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Effects of foliar applied gibberellic acid and benzyladenine upon yield components in sunflower (Helianthus annuus L.)

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Abstract

Sunflower yield is determined by seed number/m−2 and by achene weight. Frequently, a high percentage of empty achenes in the inner portion of the capitulum, probably due to a reduced vascularization of that section of the flower head, decreases final yield. The objective of the present research is to determine if foliarly applied gibberellic acid (GA) and benzyladenine (BA) can enhance the vascularization in the inner portion of the capitulum, improving photoassimilate translocation. Field experiments were conducted during 1989/90 with hybrid SPS 894 and during 1990/91 with hybrid ACA 882. GA (150 mg/l−1), BA (150 and 250 mg/l−1) and GA 150+BA 150 mg/l−1 each were foliarly applied 20, 40, or 60 days after emergence. For both seasons and hybrids plant growth regulator (PGRs) applications significantly reduced the percentage of empty achenes, increased achene weight, achene weight (× 1000) and achene number in the inner portion of the capitulum and in the middle and outer portion during 1990/91. A 25% increase in seed yield was achieved due to PGR application and the capitulum partition index (achene weight/receptacle weight−1, CPI) was significantly increased due to an improvement in photoassimilate distribution. A distribution model was derived showing that preferential allocation of photoassimilates in the outer portion of the capitulum can be modified by PGR application, demonstrating that photoassimilate distribution is under hormonal control.

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References

  1. Ackerson RC (1984) Regulation of soybean embryogenesis by abscisic acid. J Exp Bot 35: 403–413

    Google Scholar 

  2. Allard RW (1978) Principios de las mejoras genéticas de las plantas. Ed. Omega 3era Ed p. 498

  3. Caldiz DO, Beltrano J, Fernandez Laura V, Sarandon SJ and Favoretti C (1991) Effects of foliar applied benzyladenine on grain yield and grain protein in wheat (Triticum aestivum L.). Plant Growth Regul 10: 197–204

    Google Scholar 

  4. Chapowick RE and Forward DF (1974) Translocation of radioactive carbon after the application of 14CO2 to sunflower leaves. Plant Physiol 53: 21–27

    Google Scholar 

  5. Durrieu G, Percie du Sert C et Merrien A (1985) Anatomie du capitule du tournesol. Conséquence sur la nutrition des aquenes. Proc XI Int Sunflower Conf Mar del Plata Argentina: 9–12

  6. Durand Y (1962) Rapport de Mission en URSS sur la recherche agronomique et la culture de tournesol. CETIOM: 1–49

  7. Goffner D, Cazalis R, Percie Du Sert C, Calmes J and Cavalie G (1988) 14C Photoassimilate partitioning in developing sunflower seeds. J Exp Bot 39: 1411–1420

    Google Scholar 

  8. Habura ECH (1957) Self and cross fertility in sunflower. A Pflanzens 37: 280–298

    Google Scholar 

  9. Jain KK, Vaish DP, Gupta HK and Mathur SS (1978) Studies on hollow seededness in sunflower: Proc 8th Int Sunflower Conf Minneapolis Minnesota USA: 343–347

  10. Khanna KR (1972) Factors affecting the production of filled seed in sunflower. Euphytica 21: 384–387

    Google Scholar 

  11. Newman PM and Nooden LD (1983) Interaction of mineral and cytokinin supply in control of leaf senescence and seed growth in soybean explant. J Plant Nutrition 6: 735–742

    Google Scholar 

  12. Palmer JH and Hernández LF (1988) Techniques to change the number of floret and seed rows in the sunflower capitulum. Proc 12th Int Sunflower Conf Novi Sad Yugoslavia: 156–157

  13. Pillay I and Railton (1983) Complete release of auxillary buds from apical dominance in intact, light grown seedlings of Pisum sativum L. following a single application of cytokinin. Plant Phys 71: 972–974

    Google Scholar 

  14. Segala A, Segala M et Piquemal G (1980) Recherches en vue d'améliorer le degrée d'autogamie des cultivars du tournesol (Helianthus annuus L.). L'autogamie et l'autocompabilité pollinique. Ann Amelior Plants 30: 151–159

    Google Scholar 

  15. Shiroya M (1977) Translocation of organic substances in sunflower. I. Downward translocation of 14C-sucrose. Plant Cell Physiol 18: 633–639

    Google Scholar 

  16. Srivastava GC and Goswami BK (1988) Influence of benzyladenine in leaf senescence and photosynthesis in sunflower (Helianthus annus L.). J Agron Crop Sci 161: 23–29

    Google Scholar 

  17. Yegappan TM, Paton DM, Gates GT and Muller WJ (1982) Water stress in sunflower (Helianthus annuus L.). III. Response of cypsela size. Ann Bot. 49: 69–75

    Google Scholar 

  18. Wheeler AW (1976) Some treatments affecting growth substances in developing wheat ears. Ann Appl Bio 83: 455–462

    Google Scholar 

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Consejo Nacional de Investigaciones Científicas y Tecnológicas (CONICET)

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Beltrano, J., Caldiz, D.O., Barreyro, R. et al. Effects of foliar applied gibberellic acid and benzyladenine upon yield components in sunflower (Helianthus annuus L.). Plant Growth Regul 15, 101–106 (1994). https://doi.org/10.1007/BF00024097

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  • DOI: https://doi.org/10.1007/BF00024097

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