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The clonal origin of the lateral meristem generating the ear shoot of maize

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Abstract

The ear shoot of maize (Zea mays L.) consists of the peduncle and reproductive tissues (ear). Genetic mosaics induced by the unstable allele of thech1 locus were used for cell lineage analysis of the ear shoot. The unstablech1-m1 allele, caused by the insertion of a transposable element, gives rise to yellow-green seedlings with many small revertant green stripes. Rare plants with large revertant sectors comprising 30–50% of the plant were selected. Nineteen plants showing large sectors on the main stem were subjected to sector boundary analysis. Sectoring was recorded for the main stem, leaf subtending the ear shoot, peduncle, prophyll and ear. The reproductive part of the ear shoot, the ear, was scored after removal of the husks and subsequent exposure to light. In 18 cases the ear was non-sectored yellow-green or green. In an additional four cases, peduncle cell lineages entered the ear, but only in the proximal part, while the tip of the ear was non-sectored. Two additional ears showed longitudinal sectors which reached the tip of the ear. These observations indicate that in the lateral meristem of the ear shoot two types of cellular clone exist. One will generate the peduncle, the other will found the ear. Sector boundary analysis indicates that for the vegetative part of the ear shoot the number of meristem founder cells is high, whereas only a few initials are recruited for the formation of the ear. The presence of ear sectors not starting in the peduncle and reaching the ear tip, and the finding that the ear is frequently non-sectored, suggest that this organ derives from an apical type of growth.

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References

  • Behrens U, Fedoroff N, Laird A, Müller-Neumann M, Starlinger P, Yoder J (1984) Cloning of theZea mays controlling element Ac from thewx-m7 allele. Mol Gen Genet 194: 346–347

    Google Scholar 

  • Bossinger G, Maddaloni M, Motto M, Salamini F (1992) Formation and cell lineage patterns of the shoot apex of maize. Plant J 2: 311–320

    Google Scholar 

  • Broertjes C, Keen A (1980). Adventitious shoots: do they develop from one cell? Euphytica 29: 73–87

    Google Scholar 

  • Buvat R (1952) Structure evolution et fonctionement du méristème apical de quelques dicotylédones. Ann Sci Nat Bot Biol Veg 13: 202–203

    Google Scholar 

  • Cerioli S, Marocco A, Maddaloni M, Motto M, Salamini F (1994) Early event in maize leaf epidermis formation as revealed by cell lineage studies. Development 120: 2113–2120

    Google Scholar 

  • Christianson ML (1986). Fate map of the organizing shoot apex in Gossypium. Am J Bot 73: 947–958

    Google Scholar 

  • Coe EH Jr, Neuffer MG (1978) Embryo cells and their destinies in the corn plant. In: Subtelny S, Sussex IM (eds) The clonal basis of development. Academy Press, New York, pp 113–129

    Google Scholar 

  • Coe EH Jr, Poethig RS (1983) Evidence bearing on the orientation of the first division of the zygote. Maize Genet Coop Newsl 57: 34

    Google Scholar 

  • Dahlgreen RMT, Clifford HT, Yee, PF (1985) The families of the monocotyledons. Structure, evolution and taxonomy. Springer, Berlin Heidelberg New York

    Google Scholar 

  • Dawe RK, Freeling M (1991) Cell lineage and its consequences in higher plants. Plant J 1: 3–8

    Google Scholar 

  • Dellaporta SL, Moreno MA, Delong A (1991) Cell lineage analysis of the gynoecium of maize using the transposable elementAc. Development Suppl 1: 141–147

    Google Scholar 

  • Freeling M (1992) A conceptual framework of maize leaf development. Dev Biol 153: 44–58

    PubMed  Google Scholar 

  • Garcia-Bellido A, Ripoll P, Morata G (1973) Developmental compartmentalization of the wing disc ofDrosophila. Nature 245: 251–253

    Google Scholar 

  • Gifford EN Jr (1954) The shoot apex in angiosperms. Bot Rev 20: 477–529

    Google Scholar 

  • Gray A (1879) Structural botany. Iveson, Blakeman and Co., New York

    Google Scholar 

  • Jackson D, Veit B, Hake S (1994) Expression of maizeKnotted-1 related homeobox genes in the shoot apical meristem predicts patterns of morphogenesis in the vegetative shoot. Development 120: 405–413

    Google Scholar 

  • Johri MM, Coe EH (1983) Clonal analysis of corn plant development. I. The development of the tassel and the ear shoot. Dev Biol 97: 154–172

    PubMed  Google Scholar 

  • Klekowski EJ Jr (1988) Mutation, developmental selection, and plant evolution. Columbia University Press, New York

    Google Scholar 

  • McClintock B (1954) Mutations in maize and chromosomal aberrations inNeurospora. Carnegie Inst Washington Yearb 53: 254–260

    Google Scholar 

  • McClintock B (1955) Controlled mutation in maize. Carnegie Inst Washington Yearb 54: 245–255

    Google Scholar 

  • McClintock B (1962) Topographical relations between elements of control systems in maize. Carnegie Inst Washington Yearb 61: 448–461

    Google Scholar 

  • McClintock B (1964) Aspects of gene regulation in maize. Carnegie Inst Washington Yearb 63: 592–603

    Google Scholar 

  • Michel D, Hartings H, Lanzini S, Michel M, Motto M, Riboldi GR, Salamini F, Döring H-P (1995) Insertion mutations at the maizeOpaque2 locus induced by transposable element familiesAc, En/Spm andBg. Mol Gen Genet 248: 287–292

    PubMed  Google Scholar 

  • Müller KJ, Romano N, Gerstner O, Garcia-Maroto F, Pozzi C, Salamini F, Rohde W (1995) The barley Hooded mutation caused by a duplication in a homeobox gene intron. Nature 374: 727–730

    PubMed  Google Scholar 

  • Peterson PA (1953) A mutable pale green locus in maize. Genetics 38: 682–683

    Google Scholar 

  • Plantefol L (1947) Hélice foliare, point végétatif et stéle chez les dicotylédones. La notion d'anneau initial. Rev Gen Bot 54: 49–80

    Google Scholar 

  • Poethig RS, Coe EH, Johri MM (1986) Cell lineage pattern in maize embryogenesis: a clonal analysis. Dev Biol 117: 392–404

    Google Scholar 

  • Poethig RS, Szymkowiak EJ (1995) Clonal analysis of leaf development in maize. Maydica 40: 67–76

    Google Scholar 

  • Scheres B, Wolkenfelt H, Willemsen V, Terlouw M, Lawson E, Dean C, Weisbeek P (1994) Embryonic origin of theArabidopsis primary root and root meristem initials. Development 120: 2475–2487

    Google Scholar 

  • Sharman BC (1942) Developmental anatomy of the shoot ofZea mays L. Ann Bot NS 6: 245–282

    Google Scholar 

  • Sharman BC (1945) Leaf and bud initiation in the Gramineae. Bot Gaz 106: 269–289

    Google Scholar 

  • Spena A, Salamini F (1995) Genetic tagging of cells and cell layers for studies of plant development. Methods Cell Biol 49: 327–350

    Google Scholar 

  • Steeves TA, Sussex IM (1989) Patterns in plant development. Cambridge University Press, Cambridge, New York New Rochelle

    Google Scholar 

  • Steffensen DM (1962a) Proembryo irradiation to produce blue fluorescent and albino seedlings. Maize Genet Coop Newsl 36: 23–24

    Google Scholar 

  • Steffensen DM (1962b) Patterns of sectoring in seedling with reference to early embryonic development. Maize Genet Coop Newsl 36: 24

    Google Scholar 

  • Steffensen DM (1968) A reconstruction of cell development in the shoot apex of maize. Am J Bot 55: 354–369

    Google Scholar 

  • Sturtevant AH (1929) The claret mutant type ofDrosophila simulans. A study of chromosome elimination and cell lineage. Z Wiss Zool 135: 323–356

    Google Scholar 

  • Tacke E, Korfhage C, Michel D, Maddaloni M, Motto M, Lanzini S, Salamini F, Döring H-P (1995) Transposon tagging of the maizeGlossy2 locus with the transposable elementEn/Spm. Plant J 8: 907–917

    PubMed  Google Scholar 

  • Walbot V, Thompson D, Coe EH Jr (1979) Meristem functions during maize development. Proc. Annu Corn Sorghum Res Conf 34: 92–103

    Google Scholar 

  • Walbot V, Thompson D, Coe EH Jr, Johri MM (1982) Analysis of development in Zea mays using somatic variability in gene expression. In: Earle ED, Demarly Y (eds) Variability in plants regenerated from tissue culture. Praeger, New York pp 148–159

    Google Scholar 

  • Weberling F (1981) Morphology of flowers and inflorescences. Cambridge University Press, Cambridge

    Google Scholar 

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Correspondence to Francesco Salamini.

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Uhrig, H., Marocco, A., Döring, HP. et al. The clonal origin of the lateral meristem generating the ear shoot of maize. Planta 201, 9–17 (1997). https://doi.org/10.1007/BF01258675

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  • DOI: https://doi.org/10.1007/BF01258675

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