Buttner M (2010) The Arabidopsis sugar transporter (AtSTP) family: an update. Plant Biol (Stuttg) 12(Suppl):35–41
Article
Google Scholar
Ehlers K, Kollmann R (2000) Synchronization of mitotic activity in protoplast-derived Solanum nigrum L. microcalluses is correlated with plasmodesmal connectivity. Planta 210:269–278
CAS
Article
PubMed
Google Scholar
Esau K (1977) The flower: structure and development. In: Anatomy of seed plants. Wiley, New York, pp 375–401
Feuerstein A, Niedermeier M, Bauer K, Engelmann S, Hoth S, Stadler R, Sauer N (2010) Expression of the AtSUC1 gene in the female gametophyte and ecotype-specific expression differences in male reproductive organs. Plant Biol (Stuttg) 12:105–114
CAS
Article
Google Scholar
Gamalei Y (1989) Structure and function of leaf minor veins in trees and herbs. Trees 3:96–110
Article
Google Scholar
Gisel A, Barella S, Hempel FD, Zambryski PC (1999) Temporal and spatial regulation of symplastic trafficking during development in Arabidopsis thaliana apices. Development 126:1879–1889
CAS
PubMed
Google Scholar
Gisel A, Hempel FD, Barella S, Zambryski P (2002) Leaf-to-shoot apex movement of symplastic tracer is restricted coincident with flowering in Arabidopsis. Proc Natl Acad Sci USA 99:1713–1717
CAS
Article
PubMed
Google Scholar
Godt D, Roitsch T (2006) The developmental and organ specific expression of sucrose cleaving enzymes in sugar beet suggests a transition between apoplasmic and symplasmic phloem unloading in the tap roots. Plant Physiol Biochem 44:656–665
CAS
Article
PubMed
Google Scholar
Hill JP, Lord EM (1994) Wild-type flower development: gynoecial initiation. In: Bowman JL (ed) Arabidopsis: an atlas of morphology and development. Springer, New York, pp 158–159
Google Scholar
Hofius D, Herbers K, Melzer M, Omid A, Tacke E, Wolf S, Sonnewald U (2001) Evidence for expression level-dependent modulation of carbohydrate status and viral resistance by the potato leafroll virus movement protein in transgenic tobacco plants. Plant J 28:529–543
CAS
Article
PubMed
Google Scholar
Hoth S, Schneidereit A, Lauterbach C, Scholz-Starke J, Sauer N (2005) Nematode infection triggers the de novo formation of unloading phloem that allows macromolecular trafficking of green fluorescent protein into syncytia. Plant Physiol 138:383–392
CAS
Article
PubMed
Google Scholar
Huck N, Moore JM, Federer M, Grossniklaus U (2003) The Arabidopsis mutant feronia disrupts the female gametophytic control of pollen tube reception. Development 130:2149–2159
CAS
Article
PubMed
Google Scholar
Imlau A, Truernit E, Sauer N (1999) Cell-to-cell and long-distance trafficking of the green fluorescent protein in the phloem and symplastic unloading of the protein into sink tissues. Plant Cell 11:309–322
CAS
Article
PubMed
Google Scholar
Meyer S, Lauterbach C, Niedermeier M, Barth I, Sjolund RD, Sauer N (2004) Wounding enhances expression of AtSUC3, a sucrose transporter from Arabidopsis sieve elements and sink tissues. Plant Physiol 134:684–693
CAS
Article
PubMed
Google Scholar
Nie P, Wang X, Hu L, Zhang H, Zhang J, Zhang Z, Zhang L (2010) The predominance of the apoplasmic phloem-unloading pathway is interrupted by a symplasmic pathway during Chinese jujube fruit development. Plant Cell Physiol 51:1007–1018
CAS
Article
PubMed
Google Scholar
Okada K, Komaki MK, Shimura Y (1989) Mutational analysis of pistil structure and development of Arabidopsis thaliana. Cell Differ Dev 28:27–38
CAS
Article
PubMed
Google Scholar
Oparka KJ (1990) What is phloem unloading? Plant Physiol 94:393–396
CAS
Article
PubMed
Google Scholar
Oparka KJ, Roberts AG, Boevink P, Santa Cruz S, Roberts I, Pradel KS, Imlau A, Kotlizky G, Sauer N, Epel B (1999) Simple, but not branched, plasmodesmata allow the nonspecific trafficking of proteins in developing tobacco leaves. Cell 97:743–754
CAS
Article
PubMed
Google Scholar
Patrick JW (1997) Phloem unloading: sieve element unloading and post-sieve element transport. Annu Rev Plant Physiol Plant Mol Biol 48:191–222
CAS
Article
PubMed
Google Scholar
Regan SM, Moffatt BA (1990) Cytochemical analysis of pollen development in wild-type Arabidopsis and a male-sterile mutant. Plant Cell 2:877–889
CAS
Article
PubMed
Google Scholar
Robinson-Beers K, Pruitt RE, Gasser CS (1992) Ovule development in wild-type Arabidopsis and two female-sterile mutants. Plant Cell 4:1237–1249
Article
PubMed
Google Scholar
Ruan YL, Chourey PS, Delmer DP, Perez-Grau L (1997) The differential expression of sucrose synthase in relation to diverse patterns of carbon partitioning in developing cotton seed. Plant Physiol 115:375–385
CAS
PubMed
Google Scholar
Schneitz K, Hülskamp M, Pruitt RE (1995) Wild-type ovule development in Arabidopsis thaliana: a light microscope study of cleared whole-mount tissue. Plant J 7:731–749
Article
Google Scholar
Schulz A (2005) Role of plasmodesmata in solute loading and unloading. In: Oparka K (ed) plasmodesmata. Blackwell, Oxford, pp 135–161
Chapter
Google Scholar
Smyth DR, Bowman JL, Meyerowitz EM (1990) Early flower development in Arabidopsis. Plant Cell 2:755–767
CAS
Article
PubMed
Google Scholar
Stadler R, Sauer N (1996) The Arabidopsis thaliana AtSUC2 gene is specifically expressed in companion cells. Bot Acta 109:299–306
CAS
Google Scholar
Stadler R, Lauterbach C, Sauer N (2005a) Cell-to-cell movement of green fluorescent protein reveals post-phloem transport in the outer integument and identifies symplastic domains in Arabidopsis seeds and embryos. Plant Physiol 139:701–712
CAS
Article
Google Scholar
Stadler R, Wright KM, Lauterbach C, Amon G, Gahrtz M, Feuerstein A, Oparka KJ, Sauer N (2005b) Expression of GFP-fusions in Arabidopsis companion cells reveals non-specific protein trafficking into sieve elements and identifies a novel post-phloem domain in roots. Plant J 41:319–331
CAS
Article
Google Scholar
Truernit E, Sauer N (1995) The promoter of the Arabidopsis thaliana SUC2 sucrose-H+ symporter gene directs expression of beta-glucuronidase to the phloem: evidence for phloem loading and unloading by SUC2. Planta 196:564–570
CAS
Article
PubMed
Google Scholar
Truernit E, Bauby H, Dubreucq B, Grandjean O, Runions J, Barthelemy J, Palauqui JC (2008) High-resolution whole-mount imaging of three-dimensional tissue organization and gene expression enables the study of phloem development and structure in Arabidopsis. Plant Cell 20:1494–1503
CAS
Article
PubMed
Google Scholar
Turgeon R, Gowan E (1990) Phloem loading in Coleus blumei in the absence of carrier-mediated uptake of export sugar from the apoplast. Plant Physiol 94:1244–1249
CAS
Article
PubMed
Google Scholar
Turgeon R, Medville R (2004) Phloem loading. A reevaluation of the relationship between plasmodesmatal frequencies and loading strategies. Plant Physiol 136:3795–3803
CAS
Article
PubMed
Google Scholar
Van Dongen JT, Ammerlaan AM, Wouterlood M, Van Aelst AC, Borstlap AC (2003) Structure of the developing pea seed coat and the post-phloem transport pathway of nutrients. Ann Bot (Lond) 91:729–737
Article
Google Scholar
Viola R, Roberts AG, Haupt S, Gazzani S, Hancock RD, Marmiroli N, Machray GC, Oparka KJ (2001) Tuberization in potato involves a switch from apoplastic to symplastic phloem unloading. Plant Cell 13:385–398
CAS
Article
PubMed
Google Scholar
Vogel F, Hofius D, Sonnewald U (2007) Intracellular trafficking of potato leafroll virus movement protein in transgenic Arabidopsis. Traffic 8:1205–1214
CAS
Article
PubMed
Google Scholar
Voitsekhovskaja OV, Rudashevskaya EL, Demchenko KN, Pakhomova MV, Batashev DR, Gamalei YV, Lohaus G, Pawlowski K (2009) Evidence for functional heterogeneity of sieve element–companion cell complexes in minor vein phloem of Alonsoa meridionalis. J Exp Bot 60:1873–1883
CAS
Article
PubMed
Google Scholar
Wang N, Fisher DB (1994) The use of fluorescent tracers to characterize the post-phloem transport pathway in maternal tissues of developing wheat grains. Plant Physiol 104:17–27
CAS
PubMed
Google Scholar
Wright KM, Oparka KJ (1996) The fluorescent probe HPTS as a phloem-mobile, symplastic tracer: an evaluation using confocal laser scanning microscopy. J Exp Bot 47:439–445
CAS
Article
Google Scholar
Wu GL, Zhang XY, Zhang LY, Pan QH, Shen YY, Zhang DP (2004) Phloem unloading in developing walnut fruit is symplasmic in the seed pericarp and apoplasmic in the fleshy pericarp. Plant Cell Physiol 45:1461–1470
CAS
Article
PubMed
Google Scholar
Zhang LY, Peng YB, Pelleschi-Travier S, Fan Y, Lu YF, Lu YM, Gao XP, Shen YY, Delrot S, Zhang DP (2004) Evidence for apoplasmic phloem unloading in developing apple fruit. Plant Physiol 135:574–586
CAS
Article
PubMed
Google Scholar
Zhang XY, Wang XL, Wang XF, Xia GH, Pan QH, Fan RC, Wu FQ, Yu XC, Zhang DP (2006) A shift of phloem unloading from symplasmic to apoplasmic pathway is involved in developmental onset of ripening in grape berry. Plant Physiol 142:220–232
CAS
Article
PubMed
Google Scholar