PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2006 | 47 | 4 |

Tytuł artykułu

Effects of interaction between pollen coat eluates and pistil at the molecular level in self-compatible and self-incompatible plants of Lolium multiflorum Lam.

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Two-dimensional electrophoresis (2-DE) of soluble proteins and enzymes was performed and specific activities of 5 enzymes (esterase, pectinesterase, acid phosphatase, protease and diaphorase) were determined in stigmas of Lolium multiflorum (Italian ryegrass) treated with self or foreign pollen coat eluates (pc). Also, a low-molecular-weight fraction of the treated self-compatible (SC) and self-incompatible (SI) stigmas was analyzed by high-pressure liquid chromatography (HPLC). The treatment of stigmas with foreign pollen induced the loss of 42% of the control sample proteins in SC plants but only of 5.5% in SI plants. In contrast, the treatment of stigmas with foreign pollen induced the loss of 15% proteins in SC plants and of 29% in SI plants. Specific activities of esterase, pectinesterase and diaphorase were higher in SC than in SI stigmas. The 2-DE enzyme patterns indicated qualitative relationships between the presence of some isoforms of acid phosphatase or protease and the treatment with self or foreign pc in SC and SI stigmas. No changes were observed in HPLC profiles of the low-molecular-weight fraction from SC and SI stigmas treated or not with pc. The presented results revealed different reactions of SC and SI stigmas to the treatment with self or foreign pc. Further investigations may explain if any of the observed reactions represent specific reorientations in the style, facilitating cross- or self-pollination.

Wydawca

-

Rocznik

Tom

47

Numer

4

Opis fizyczny

p.319-329,fig.,ref.

Twórcy

autor
  • Institute of Plant Genetics, Polish Academy of Sciences, Strzeszynska 34, 60-479 Poznan, Poland
autor
  • Institute of Plant Genetics, Polish Academy of Sciences, Strzeszynska 34, 60-479 Poznan, Poland
autor
  • Institute of Plant Genetics, Polish Academy of Sciences, Strzeszynska 34, 60-479 Poznan, Poland

Bibliografia

  • Barnavon L, Doco T, Terrier N, Ageorges A, Romieu C, Pellerin P, 2001. Involvement of pectin methyl-esterase during the ripening of grape berries partial cDNA isolation, transcript expression and changes in the degree of methyl-esterification of cell wall pectins. Phytochemistry 58: 693-701.
  • Bradford MM, 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 72: 248-254.
  • Chay CH, Buehler EG, Thorn JM, Whelan TM, Bedinger PA, 1992. Purification of maize pollen exine and analysis of associated proteins. Plant Physiol 100: 756-761.
  • Cheung A, Wu H-M, 1999. Arabinogalactan proteins in plant sexual reproduction. Protoplasma 208: 87-98.
  • Cheung AY, Wu H-M, di Stilio V, Glaven R, Chen C, Wong E, Ogdahl J, Estavillo A, 2000a. Pollen-pistil interactions in Nicotiana tabacum. Ann Bot 85: 29-37.
  • Cheung A, Zhan XY, Wong E, Wang H, Wu H-M, 2000b. Transcriptional, post-transcriptional and post-translational regulation of Nicotiana stylar transmitting tissue-specific arabinogalactan proteins. In: Clarke A, Bacic A, Nothnagel E, eds. Cell and development biology of arabinogalactan proteins. Kluwer Academic Plenum Publishers: 133-148.
  • Dickinson HG, Elleman CJ, Doughty J, 2000. Pollen coatings-chimaeric genetics and new functions. Sex Plant Reprod 12: 302-309.
  • Doughty J, Dixon S, Hiscock SJ, Willis AC, Parkin IAP, Dickinson HG, 1998. PCP-A1, a defensin-like Brassica pollen coat protein that binds the S locus glycoprotein, is the product of gametophytic gene expression. Plant Cell 10: 1333-1347.
  • Doughty J, Hendderson F, McCubbin A, Dickinson H, 1993. Interaction between a coating-borne peptide of the Brassica pollen grain and stigmatic S (self-incompatibility)-locus-specific glycoproteins. Proc Natl Acad Sci USA 90: 467-471.
  • Edelhoch H, Hayaishi O, Teply L, 1952. The preparation and properties of a soluble diphosphopyridine nucleotide cytochrome C reductase. J Biol Chem 197: 97-101.
  • Frazao C, Bento I, Costa J, Soares CM, Verissimo P, Faro C, et al. 1999. Crystal structure of cardosin A, a glycosylated and arg-asp-containing aspartic proteinase from flowers of Cynara cardunculus L. J Biol Chem 274: 27694-27701.
  • Heslop-Harrison J, 1971. Pollen enzymes and isoenzymes. In: Heslop-Harrison J, ed. Pollen development and physiology. Butterworth, London: 156-274.
  • Heslop-Harrison J, 1982. Pollen stigma interaction and cross-incompatibility in the grasses. Science 215: 1358-1364.
  • Heukeshoven J, Dernick R, 1985. Simplified method for silver staining of proteins in polyacrylamide gels and the mechanism of silver staining. Electrophoresis 6: 103-112.
  • Hiscock SJ, Bown D, Gurr SJ, Dickinson HG, 2002. Serine esterases are required for pollen tube penetration of the stigma in Brassica. Sex Plant Reprod 15: 65-74.
  • Hiscock SJ, Dewey FM, Coleman JOD, Dickinson HG, 1994. Identification and localization of an active cutinase in the pollen of Brassica napus L. Planta 193: 377-384.
  • Hochstrasser DF, Harrington MG, Hochstrasser AC, Miller MJ, Merril CR, 1988. Methods for increasing the resolution of two-dimensional protein electrophoresis. Anal Biochem 73: 424-435.
  • Hurkman WJ, Tanaka CK, 1986. Solubilization of plant membrane proteins for analysis by two-dimensional gel electrophoresis. Plant Physiol 81: 802-806.
  • Kalinowski A, Bocian A, Borzyszkowska E, 2004. Wpływ eluatu płaszcza pyłku na białka znamion u samozgodnych I samoniezgodnych roślin Festuca pratensis Huds. [Influence of pollen coat eluate on stigma proteins of self-compatible and self -incompatible plants of Festuca pretensis Huds.] In: Krajewski P, Zwierzykowski Z, Kachlicki P, eds. Genetyka w ulepszaniu roślin użytkowych. [Genetics in crop plant improvement]. In Polish with English summary. Rozprawy i Monografie IGR PAN: 171-178.
  • Kalinowski A, Radłowski M, Bartkowiak S, 2002. Maize pollen enzymes after two-dimensional gel electrophoresis in presence or absence of sodium dodecyl sulfate. Electrophoresis 23: 138-143.
  • Kalinowski A, Radłowski M, Borzyszkowska E, 2001. Stigma proteins of Festuca pratensis Huds. (in Polish with English summary). Zesz Probl Post Nauk Rol 474: 55-65.
  • Kalinowski A, Radłowski M, Borzyszkowska Е, 2005. Enzymes of pollen and stigmas in self-incompatible and self-compatible individuals of Lolium multiflorum cv. Abercomo. In: Zwierzykowski Z, Kosmala A, eds. Recent advances in genetics and breeding of the grasses. Institute of Plant Genetics, Polish Academy of Science, Poznań: 105-112.
  • Kalinowski A, Radłowski M, Zwierzykowski Z, Bartkowiak S, 1997. Stigma proteins of Italian ryegrass, (in Polish with English summary). Zesz Probl Post Nauk Rol 451:41-47.
  • Knox RB, 1984. Pollen-pistil interaction. In: Linskens HF, Heslop-Harrison J, eds. Cellular Interactions. Encyclopedia of plant physiology, Vol. 17. Springer-Verlag, Berlin: 508-608.
  • Knox RB, Clarke AE, Harrison S, Smith P, Marchalonis JJ, 1976. Cell recognition in plants: determinants of the stigma surface and their pollen interactions. Proc Natl Acad Sci USA 73: 2788-2792.
  • Linskens HF, 1973. The reaction of inhibition during incompatible pollination and its elimination. Sov Plant Physiol 20: 156-166.
  • Linskens HF, 1976. Specific interactions in higher plants. In: Wood RKS, Graniti A, eds. Specificity in plant diseases. Plenum, New York, London: 311.
  • Matheson N, Schmidt J, Travis J, 1995. Isolation and properties of an angiotensin II-cleaving peptidase from mesquite pollen. Am J Respir Cell Mol. Biol. 12: 441-448.
  • Mattson O, Knox RB, Heslop-Harrison J, Heslop-Harrison Y, 1974. Protein pellicle of stigmatic papillae as a probable recognition site in the incompatibility reaction. Nature 247: 298-300.
  • Michaud D, Faye L, Yelle S, 1993. Electrophoretic analysis of plant cysteine and serine proteinases using gelatin-containing polyacrylamide gels and class-specific proteinase inhibitors. Electrophoresis 14: 94-98.
  • Mulcahy DL, Robinson RW, Ihara M, Kesseli R, 1981. Gametophytic transcription for acid phosphatases in pollen of Cucurbita species hybrids. J Hered 72: 353-354.
  • Nasrallah JB, 1997. Evolution of the Brassica self-incompatibility locus: a look into S-gene polymorphism. Proc Natl Acad Sci USA 94: 9516-9511.
  • Nasrallah JB, Stein JC, Kandasamy MK, Nasrallah MJ, 1994. Signaling the arrest of the pollen tube development in self-incompatible plants. Science 226: 1505-1508.
  • del Pozzo JC, Allona I, Rubio V, de la Pena A, Aragoncillo C, Paz-Ares J, 1999. A type 5 acid phosphatase gene from Arabidopsis thaliana is induced by phosphate starvation and by some other types of phosphate mobilizing/oxidative stress conditions. Plant J 19: 579-589.
  • Radłowski M, Kalinowski A, Adamczyk J, Królikowski Z, Bartkowiak S, 1996. Proteolytic activity in the maize pollen wall. Phytochemistry 35: 853-856.
  • Roggen HPJR, Stanley RG, 1969. Cell-wall-hydrolyzing enzymes in wall formation as measured by pollen-tube extension. Planta 84: 295-303.
  • Stanley RG, Linskens HF, 1985. Aminosäuren und Proteine. In: Stanley RG, Linskens HF, eds. Pollen Biologie, Biochemie, Gewinung und Verwendung. Freund, Greifenberg: 182-183.
  • Stephenson AG, Doughty J, Dixon S, Elleman C, Hiscock SJ, Dickinson HG, 1997. The male determinant of self-incompatibility in Brassica oleracea is located in the pollen coating. Plant J 12: 1351-1359.
  • Tan LW, Jackson JF, 1988. Stigma proteins of the two loci in self-incompatible grass Phalaris coerulescens L. Sex Plant Reprod 1: 25-27.
  • Twining SS, 1984. Fluorescein isothiocyanate-labelled casein assay for proteolytic enzymes. Anal Biochem 143: 3-34.
  • Zannis VI, Breslow JL, 1981. Human very low density lipoprotein apolipoprotein E isoprotein polymorphism is explained by genetic variation and posttranslational modification. J Am Chem Soc 20: 1033-1041.
  • Zinkl GM, Preuss D, 2000. Dissecting Arabidopsis pollen-stigma interactions reveals novel mechanisms that confer mating specificity. Ann Bot 85: 15-21.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-d55b1d7a-76ad-4c55-a446-b2e0d34900b6
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.