Sains Malaysiana 51(4)(2022): 1027-1044

http://doi.org/10.17576/jsm-2022-5104-07

 

The Effect of Moringa oleifera Lam. Leaf Aqueous Extract on Seed Yield and Fibre Quality of Linseed under Water Deficit Stress

 (Kesan Akueus Ekstrak Daun Moringa oleifera Lam. terhadap Hasil Biji Benih dan Kualiti Serat Biji Rami di bawah Tekanan Kekurangan Air)

 

ASIF ULLAH KHAN1, FAIZAN ULLAH1,*, SADIA ZAFAR2, ADNAN KHATTAK1, MUHAMMAD IRSHAD1, ISHTIAQ HUSSAIN3 & MASROOR HUSSAIN4

 

1Department of Botany, University of Science and Technology, Bannu KP, Pakistan

2Department of Botany, University of Education, (Lahore) Faisalabad Campus, Pakistan

3Department of Biological Science, University of Baltistan Skardu, Pakistan

4Department of Biotechnology University of Science and Technology, Bannu KP, Pakistan

 

Diserahkan: 24 November 2020/Diterima: 23 Ogos 2021

 

ABSTRACT

Moringa oleifera leaf extract contains active ingredients with stimulatory effects on natural processes of plants like uptake of nutrients, photosynthesis, biomass production and flowering. Therefore, we conducted field experiments to determine the effects of M. oleifera leaf aqueous extract (MLAE) on growth and fibre quality of three linseed varieties viz. Roshni, BL1 and Chandni under water deficit stress for two years. Water deficit stress was imposed during tillering growth phase (60 days after sowing) by skipping four irrigations, keeping 40% soil field capacity. The MLAE (5%) was applied to leaves once before the start of water deficit stress period and next 15 days after imposition of water deficit stress. Analysis of MLAE showed the presence of natural phenolics (150 mg gallic acid equivalents (GAE)/mL extract) and essential nutrients like Ca, Mg, K, Zn, Mn, and Fe. Positive impact of the MLAE was observed on plant height, tillers production, leaf chlorophyll pigments, phenolics content, sugars content, seed yield and fibre quality of linseed both under non-stress and water deficit stress. Our studies concluded that MLAE can be a probable approach for maintaining normal growth and fibre quality of linseed plants under short supply of water.

 

Keywords: Biostimulant; electrolyte leakage; fibre quality; phenolics; soluble sugars

 

ABSTRAK

Ekstrak daun Moringa oleifera mengandungi bahan aktif dengan kesan perangsang pada proses semula jadi tumbuhan seperti pengambilan nutrien, fotosintesis, pengeluaran biomas dan pembungaan. Oleh itu, kami menjalankan uji kaji lapangan untuk menentukan kesan ekstrak akueus daun M. oleifera (MLAE) terhadap pertumbuhan dan kualiti serat tiga varieti biji rami,iaitu Roshni, BL1 dan Chandni yang mengalami tekanan kekurangan air selama dua tahun. Tekanan kekurangan air dikenakan pada fasa pertumbuhan tiler (60 hari selepas semaian) dengan melangkau empat kali pengairan, mengekalkan kapasiti tanah ladang sehingga 40%. MLAE (5%) diaplikasikan pada daun sebanyak sekali sebelum bermulanya tempoh tekanan air dan 15 hari berikutnya setelah dikenakan tekanan. Analisis MLAE menunjukkan kehadiran fenol semula jadi (150 mg setara asid galik (GAE)/mL ekstrak) dan nutrien penting seperti Ca, Mg, K, Zn, Mn dan Fe. Kesan positif MLAE diperhatikan pada ketinggian tanaman, penghasilan tiler, pigmen klorofil daun, kandungan fenol, kandungan gula, hasil biji dan kualiti serat biji rami baik dalam keadaan tekanan dan kekurangan air. Kajian kami menyimpulkan bahawa MLAE berkemungkinan boleh menjadi pendekatan untuk mengekalkan pertumbuhan normal dan kualiti serat tanaman biji rami walaupun kekurangan bekalan air.

 

Kata kunci: Bioperangsang; bocoran elektrolit; fenol; gula larut; kualiti serat

RUJUKAN

Abdul Jaleel, C., Manivannan, P. & Wahid, A. 2009. Drought stress in plants: A review on morphological characteristics and pigments composition. International Journal of Agriculture and Biology 11(1): 100-105.

Al-Shaheen, M.R., Al-Shaheen, M.A. & Al-Shaheen, M.R. 2018. Effect of biological treatment under water stress conditions on maize (Zea mays L.). Enzyme Engineering 7: 164.

Aliniaeifard, S., Shomali, A., Seifikalhor, M. & Lastochkina, O. 2020. Calcium signaling in plants under drought. In Salt and Drought Stress Tolerance in Plants. Signaling and Communication in Plants, edited by Hasanuzzaman, M. & Tanveer, M. New York City: Springer. pp. 259-298.

Anon. 2013. Biostimulants market - by active ingredients, applications, crop types and geography - global trends and forecasts to 2018. Markets and markets.

Arnon, D.I. 1949. Copper enzymes in isolated chloroplasts. Polyphenoloxidase in Beta vulgaris. Plant Physiology 24(1): 1-15.

Aschonitis, V. 2013. Estimation of field capacity for aggregated soils using changes of the water retention curve under the effects of compaction. European Journal of Soil Science 64(5): 688-698.

Atafar, Z., Mesdaghinia, A., Nouri, J., Homaee, M., Yunesian, M., Ahmadimoghaddam, M. & Mahvi, A.H. 2010. Effect of fertilizer application on soil heavy metal concentration. Environmental Monitoring and Assessment 160(1-4): 83-89. 

Bakhtavar, M.A., Afzal, I., Basra, S.M.A., Ahmad, A. & Noor, M.A. 2015. Physiological strategies to improve the performance of spring maize (Zea mays L.) planted under early and optimum sowing conditions. PLoS ONE 10(4): e0124441.

Bibi, A., Ullah, F., Mehmood, S., Bibi, K., Khan, S.U., Khattak, A. & Khan, R.U. 2016. Moringa oleifera Lam. leaf extract as bioregulator for improving growth of maize under mercuric chloride stress. Acta Agriculturae Scandinavica, Section B - Soil & Plant Science 66(6): 469-475.

Bibi, K., Mushtaq, N., Mahmood, S., Ullah, F., Khattak, A., Perveen, I., Begum, K. & Abbas, S. 2018. Pongamia pinnata (L.) Panigrahi aqueous extract alleviates mercuric chloride induced stress on seedling growth of maize. Applied Ecology and Environmental Research16(3): 3245-3253.

Biswas, A.K., Hoque, T.S. & Abedin, M.A. 2016. Effects of Moringa leaf extract on growth and yield of maize. Progressive Agriculture 27(2): 136-143.

Blum, A. & Ebercon, A. 1981. Cell membrane stability as a measure of drought and heat tolerance in wheat. Crop Science 21(1): 43-47.

Cakmak, I. 2005. The role of potassium in alleviating detrimental effects of abiotic stresses in plants. Journal of Plant Nutrition and Soil Science 168(4): 521-530.

Chandio, R. 2012. Thar, other areas may face severe drought. The Nations. https://nation.com.pk/23-Aug-2012.

Chun, O.K., Kim, D.O., Moon, H., Kang, H.G. & Lee, C.Y. 2003. Contribution of individual polyphenolics to total antioxidant capacity of plums. Journal of Agricultural and Food Chemistry51(25): 7240-7245.

de Vasconcelos, A.C.F., Zhang, X., Ervin, E.H. & de Kiehl, J.C. 2009. Enzymatic antioxidant responses to biostimulants in maize and soybean subjected to drought. Scientia Agricola 66(3): 395-402.

Dhirhi, N., Shukla, R., Patel, N.B., Sahu, H. & Mehta, N. 2015. Extraction method of flax fiber and its uses. Plant Archives 15(2): 711-716.

Di Mola, I., Ottaiano, L., Cozzolino, E., Senatore, M., Giordano, M., El-Nakhel, C. & Mori, M. 2019. Plant-based biostimulants influence the agronomical, physiological, and qualitative responses of baby rocket leaves under diverse nitrogen conditions. Plants 8(11): 522.

Dubois, M., Gilles, K.A., Hamilton, J.K., Rebers, P.A. & Smith, F. 1956. Colorimetric method for determination of sugars and related substances. Analytical Chemistry 28(3): 350-356.

Farooq, M., Wahid, A., Kobayashi, N., Fujita, D. & Basra, S.M.A. 2009. Plant drought stress effects, mechanisms and management. Agronomy for Sustainable Development28: 185-212.

Foidle, N., Makkar, H.P.S. & Becker, K. 2001. The potential of Moringa oleifera for agricultural and industrial uses. In The Miracle Tree: The Multiple Attribute of Moringa, edited by Fugile, L.J. Church World Service. pp. 45-76.

Fuglie, L.J. 1999. The Miracle Tree: Moringa oleifera, Natural Nutrition for the Tropics. Church World Service.

Guo, R., Hao, W. & Gong, D. 2012. Effects of water stress on germination and growth of linseed seedlings (Linum usitatissimum L), photosynthetic efficiency and accumulation of metabolites. Journal of Agricultural Science 4(10): 253-265.

Indrayan, A.K., Sharma, S., Durgapal, D., Kumar, N. & Kumar, M. 2005. Determination of nutritive value and analysis of mineral elements for some medicinally valued plants from Uttaranchal. Current Science 89(7): 1252-1255.

Jhala, A.J. & Hall, L.M. 2010. Flax (Linum usitatissimum L.): Current uses and future applications. Australian Journal of Basic and Applied Sciences 4(9): 4304-4312.

Kariuki, L.W., Masinde, P., Githiri, S. & Onyango, A.N. 2016. Effect of water stress on growth of three linseed (Linum usitatissimum L.) varieties. Springer Plus 5(759): 2-16.

Khan, A.J., Azam, F., Ali, A., Tariq, M. & Amin, M. 2005. Inter-relationship and path co-efficient analysis for biometric traits in drought tolerant wheat (Triticum aestivum L.). Asian Journal of Plant Sciences 4(5): 540-543.

Kirnak, H. & Demirtas, M.N. 2006. Effects of different irrigation regimes and mulches on yield and macronutrition levels of drip-irrigated cucumber under open field conditions. Journal of Plant Nutrition 29(9): 1675-1690.

Latif, H.H. & Mohamed, H.I. 2016. Exogenous applications of Moringa leaf extract effect on retrotransposon, ultrastructural and biochemical contents of common bean plants under environmental stresses. South African Journal of Botany 106: 221-231.

Liu, H., Gan, W., Rengel, Z. & Zhao, P. 2016. Effects of zinc fertilizer rate and application method on photosynthetic characteristics and grain yield of summer maize. Journal of Soil Science and Plant Nutrition 16(2): 550-562.

Maishano, H.M., Mainasara, M.M., Yahaya, S. & Yunusa, A. 2017. The use of Moringa leaves extract as a plant growth hormone on Cowpea (Vigna anguiculata). Path of Science 3(12): 3001-3006.

Masoumi, A., Kafi, M., Khazaei, H. & Davari, K. 2010. Effect of drought stress on water status, elecrolyte leakage and enzymatic antioxidants of kochia (Kochia scoparia) under saline condition. Pakistan Journal of Botany 42(5): 3517-3524.

Mohamed, H.I. & Gomaa, E.Z. 2012. Effect of plant growth promoting Bacillus subtilis and Pseudomonas fluorescens on growth and pigment composition of radish plants (Raphanus sativus) under NaCl stress. Photosynthetica 50(2): 263-272.

Mohammad, M., Majnounhusseini, N., Amiri, R., Moslehi, A. & Omid, R.Z. 2012. Effects of sowing date and limited irrigation water stress on spring safflower (Carthamus tinctorius L.) quantitative traits. Journal of Research in Agricultural Science 8(2): 100-112. 

Mustapha, Y., Hamma, I.L., Hayatuddeen, A.M. & Ogbonna, M. 2019. Effects of Moringa (Moringa oleifera Lam) leaf extract on growth and yield of maize (Zea mays L.). Journal of Organic Agriculture and Environment 7(1): 17-22.

Naikoo, M.I., Dar, M.I., Raghib, F., Jaleel, H., Ahmad, B., Raina, A., Khan, F.A. & Naushin, F. 2019. Role and regulation of plants phenolics in abiotic stress tolerance: An overview. In Plant Signaling Molecules, edited by M. Iqbal R. Khan, Palakolanu Sudhakar Reddy, Antonio Ferrante & Nafees A. Khan. Cambridge: Woodhead Publishing. pp. 157-168.

Nazarli, H. & Faraji, F. 2011. Response of proline, soluble sugars and antioxidant enzymes in wheat to different irrigation regimes in greenhouse condition. Cercetari Agronomice in Moldova 4(148): 27-33.

Nosrati, S., Zanjan, M.G. & Asli, D.E. 2014. Fluctuations of proline concentration and soluble sugars content affected drought stress in canola (Brassica napus L.) seedlings. Journal of Applied Science and Agriculture 9(2): 497-502.

Nyachiro, J.M., Briggs, K.G., Hoddinott, J. & Johnson-Flanagan, A.M. 2001. Chlorophyll content, chlorophyll fluorescence and water deficit in spring wheat. Cereal Research Communications29(1): 135-142.

Oosterhuis, D.M. 1995. Potassium nutrition of cotton in the USA, with particular reference to foliar fertilization. CSIRO Challenging the Future: Proceedings of the World Cotton Research Conference 1. CSIRO. 133-146.

Parrotta, J.A. 2004. Moringa oleifera. In Enzyklopädie der Holzgewächse: Handbuch und Atlas der Dendrologie, edited by Andrea, R., Horst, W., Ulla, M.L., Bernd, S. & Peter, S. Weinheim: Wiley-VCH Verlag GmbH & Co. pp. 1-8.  

Pervez, K., Ullah, F., Mehmood, S. & Khattak, A. 2017. Effect of Moringa oleifera Lam. leaf aqueous extract on growth attributes and cell wall bound phenolics accumulation in maize (Zea mays L.) under drought stress. Kuwait Journal of Science 44(4): 110-118.

Petrozza, A., Santaniello, A., Summerer, S., Di Tommaso, G., Di Tommaso, D., Paparelli, E., Piaggesi, A., Perata, P. & Cellini, F. 2014. Physiological responses to Megafol® treatments in tomato plants under drought stress: A phenomic and molecular approach. Scientia Horticulturae 22(174): 185-192.

Popa, V.I., Agache, C., Beleca, C. & Popa, M. 2002. Polyphenols from spruce bark as plant growth regulators. Crop Resources 24(2): 398-406.

Popa, V.I., Beleca, C., Agache, C. & Popa, M. 1998. Contributions to the study of polyphenolic compounds extracted from wood bark. Industria Lemnului 49: 32-35.

Prado, F.E., Boero, C., Gallardo, M. & González, J.A. 2000. Effect of NaCl on germination, growth and soluble sugar content in Chenopodium quinoa Willd seeds. Botanical Bulletin- Academia Sinica 41: 27-34.

Šamec, D., Karalija, E., Sola, I., Vujcic Bok, V. & Salopek-Sondi, B. 2021. The role of polyphenols in abiotic stress response: The influence of molecular structure. Plants 10(1): 118.

Samreen, T., Humaira, Shah, H.U., Ullah, S. & Javid, M. 2013. Zinc effect on growth rate, chlorophyll, protein and mineral contents of hydroponically grown mung beans plant (Vigna radiata). Arabian Journal of Chemistry 10: S1802-S1807.

Sangakkara, U.R., Frehner, M. & Nosberger, J. 2000. Effect of soil moisture and potassium fertilizer on shoot water potential, photosynthesis and partitioning of carbon in mungbean and cowpea. Journal of Agronomy and Crop Science 185(3): 201-207.

Sankhalkar, S. 2014. Antioxidant enzyme activity, phenolics and flavonoid content in vegetative and reproductive parts of Moringa oleifera Lam. American Journal of Pharmtech Research 4: 255-270.  

Sawan, Z.M., Mahmoud, M.H. & El-Guibali, A.H. 2008. Influence of potassium fertilization and foliar application of zinc and phosphorus on growth, yield components, yield and fiber properties of Egyptian cotton (Gossypium barbadense L.). Journal of Plant Ecology 1(4): 259-270.

Sengupta, A. & Gupta, M.P. 1970. Studies on seed fat composition of Moringaceae family. FetteSeifen Anstrichm 72(1): 6-10.

Sharma, A., Shahzad, B., Rehman, A., Bhardwaj, R., Landi, M. & Zheng, B. 2019. Response of phenylpropanoid pathway and the role of polyphenols in plants under abiotic stress. Molecules 24(13): 2452.

Sharma, H.S., Fleming, C., Selby, C., Rao, J.R. & Martin, T. 2014. Plant biostimulants: A review on the processing of macroalgae and use of extracts for crop management to reduce abiotic and biotic stresses. Journal of Applied Phycology 26(1): 465-490. 

Sharma, P., Jha, A.B., Dubey, R.S. & Pessarakli, M. 2012. Reactive oxygen species, oxidative damage, and antioxidative defense mechanism in plants under stressful conditions. Journal of Botany 2012: Article ID. 217037.

Siddhuraju, P. & Becker, K. 2003. Antioxidant properties of various solvent extracts of total phenolic constituents from three different agroclimatic origins of drumstick tree (Moringa oleifera Lam.) leaves. Journal of Agricultural and Food Chemistry 51(8): 2144-2155.

Singleton, V.L. & Rossi, J.A. 1965. Colorimetry of total phenolics with phosphomolybdic phosphotungstic acid reagents. American Journal of Enology and Viticulture 16: 144-158.

Stirk, W.A. & Van Staden, J. 2006. Seaweed products as biostimulants in agriculture. In World Seaweed Resources, edited by Critchley, A.T., Ohno, M. & Largo, D.B. Amsterdam: ETI Information Services Ltd. pp. 1-32.

Storlien, L.H., Hulbert, A.J. & Else, P.L. 1998. Polyunsaturated fatty acids, membrane function and metabolics disease such as diabetes and obesity. Current Opinion in Clinical Nutrition and Metabolic Care 1(6): 559-563.

Stoyanov, Z.Z. 2005. Effects of water stress on leaf water relations of young bean plants. Journal of Central European Agriculture 6(1): 5-14.

Tambussi, E.A., Bartoli, C.G., Beltrano, J., Guiamet, J.J. & Araus, J.L. 2000. Oxidative damage to thylakoid proteins in water‐stressed leaves of wheat (Triticum aestivum). Physiologia Plantarum 108(4): 398-404.

Ullah, F., Bano, A. & Nosheen, A. 2012. Effects of plant growth regulators on growth and oil quality of canola (Brassica napus L.) under drought stress. Journal of Botany 44(6): 1873-1880.

Valentine, I.K., Maria, V.K. & Bruno, B. 2003. Phenolic cycle in plants and environment. Journal of Molecular Cell Biology 2(1): 13-18.

Vaughan, M.M., Block, A., Christensen, S.A., Allen, L.H. & Schmelz, E.A. 2018. The effects of climate change associated abiotic stresses on maize phytochemical defenses. Phytochemistry Reviews 17(1): 37-49.

Wang, M., Zheng, Q., Shen, Q. & Guo, S. 2013. The critical role of potassium in plant stress response. International Journal of Molecular Sciences 14(4): 7370-7390.

Woodfield, H.K. & Harwood, J.L. 2017. Encyclopedia of Applied Plant Sciences. Cardiff: Cardiff University. pp. 34-38.

Yasmeen, A., Nouman, W., Basra, S.M.A., Wahid, A., Rehman, H.U., Hussain, N. & Afzal, I. 2014. Morphological and physiological response of tomato (Solanum lycopersicum L.) to natural and synthetic cytokinin sources: A comparative study. Acta Physiologiae Plantarum 36(12): 3147-3155.

Yasmeen, A., Basra, S.M.A., Farooq, M., Rehman, H., Hussain, N. & Athar, H.R. 2013. Exogenous application of Moringa leaf extract modulates the antioxidant enzyme system to improve wheat performance under saline conditions. Plant Growth Regulation 69(3): 225-233.

Yasmeen, A., Basra, S.M.A., Ahmad, R. & Wahid, A. 2012. Performance of late sown wheat in response to foliar application of Moringa oleifera Lam. leaf extract. Chilean Journal of Agricultural Research 72(1): 92.

Ye, X., Chen, X.F., Deng, C.L., Yang, L.T., Lai, N.W., Guo, J.X. & Chen, L.S. 2019. Magnesium-deficiency effects on pigments, photosynthesis and photosynthetic electron transport of leaves, and nutrients of leaf blades and veins in Citrus sinensis seedlings. Plants 8(10): 389.

Zafar, S.A., Noor, M.A., Waqas, M.A., Wang, X., Shaheen, T. & Raza, M. 2018. Temperature extremes in cotton production and mitigation strategies. In Past, Present and Future Trends in Cotton Breeding, edited by Mehboob-Ur-Rahman. & Zafar, Y.  London: IntechOpen. pp. 65-91.

Zain, N.A.M., Ismail, M.R., Mahmood, M., Puteh, A. & Ibrahim, M.H. 2014. Alleviation of water stress effects on MR220 rice by application of periodical water stress and potassium fertilization. Molecules 19(2): 1795-1819.

Zhao, D., Barry, G. & Comstock, J.C. 2012. Sugarcane leaf photosynthesis and growth characters during development of water-deficit stress. Crop Science 53(3): 1066-1075.

 

* Pengarang untuk surat-menyurat; email: drfaizanwazir@gmail.com

 

 

   

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