
  • Li WL, Berlyn GP, Ashton PS (1996) Polyploids and their structural and physiological characteristics relative to water deficit in Betula papyrifera (Betulaceae). Am J Bot 83:15–20
  • Li WD, Biswas DK, Xu H, Xu CQ, Wang XZ, Liu JK, Jiang GM (2009) Photosynthetic responses to chromosome doubling in relation to leaf anatomy in Lonicera japonica subjected to water stress. Funct Plant Biol 36:783–792
  • Liu G, Li Z, Bao M (2007) Colchicine-induced chromosome doubling in Platanus acerifolia and its effect on plant morphology. Euphytica 157:145–154
  • Maherali H, Walden AL, Husband BC (2009) Genome duplication and the evolution of physiological responses to water stress. New Phytol 184:721–731
  • Mantovani A (1999) Leaf morphophysiology and distribution of epiphytic aroids along a vertical gradient in a Brazilian rain forest. Selbyana 20(2):241–249
  • Marchant C (1973) Chromosome variation in Araceae: V. Acoraceae to Lasieae. Kew Bulletins 28:199–210
  • Mears JA (1980) Chemistry of polyploids: a summary with comments on Parthenium (Asteraceae-Ambrosiinae). In: Lewis WH (ed) Polyploidy: biological relevance, vol 13. Plenum Press, New York, pp 77–102
  • Miller-Rushing AJ, Primack RB, Templer PH, Rathbone S, Mukunda S (2009) Long-term relationships among atmospheric CO₂, stomata, and intrinsic water use efficiency in individual trees. Am J Bot 96:1779–1786
  • Mishra MK (1997) Stomatal characteristics at different ploidy levels in Coffea L. Ann Bot 80:689–692
  • Notsuka K, Tsuru T, Shiraishi M (2000) Induced polyploid grapes via in vitro chromosome doubling. J Jpn Soc Hortic Sci 69:543–551
  • Ntuli NR, Zobolo AM (2008) Effect of water stress on growth of colchicine induced polyploid Coccinia palmata and Lagenaria sphaerica plants. Afr J Biotechnol 7:3548–3652
  • Pustovoitova TN, Eremin GV, Rassvetaeva EG, Zhdanova NE, Zholkevich VN (1996) Drought resistance, recovery capacity, and phytohormone content in polyploid plum meaves. Russ J Plant Physiol 43:232–235
  • Riddle NC, Kato A, Birchler JA (2006) Genetic variation for the response to ploidy change in Zea mays L. Theor Appl Genet 114:101–111
  • Rose J, Kubba J, Tobutt K (2000a) Chromosome doubling in sterile Syringa vulgaris × S. pinnatifolia hybrids by in vitro culture of nodal explants. Plant Cell Tissue Organ Cult 63:127–132
  • Rose J, Kubba J, Tobutt K (2000b) Induction of tetraploidy in Buddleia globosa. Plant Cell Tissue Organ Cult 63:121–125
  • Shiga I, Uno Y, Kanechi M, Inagaki N (2009) Identification of polyploidy of in vitro anther-derived shoots of Asparagus officinalis L. by flow cytometric analysis and measurement of stomatal length. J Jpn Soc Hort Sci 78(1):103–108
  • Soltis PS, Soltis DE (2000) The role of genetic and genomic attributes in the success of polyploids. Proc Natl Acad Sci USA 97:7051–7057
  • Souza RP, Machado EC, Silva JAB, Lagôa AMMA, Silveira JAG (2004) Photosynthetic gas exchange, chlorophyl fluorescence and some associated metabolic changes in cowpea (Vigna unguiculata) during water stress and recovery. Environ Exp Bot 51:45–56
  • Stanys V, Wechman A, Staniene G, Duchovskis P (2006) In vitro induction of polyploidy in Japanese quince (Chaenomeles japonica). Plant Cell Tissue Org Cult 84:263–267
  • Stebbins GL (1971) Chromosome evolution in higher plants. Edward Arnold, London
  • Sun QR, Sun HS, Li LG, Bell RL (2009) In vitro colchicine-induced polyploid plantlet production and regeneration from leaf explants of the diploid pear (Pyrus communis L.) cultivar ‘Fertility’. J Hortic Sci Biotech 84(5):548–552
  • Takamura T, Miyajima I (1996) Colchicine induced tetraploids in yellow-flowered cyclamens and their characteristics. Sci Hortic 65:305–312
  • Tal M (1980) Physiology of polyploids. In: Lewis WH (ed) Polyploidy: biological relevance, vol 13. Plenum Press, New York, pp 61–76
  • Thao N, Ureshina K, Miyajima I, Ozaki Y, Okubo H (2003) Induction of tetraploids in ornamental Alocasia through colchicine and oryzalin treatments. Plant Cell Tissue Organ Cult 72:19–25
  • Väinölä A (2000) Polyploidization and early screening of Rhododendron hybrids. Euphytica 112:239–244
  • Vaïnölä A, Repo T (2001) Polyploidisation of Rhododendron cultivars in vitro and how it affects cold hardiness. Acta Hort 560:319–322
  • Vanstechelman I, Eeckhaut T, Huylenbroeck J, Van Labeke M (2010) Histogenic analysis of chemically induced mixoploids in Spathiphyllum wallisii. Euphytica 174(1):61–72
  • Xiong YC, Li FM, Zhang T (2006) Performance of wheat crops with different chromosome ploidy: root-sourced signals, drought tolerance, and yield performance. Planta 224:710–718
  • Yamaguchi M (1989) Basic studies on the flower color breeding of carnations (Dianthus caryophyllus L.). Bull Fac Hort Miamikyusyu Univ 19:1–79
  • Yang X, Cao Z, An L, Wang Y, Fang X (2006) In vitro tetraploid induction via colchicine treatment from diploid somatic embryos in grapevine (Vitis vinifera L.). Euphytica 152:217–224
  • Zhang J, Zhang M, Deng X (2007) Obtaining autotetraploids in vitro at a high frequency in Citrus sinensis. Plant Cell Tissue Organ Cult 89:211–216
  • Zhang Z, Dai H, Xiao M, Liu X (2008) In vitro induction of tetraploids in Phlox subulata L. Euphytica 159:59–65
  • Zhang QY, Luo FX, Liu L, Guo FC (2010a) In vitro induction of tetraploids in crape myrtle (Lagerstroemia indica L.). Plant Cell Tissue Organ Cult 101:41–47
  • Zhang XY, Hu CG, Yao JL (2010b) Tetraploidization of diploid Dioscorea results in activation of the antioxidant defense system and increased heat tolerance. J Plant Physiol 167:88–94
  • Zlesak D, Thill C, Anderson N (2005) Trifluralin-mediated polyploidization of Rosa chinensis minima (Sims) Voss. Euphytica 141:281–290

Uwagi

PL
rekord w opracowaniu

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-d3e5a6b1-b908-4a6b-ad87-5b977e5899f9
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.