Combined effect of potassium and boron on low-temperature tolerance in mungbean under late sowing condition

Paper Details

Research Paper 01/08/2021
Views (282) Download (17)
current_issue_feature_image
publication_file

Combined effect of potassium and boron on low-temperature tolerance in mungbean under late sowing condition

Mohshina Mustare Liza, Swarna Shome, Alak Barman, Polly, Md. Eliyachur Rahman
Int. J. Biosci.19( 2), 108-117, August 2021.
Certificate: IJB 2021 [Generate Certificate]

Abstract

An experiment was conducted at the research field of Sher-e-Bangla Agricultural University to study the effect of potassium and boron on low-temperature tolerance in mungbean under late sowing conditions. Two levels of potassium (10 kg and 20 kg    ha-1) and 2 levels of boron (1 kg and 2 kg ha-1) were applied with recommended fertilizer dose in case of mungbean sown on 24 September and 25 October. The experiment was laid out in randomized complete block design with three replications. Results revealed that mungbean sown on 24 September performed better than those sown on 25 October but the addition of potassium and boron with recommended dose improved the performance of late sown mungbean. Mungbean sown on 24 September produced the highest seed yield with the addition of 10 kg K and 2 kg B while mungbean sown on 25 October provided maximum yield due to the addition of 10 kg K and 1 kg B. So, 10 kg K + 2 kg B and 10 kg K + 1 kg B with recommended dose may be suggested for mungbean sown on 24 September and 25 October, respectively.

VIEWS 15

Boote KJ, Aleen LH, Prasad PVV, Baker JT, Gesch RW, Snyder AM, D-Pan, Thomas JMG. 2005. Elevated temperature and carbon dioxide impacts on pollination, reproductive growth, and yield of several globally important Crops. Journal of Agricultural Meteorology 60, 469-474. http://dx.doi.org/10.2480/AGRMET.469

Devi BSR, Kim YJ, Selvi SK, Gayathri S, Altanzul K, Parvin S, Yang DU, Lee OR, Lee S, Yang DC. 2012. Influence of potassium nitrate on antioxidant level and secondary metabolite genes under cold stress in Panax ginseng. Russian Journal of Plant Physiology 59, 318-325. https://doi.org/10.1134/S1021443712030041

Eisvand HR, Kamaei H, Daneshvar M, Nazarian-Firouzabadi F. 2018. The study effect of potassium, zinc and boron foliar application on canopy temperature, physiological traits and yield of two bread wheat cultivars under optimum and late planting dates. Journal of Crop Production 10(4), 187-203.http://dx.doi.org/10.22069/ejcp.2018.13077.2013

FAO (Food and Agricultural Organization). 1988. Production Year Book. Food and Agricultural Organization of the United Nations. Rome, Italy 42, 190-193.

Foyer CH, Vanacker H, Gornez LD, Harbinson J. 2002. Regulation of photosynthesis and antioxidant metabolism in maize leaves at optimal and chilling temperatures: review. Plant Physiology and Biochemistry 40, 659-668. https://doi.org/10.1016/S0981-9428(02)01425-0

FRG (Fertilizer Recommendation Guide). 2012. Bangladesh Agricultural Research Council (BARC), Farmgate, Dhaka, Bangladesh. p 102

Gomez KA, Gomez AA. 1984. Statistical Procedures for Agricultural Research. 2nd Edn. John Willey and Sons, New York. p 97-411.

Hall AE. 2004. Breeding for adaptation to drought and Heat in Cowpea. European Journal of Agronomy 21, 447-454. https://doi.org/10.1016/j.eja.2004.07.005

Hakerlerler H, Oktay M, Eryuce N, Yagmur B. 1997. Effect of Potassium Sources on the Chilling Tolerance of Some Vegetable Seedlings Grown in Hotbeds. In: Johnston A.E., editor. Food Security in the WANA Region, the Essential Need for Balanced Fertilization. International Potash Institute; Basel, Switzerland, p 353-359.

Kabir FHM, Bari MN, Karim MA, Ahmed JU. 2009. The effect of sowing time and cultivars on the growth and yield performance of chickpea under rainfed condition. Bangladesh Journal of Agricultural Research 34(2), 335-342.

Marschner P. 1995.Marschner’s Mineral Nutrition of Higher Plants. 3rd ed. Academic Press; London, UK, p 178-189.

Mengel K, Kirkby EA. 2001. Principles of Plant Nutrition. 5th ed., Kluwer Academic Publishers, Dordrecht.

Molassiotis A, Sotiropoulos T, Tanou GD, Therios GI. 2006. Boron-induced oxidative damage and antioxidant and nucleolytic responses in shoot tips culture of the apple root-stock EM9 (Malusdomestica borkh). Environmental and Experimental Botany 56, 54-62. https://doi.org/10.1016/j.envexpbot.2005.01.002

Paul AK, Afjal DG, Palas SD. 2011. Effect of sowing time of blackgram on its yield and plant growth. Indian Journal of Agricultural Science 4(5), 32-53.

Seijoon P, Wookhan K, Rakehun S. 2000.  Influence of different planting times on harvest index and yield determination factors in mungbean. Korean Journal of Crop Science 45, 97-102.

Uddin FMJ, Sarkar MAR, Rashid MH. 2013. Level of phosphorus and varietal effect with planting time on seed yield and yield contributing characters of mungbean. Bangladesh Research Publications Journal 9(2), 141-146.

Waraich EA, Ahmad R, Halim A, Aziz T. 2012. Alleviation of temperature stress by nutrient management in crop plants: a review. Journal of Soil Science and Plant Nutrition 12(2), 221-244. http://dx.doi.org/10.4067/S07189516201200020003

Waraich EA, Ahmad R, Ashraf MY, Ahmad SM. 2011. Improving agricultural water use efficiency by nutrient management in crop plants. Acta Agriculturae Scandinavica, Section B – Plant and Soil Science 61(4), 291-304. https://doi.org/10.1080/09064710.2010.491954

Xu PL, Guo YK, Bai JG, Shang L, Wang XJ. 2008. Effects of long-term chilling on ultra-structure and antioxidant activity in leaves of two cucumber cultivars under low light. Physiologia Plantarum 132, 467-478. http://dx.doi.org/10.1111/j.1399-3054.2007.01036.x

Zhao MG, Tian QY, Zhang WH. 2007. Nitric oxide synthase-dependent nitric oxide production is associated with salt tolerance in Arabidopsis. Plant Physiology 144, 206-217. https://doi.org/10.1104/pp.107.096842