27.10.2014 Views

Pollen and Stigma Structure and Function: The Role of Diversity in ...

Pollen and Stigma Structure and Function: The Role of Diversity in ...

Pollen and Stigma Structure and Function: The Role of Diversity in ...

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

<strong>Pollen</strong> <strong>and</strong> <strong>Stigma</strong> <strong>Structure</strong> <strong>and</strong> <strong>Function</strong><br />

S97<br />

Roulston, T.H., <strong>and</strong> Cane, J.H. (2000). <strong>Pollen</strong> nutritional content <strong>and</strong><br />

digestibility for animals. Plant Syst. Evol. 222, 187–209.<br />

Rowley, J.R., Muhlethaler, K., <strong>and</strong> Frey-Wyssl<strong>in</strong>g, A. (1959). A route<br />

for the transfer <strong>of</strong> materials through the pollen gra<strong>in</strong> wall. J. Biophys.<br />

Biochem. Cytol. 6, 537–538.<br />

Rowley, J.R., Skvarla, J.J., <strong>and</strong> Chissoe, W.F. (1997). Ex<strong>in</strong>e,<br />

onciform zone <strong>and</strong> <strong>in</strong>t<strong>in</strong>e structure <strong>in</strong> Ravenala <strong>and</strong> Phenakospermum<br />

<strong>and</strong> early wall development <strong>in</strong> Strelitzia <strong>and</strong> Phenakospermum<br />

(Strelitziaceae) based on aborted microspores. Rev. Palaeobot.<br />

Palynol. 98, 293–301.<br />

Rowley, J.R., Skvarla, J.J., <strong>and</strong> Walles, B. (2000). Microsporogenesis<br />

<strong>in</strong> P<strong>in</strong>us sylvestris. VI. Ex<strong>in</strong>e <strong>and</strong> tapetal development dur<strong>in</strong>g the tetrad<br />

period. Nord. J. Bot. 20, 67–87.<br />

Ruiter, R.K., Mettenmeyer, T., Van Laarhoven, D., Van Eldik, G.J.,<br />

Doughty, J., Van Herpen, M.M.A., Schrauwen, J.A.M., Dick<strong>in</strong>son,<br />

H.G., <strong>and</strong> Wullems, G.J. (1997). Prote<strong>in</strong>s <strong>of</strong> the pollen coat <strong>of</strong><br />

Brassica oleracea. J. Plant Physiol. 150, 85–91.<br />

Ryan, E., Grierson, C., Cavell, A., Steer, M., <strong>and</strong> Dolan, L. (1998). TIP1<br />

is required for both tip growth <strong>and</strong> non-tip growth <strong>in</strong> Arabidopsis. New<br />

Phytol. 138, 49–58.<br />

Sarker, R.H., Elleman, C.J., <strong>and</strong> Dick<strong>in</strong>son, H.G. (1988). Control <strong>of</strong><br />

pollen hydration <strong>in</strong> Brassica requires cont<strong>in</strong>ued prote<strong>in</strong>-synthesis, <strong>and</strong><br />

glycosylation is necessary for <strong>in</strong>traspecific <strong>in</strong>compatibility. Proc. Natl.<br />

Acad. Sci. USA 85, 4340–4344.<br />

Schmid, A.-M., Eberwe<strong>in</strong>, R.K., <strong>and</strong> Hesse, M. (1996). Pattern<br />

morphogenesis <strong>in</strong> cell walls <strong>of</strong> diatoms <strong>and</strong> pollen gra<strong>in</strong>s: A comparison.<br />

Protoplasma 193, 144–173.<br />

Shaykh, M., Kolattukudy, P., <strong>and</strong> Davis, R. (1977). Production <strong>of</strong><br />

a novel extracellular cut<strong>in</strong>ase by the pollen <strong>and</strong> chemical composition<br />

<strong>and</strong> ultrastructure <strong>of</strong> the stigma cuticle <strong>of</strong> Nasturtium. Plant Physiol.<br />

60, 907–915.<br />

Sheldon, J.M., <strong>and</strong> Dick<strong>in</strong>son, H.G. (1983). Determ<strong>in</strong>ation <strong>of</strong> pattern<strong>in</strong>g<br />

<strong>in</strong> the pollen wall <strong>of</strong> Lilium henryi. J. Cell Sci. 63, 191–208.<br />

Silva, N.F., <strong>and</strong> Gor<strong>in</strong>g, D.R. (2001). Mechanisms <strong>of</strong> self-<strong>in</strong>compatibility<br />

<strong>in</strong> flower<strong>in</strong>g plants. Cell. Mol. Life Sci. 58, 1988–2007.<br />

Skvarla, J.J., Raven, P.H., Chissoe, W.F., <strong>and</strong> Sharp, M. (1978). An<br />

ultrastructural study <strong>of</strong> visc<strong>in</strong> threads <strong>in</strong> Onagraceae pollen. <strong>Pollen</strong><br />

Spores 20, 5–143.<br />

Spielman, M., Preuss, D., Li, F.L., Browne, W.E., Scott, R.J., <strong>and</strong><br />

Dick<strong>in</strong>son, H.G. (1997). TETRASPORE is required for male meiotic<br />

cytok<strong>in</strong>esis <strong>in</strong> Arabidopsis thaliana. Development 124, 2645–2657.<br />

Stead, A.D., Roberts, I.N., <strong>and</strong> Dick<strong>in</strong>son, H.G. (1979). <strong>Pollen</strong>-pistil<br />

<strong>in</strong>teraction <strong>in</strong> Brassica oleracea. Planta 146, 211–216.<br />

Szibor, R., Schubert, C., Schon<strong>in</strong>g, R., Krause, D., <strong>and</strong> Wendt, U.<br />

(1998). <strong>Pollen</strong> analysis reveals murder season. Nature 395, 449–450.<br />

Takahashi, M., <strong>and</strong> Skvarla, J.J. (1991). Ex<strong>in</strong>e pattern formation by<br />

plasma membrane <strong>in</strong> Bouga<strong>in</strong>villea spectabilis (Nyctag<strong>in</strong>aceae). Am.<br />

J. Bot. 78, 1063–1069.<br />

Takayama, S., Shiba, H., Iwano, M., Asano, K., Hara, M., Che, F.S.,<br />

Watanabe, M., H<strong>in</strong>ata, K., <strong>and</strong> Isogai, A. (2000). Isolation <strong>and</strong><br />

characterization <strong>of</strong> pollen coat prote<strong>in</strong>s <strong>of</strong> Brassica campestris that<br />

<strong>in</strong>teract with S locus-related glycoprote<strong>in</strong> 1 <strong>in</strong>volved <strong>in</strong> pollen-stigma<br />

adhesion. Proc. Natl. Acad. Sci. USA 97, 3765–3770.<br />

Tang, W., Ezcura, I., Muschietti, J., <strong>and</strong> McCormick, S. (2002). A<br />

cyste<strong>in</strong>e-rich extracellular prote<strong>in</strong>, LAT52, <strong>in</strong>teracts with the extracellular<br />

doma<strong>in</strong> <strong>of</strong> the pollen receptor k<strong>in</strong>ase LePRK2. Plant Cell 14,<br />

2277–2287.<br />

Thorsness, M.K., K<strong>and</strong>asamy, M.K., Nasrallah, M.E., <strong>and</strong> Nasrallah,<br />

J.B. (1993). Genetic ablation <strong>of</strong> floral cells <strong>in</strong> Arabidopsis. Plant Cell 5,<br />

253–261.<br />

Tiwari, S.C., <strong>and</strong> Polito, V.S. (1988). Organization <strong>of</strong> the cytoskeleton <strong>in</strong><br />

pollen tubes <strong>of</strong> Pyrus communis: A study employ<strong>in</strong>g conventional <strong>and</strong><br />

freeze-substitution electron microscopy, immun<strong>of</strong>luorescence <strong>and</strong><br />

rhodam<strong>in</strong>e-phalloid<strong>in</strong>. Protoplasma 147, 100–112.<br />

Twell, D., Park, S.K., <strong>and</strong> Lalanne, E. (1998). Asymmetric division<br />

<strong>and</strong> cell-fate determ<strong>in</strong>ation <strong>in</strong> develop<strong>in</strong>g pollen. Trends Plant Sci. 3,<br />

305–310.<br />

Wheeler, M.J., Frankl<strong>in</strong>-Tong, V.E., <strong>and</strong> Frankl<strong>in</strong>, F.C.H. (2001). <strong>The</strong><br />

molecular <strong>and</strong> genetic basis <strong>of</strong> pollen-pistil <strong>in</strong>teractions. New Phytol.<br />

151, 565–584.<br />

Wolters-Arts, M., Lush, W.M., <strong>and</strong> Mariani, C. (1998). Lipids<br />

are required for directional pollen-tube growth. Nature 392,<br />

818–821.<br />

Wolters-Arts, M., Van Der Weerd, L., Van Aelst, A.C., Van As, H., <strong>and</strong><br />

Mariani, C. (2002). Water-conduct<strong>in</strong>g properties <strong>of</strong> lipids dur<strong>in</strong>g<br />

pollen hydration. Plant Cell Environ. 25, 513–519.<br />

Wu, G., Gu, Y., Li, S., <strong>and</strong> Yang, Z. (2001). A genome-wide analysis <strong>of</strong><br />

Arabidopsis Rop-<strong>in</strong>teractive CRIB motif–conta<strong>in</strong><strong>in</strong>g prote<strong>in</strong>s that act<br />

as Rop GTPase targets. Plant Cell 13, 2841–2856.<br />

Wu, Y.Z., Qiu, X., Du, S., <strong>and</strong> Erickson, L. (1996). PO149, a new<br />

member <strong>of</strong> pollen pectate lyase-like gene family from alfalfa. Plant<br />

Mol. Biol. 32, 1037–1042.<br />

Wunnachit, W., Jenner, C., <strong>and</strong> Sedgley, M. (1992). <strong>Pollen</strong> vigor <strong>and</strong><br />

composition <strong>in</strong> relation to <strong>and</strong>romonoecy <strong>in</strong> cashew. Sex. Plant<br />

Reprod. 5, 264–269.<br />

Yang, C.Y., Spielman, M., Coles, J.P., Li, Y., Ghelani, S., Bourdon, V.,<br />

Brown, R.C., Lemmon, B.E., Scott, R.J., <strong>and</strong> Dick<strong>in</strong>son, H.G.<br />

(2003). TETRASPORE encodes a k<strong>in</strong>es<strong>in</strong> required for male meiotic<br />

cytok<strong>in</strong>esis <strong>in</strong> Arabidopsis. Plant J. 34, 229–240.<br />

Yang, W.C., <strong>and</strong> Sundaresan, V. (2000). Genetics <strong>of</strong> gametophytic<br />

biogenesis <strong>in</strong> Arabidopsis. Curr. Op<strong>in</strong>. Plant Biol. 3, 53–57.<br />

Z<strong>in</strong>kl, G.M., <strong>and</strong> Preuss, D. (2000). Dissect<strong>in</strong>g Arabidopsis pollenstigma<br />

<strong>in</strong>teractions reveals novel mechanisms that confer mat<strong>in</strong>g<br />

specificity. Ann. Bot. 85, 15–21.<br />

Z<strong>in</strong>kl, G.M., Zwiebel, B.I., Grier, D.G., <strong>and</strong> Preuss, D. (1999). <strong>Pollen</strong>stigma<br />

adhesion <strong>in</strong> Arabidopsis: A species-specific <strong>in</strong>teraction<br />

mediated by lipophilic molecules <strong>in</strong> the pollen ex<strong>in</strong>e. Development<br />

126, 5431–5440.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!