Effects of fruit set sequence and defoliation on cell number, cell size and hormone levels of tomato fruits (Lycopersicon esculentum Mill.) within a truss

Plant Growth Regulation - Tập 7 Số 3 - Trang 141-155 - 1988
J. Bohner1, F. Bangerth2
1Schering AG, Pflanzenschutz forschung, Gollanczstr. 57-101, D-1000, Berlin 28
2Institut für Obst-, Gemüse- und Weinbau (370), Universität Hohenheim, Stuttgart 70, BRD

Tóm tắt

Từ khóa


Tài liệu tham khảo

Abdel-Rahman M, Thomas TH, Doss GJ and Howell L (1975) Changes in endogenous plant hormones in cherry tomato fruits during development and maturation. Physiol Plant 34: 39–43

Bangerth F (1964) Zytogenetische Untersuchungen über die Wirkung von Neutronen-, Beta-, Gamma-, Röntgenstrahlen und Äthylenimin auf Tomatenpflanzen (Lycopersicon esculentum Mill.). PhD Thesis, University Hohenheim

Bangerth F (1981) Some effects of endogenous and exogenous hormones and growth regulators on growth and development of tomato fruits. In: B Jeffcoat, ed. British Plant Growth Regulator Group, Monograph No. 6: Aspects and Prospects of Plant Growth Regulators pp. 141–150

Bangerth F and Ho LC (1984) Fruit position and fruit set sequence in a truss as factors determining final size of tomato fruits. Ann Bot 53: 313–319

Beadle NCW (1937) Studies in growth and respiration of tomato fruits and their relationship to carbohydrate content. Aust J Exp Biol Med Sci 15: 173–189

Bohner J and Bangerth F (1988) Cell number, cell size and hormone levels in semi-isogenic mutants of Lycopersicon pimpinellifolium differing in fruit size. Physiol Plant 72: 316–320

Bünger-Kibler S and Bangerth F (1982/83) Relationship between cell number, cell size and fruit size of seeded fruits of tomato (Lycopersicon esculentum Mill.), and those induced parthenocarpically by the application of plant growth regulators. Plant Growth Regul 1: 143–154

Dinar M and Stevens MA (1982) The effect of temperature and carbon metabolism on sucrose uptake by detached tomato fruits. Ann Bot 49: 477–483

Dreher TW and Poovaiah BW (1982) Changes in auxin content during development in strawberry fruits. J Plant Growth Regul 1: 267–276

Düring H and Alleweldt G (1984) On the possible role of abscisic acid in sugar accumulation of grape berry. Ber Deutsch Bot Ges 97: 101–113

Ho LC (1980) Control of import into tomato fruits. Ber Deutsch Bot Ges 93: 315–325

Ho LC, Sjut V and Hoad GV (1982/83) The effect of assimilate supply on fruit growth and hormone levels in tomato plants. Plant Growth Regul 1: 155–171

Kinet J-M, Zune V, Linotte C, Jacqmard A and Bernier B (1985) Resumption of cellular activity induced by cytokinin and gibberellin treatments in tomato flowers targeted for abortion in unfavorable light conditions. Physiol Plant 64: 67–73

Leonard M, Kinet J-M, Bodson M and Bernier G (1983) Enhanced inflorescence development in tomato by growth substance treatments in relation to 14C-assimilate distribution. Physiol Plant 57: 85–89

MacDonald EMS, Akiyoshi DE and Morris RO (1981) Combined high performance liquid chromatography-radioimmunoassay for cytokinins. J Chromatogr 214: 101–109

Mapelli S (1981) Changes in cytokinin in the fruits of parthenocarpic and normal tomatoes. Plant Sci Lett 22: 227–233

Mapelli S, Frova C, Torti G and Soressi GP (1978) Relationship between set, development and activities of growth regulators in tomato fruits. Plant Cell Physiol 19: 1281–1288

Morris DA (1982) Hormonal regulation of sink invertase activity: Implications for the control of assimilate partitioning. In: Wareing PFed. Plant Growth Substances 1982, pp. 659–668. London: Academic Press

Mousdale DA and Knee M (1981) Indolyl-3-acetic acid and ethylene in ripening apple fruits. J exp Bot 129: 753–758

Schussler JR, Brenner ML and Brun WA (1984) Abscisic acid and its relationship to seed filling in soybeans. Plant Physiol 76: 301–306

Sjut V and Bangerth F (1981) Effect of pollination or treatment with growth regulators on levels of extractable hormones in tomato ovaries and young fruits. Physiol Plant 53: 76–78

Sjut V and Bangerth F (1982) Induced parthenocarpy — a way of changing the levels of endogenous hormones in tomato fruits (Lycopersicon esculentum Mill.) 1. Extractable hormones. Plant Growth Regul 1: 234–251

Smith O (1935) Pollination and life history studies of the tomato (Lycopersicon esculentum Mill.). Cornell Univ Agric Exp Stat Memoir 184: 3–16

Tietz A, Ludewig M, Dingkuhn M and Dörffling K (1981) Effects of abscisic acid on the transport of assimilates in barley. Planta 152: 557–561

Varga A and Bruinsma J (1976) Roles of seeds and auxins in tomato fruit growth. Z Pflanzenphysiol 80: 95–104

Walker AJ and Ho LC (1977) Carbon translocation in the tomato: carbon import and fruit growth. Ann Bot 41: 813–823

Weiler EW (1980) Radioimmunoassay for differential and direct analysis of free and conjugated abscisic acid in plant extracts. Planta 148: 262–272

Weiler EW (1981) Radioimmunoassay for pmol-quantities of indole-3-acetic acid for use with highly stable 125J- and 3H-IAA derivatives as radiotracers. Planta 153: 319–325