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Losses in fruit yield due to mango malformation






Hortscience 28(5): 137-138

Losses in fruit yield due to mango malformation



Accession: 032200284



Related references

Abou Rawash, M.; E.G.zzar, A.A.; Ibrahim, A.R., 2004: Studies on irrigation regimes on mango trees. I - Effect of different irrigation treatments on flower malformation, fruit drop, yield, fruit quality and leaf mineral content of Zebda mango trees. A trial was carried out during 2001 and 2002 seasons to study the effect of different irrigation regimes on flower malformation percentage, fruit drop, yield, quality and leaf mineral (N, P, K, Ca, Mg, Zn, Fe and Mn) content of mango cv. Zebda, gr...

Abou Rawash, M.; E.G.zzar, A.A., 2004: Studies on irrigation regimes on mango trees. II. Effect of controlled irrigation on flower malformation, fruit drop, yield and fruit quality on Ewais mango trees. An experiment was carried out during 2001 and 2002 seasons to study the effect of controlled irrigation on early and malformed panicles, fruit drop, yield and fruit quality of mango cv. Ewais, grown in a private farm located in Ismailia governorat...

Singh, V.K.; Saini, J.P.; Misra, A.K., 1998: Effect of plant growth regulator and other chemicals on floral malformation, flowering, fruit set, yield and fruit quality of mango cv. Amrapali. Effect of naphthalene acetic acid (NAA - 200 ppm), cobalt sulphate (CoSO4-1000 ppm) nickel sulphate (NiSO4-400 ppm), silver nitrate (AgNO3-400 ppm) and potassium metabisulphate (K2S2O5-400 ppm) were evaluated against the incidence of floral malfor...

Majumder P.K.; Sinha G.C., 1972: Studies on the effect of malformation on growth sex ratio fruit set and yield of mango d. Acta Horticulturae (Wageningen) 24: 230-234

Majumder, P.K.; Sinha, G.C., 1972: Studies on the effect of malformation on growth, sex ratio, fruit set and yield of mango. Vegetative and floral malformations are described, and data are tabulated on the extent of heavy, medium and light panicle malformation in the cvs Dashehari, Chausa, Langra and Bombay Green. Malformed panicles are characterized by an increased num...

Sharma, R.R.; Singh, C.N.; Saxena, S.K.; Pandey, S.N.; Chhonkar, O.P., 2001: Cluster planting favours malformation and influences yield and fruit quality in mango. Experiments were conducted in New Delhi, India during 1997-99 in 10-year-old mango cv. Amrapali to study the effect of different planting densities on malformation [abnormal development], yield and quality. Planting density of 833 plants/ha had th...

Singh, V.K.; Saini, J.P.; Misra, A.K., 2001: Response of salicylic acid on flowering, floral malformation, fruit set, yield and associated bio-physical and biochemical characters of mango. The effects of salicylic acid (SA at 0, 500, 1000, 2000, or 4000 ppm) sprayed at flower bud initiation stage on mango cultivars Amrapali and Dashehari were studied in Lucknow, Uttar Pradesh, India [date not given]. SA delayed flower bud initiation...

Zora Singh; Lakhvir Singh, 1993: Effect of cobalt ions on floral malformation, yield and fruit quality of 'Dusheri' mango (Mangifera indica L.). A 4-year study of malformation in mango revealed that a single foliar application of 1000 p.p.m. cobalt sulphate prior to flower bud differentiation in the first week of Oct. successfully reduced flower malformation by 93, 94, 87 and 84% in each y...

Galila, A.S.; E.M.sry, H.M., 1991: Effect of Ethrel and S-3307 D (a new plant growth retardant) on flowering, malformation, fruit set and yield of Ewais mango cultivar. In the 1988/89 and 1989/90 seasons, mango cv. Ewais trees were sprayed twice in Dec. with Ethrel [ethephon] at 250 or 400 p.p.m. and/or S-3307 D [uniconazole] at 500, 1000 or 2000 p.p.m. Uniconazole at 500 p.p.m. advanced flower bud opening by 3 a...

Singh, Z.; Singh, L.; Arora, C.L.; Dhillon, B.S., 1994: Effect of cobalt, cadmium, and nickel as inhibitors of ethylene biosynthesis on floral malformation, yield, and fruit quality of mango. Among the treatments of exogenous foliar spray application of sulphates of cobalt (Co) and cadmium (Cd) at 0, 250, 500, 1000, and 1500 ppm, and nickel (Ni) at 0, 100, 200, and 400 ppm prior to flower bud differentiation in the first week of Octobe...