Sains Malaysiana 50(3)(2021):
617-628
http://doi.org/10.17576/jsm-2021-5003-05
Performance of Some Rice (Oryza sativa L.) Cultivars under Water Shortage and
High Temperature Stress
(Prestasi Beberapa Kultivar Padi (Oryza sativa L.) akibat Kekurangan Air dan Tekanan Suhu Tinggi)
MOHAMED,
A.A.E. 1, SAJID
FIAZ2*, XIUKANG WANG3, MOHSIN
ALI4, NOSHI PARVEEN5, MAHMOOD
M. GABALLAH6, SARDAR ALI2, ABDALLAH
A. ABDALLAH7 & SALWA I. AHMED7
1Agronomy Department Agricultural
Faculty, Kafer El-Sheikh University, Egypt
2Department of Plant breeding and
Genetics, The University of Haripur 22620, Khyber Pakhtunkhwa, Pakistan
3College of Life Sciences, Yan’an University, Yan’an 716000,
Shaanxi, China
4Department of Forestry and Range
Management, Sub-Campus Depalpur, University of
Agriculture Faisalabad, Punjab, Pakistan
5Department of Plant Breeding and
Genetics, The University of Agriculture Faisalabad, Punjab, Pakistan
6Rice Research and Training Center
(RRTC), Rice Research Department, Field Crops Research Institute, Agricultural
Research Center, 33717, Sakha, Kafr Elsheikh, Egypt
7Rice Research and Training Center, Field
Crops Research Institute, Agricultural Research Center, Kafer El-Sheikh, Egypt
Received: 24 December 2019/Accepted: 30 August 2020
ABSTRACT
Water shortage and heat are the
most devastating abiotic stresses threating global food security. To understand
the behavior of germplasm under both abiotic stresses, thirteen rice genotypes
were selected for the study to make evaluation under water shortage and heat
stress condition. The results showed that the year mean squares were
significant and highly significant for all agronomical traits except, flag leaf
area, number of tillers plant-1, number of panicles plant-1,
100 grain weight, grain yield plant-1 and harvest index indicated
overall wide differences of weather during both years. Environments mean
squares were found to be highly significant over all traits were used,
indicating that all environments showed significant differences. The highly
significant differences were observed among genotypes and G x E interaction for all characteristics except, panicle length. Concerning the
cultivars performance across three environments, the cultivars Giza 178, Giza
179, Sakha 107, Hybrid 1, Hybrid 2 gave the best desirable values over normal,
drought and heat stress conditions so, these cultivars are considered to play
vital role in breeding program to enhancement for drought and heat stresses and
have high yield potential. The highly significant and positive correlation were
found among the all traits under investigation except with flag leaf angle,
leaf rolling and sterility percentage. The results will further help to utilize
the genotypes for further crop improvement breeding programs.
Keywords: Grain yield; G x E interaction; high
temperature stress; rice; water
shortage
ABSTRAK
Kekurangan air dan cuaca panas adalah tekanan abiotik yang paling dahsyat yang mengancam keselamatan makanan global. Untuk memahami tingkah laku germplasma di bawah kedua-dua tekanan abiotik ini, tiga belas genotip padi dipilih untuk kajian bagi penilaiannya dalam keadaan kekurangan air dan di bawah tekanan panas. Hasil kajian menunjukkan bahawa purata kuadrat tahunan adalah signifikan dan sangat signifikan untuk semua trait agronomi kecuali, luas daun, jumlah penanaman tanaman-1, jumlah tanaman panicles-1, berat 100 butir, tanaman hasil gandum-1 dan indeks penuaian menunjukkan secara keseluruhannya terdapat perbezaan besar bagi cuaca dua tahun tersebut. Purata kuadrat persekitaran didapati sangat signifikan daripada semua sifat yang digunakan, menunjukkan bahawa semua persekitaran menunjukkan perbezaan yang signifikan. Perbezaan yang sangat ketara diperhatikan antara genotip dan interaksi G x E untuk semua ciri kecuali panjang bulir. Mengenai prestasi kultivar pada tiga persekitaran, kultivar Giza
178, Giza 179, Sakha 107, Hibrid 1, Hibrid 2 memberikan nilai yang paling diingini berbanding keadaan tekanan biasa, kemarau dan tekanan panas, maka kultivar ini dianggap berperanan penting dalam program pembiakan untuk peningkatan ketahanan terhadap tekanan kemarau dan panas serta berpotensi bagi penghasilan yang tinggi. Hubungan yang sangat signifikan dan positif dilihat antara semua sifat yang dikaji kecuali dengan sudut bendera daun, gulungan daun dan peratusan steril. Hasil kajian ini akan membantu dalam penggunaan genotip bagi menambahbaik program pembiakan tanaman.
Kata kunci: Hasil bijirin; interaksi G x E; kekurangan air; nasi; tekanan suhu tinggi
REFERENCES
AbdAllah, A.A., El-Khoby, W.M., Aboyosif, M. & Gorgy, R.N. 2010. Phenotypic and genotypic analysis
of same rice cultivars for growth and yield traits under stress conditions. J.
Plant Production Mansoura Univ. 1(7): 901-914.
AbdAllah, A.A., Abdel-Hafez, A.G., El-Degwy,
I.S. & Ghazy, M.I. 2013. Root
characters studied in relation to drought and heat tolerance in some rice
genotypes. Egypt. J. Plant Breed. 17(2): 131-146.
Abdel-Hafez, A.G., AbdAllah, A.A., El-Degwy, I.S.
& Ghazy, M.I. 2013. Growth
characters and yield response of rice genotypes to high temperature and water
deficit. Egypt. J. Plant Breed. 17(2): 114-130.
Abdel-Hafez, A.G., AbdAllah, A.A., El-Degwy, I.S.
& Ghazy, M.I. 2016. Inheritance
of high temperature tolerance and some related traits in rice. J. Agric.
Res. 42(4): 623-629.
Abdel-Hafez, A.G., AbdAllah, A.A., Ghazy, M.I. &
El-Degwy, I.S. 2017. Genetic
analysis of water deficit and heat tolerance in rice under Egyptian conditions. Egypt. J. Plant Breed. 21(5): 202-218.
Ali, U., Zhong, M., Shar, T., Fiaz, S., Xie, L., Jiao, G.,
Ahmad, S., Sheng, Z., Tang, S., Wei, X. & Hu, P. 2020. The influence of pH
on cadmium accumulation in seedlings of rice (Oryza sativa L.). J. Plant Gro. Reg. 39: 930-940.
Anis, G., Zhang, Y., Xu, X., Fiaz, S., Wu, W., Rahman, M.H., Riaz,
A., Chen, D., Shen, X. & Zhan, X. 2018. QTL analysis for rice seedlings
under nitrogen deficiency using chromosomal segment substitution lines. Pak.
J. Bot. 50(2): 537-544.
Ashraf, M. 2010. Inducing
drought tolerance in plants: Recent advances. Biotechnol. Adv. 28(1): 169-183.
Bartlett, M.S. 1937.
Properties of sufficiency and statistical tests. In Proceedings of the Royal
Society of London. Series A-Mathematical and Physical Sciences.
Fahad, S., Hussain, S., Saud, S., Khan, F., Hassan,
S., Nasim, W., Arif, M.,
Wang, F. & Huang, J. 2016. Exogenously applied plant growth regulators
affect heat‐stressed rice pollens. J. Agron.
Crop Sci. 202(2): 139-150.
Fahad, S., Bajwa, A.A., Nazir, U., Anjum, S.A., Farooq,
A., Zohaib, A., Sadia, S., Nasim,
W., Adkins, S. & Saud, S. 2017. Crop production under drought and heat
stress: Plant responses and management options. Front. Plant Sci. 8: 1147.
Fiaz, S., Jiao, G., Sheng, Z., Lv,
Y., Barman, H.N., Shar, T., Ali, U., Tang, S., Wei,
X. & Hu, P. 2019. Analysis of genomic regions affecting cooking and eating
quality traits of a recombinant inbred population in rice. Intl. J. Agric.
Biol. 22: 611-619.
Gaballah, M.M., Hassan, H.M. & Shehab,
M.M. 2016. Stability
parameters for grain yield and its components in some rice genotypes under
different environments. In Proceedings, the 6th Field Crops Conference FRCI.
Gana, A.S. 2011. Screening and resistance of tradition and
improved cultivars of rice to drought stress at Badeggi,
Niger state, Nigeria. Agric. Biol. North Am. 2(6): 1027-1031.
Ghazy, M.I. 2017. Genetic studies on components of drought and heat stresses tolerance in rice.
Ph.D. Thesis. Kafr-El-Sheikh University (Unpublised).
Ghazy, M.I. 2012. Response of rice growth and productivity to drought and heat stress conditions.
MSc. Thesis. Kafr-El-Sheikh University (Unpublished).
Hussain, S., Cao, X., Zhong, C., Zhu, L., Khaskheli,
M.A., Fiaz, S., Zhamg, J.
& Jin, Q. 2018. Sodium chloride stress during
early growth stages altered physiological and growth characteristics of rice. Chil. J. Agr. Res. 78(2): 183-197.
Kusaka, M., Ohta, M. & Fujimura, T. 2005. Contribution of inorganic
components to osmotic adjustment and leaf folding for drought tolerance in
pearl millet. Physiol Plant. 125(4): 474-489.
Palanog, A.D., Mallikarjuna Swamy, B.P., Shamsudin, N.A.A.,
Dixit, S., Hernandez, J.E., Boromeo, T.H., Cruz,
P.C.S. & Kumar, A. 2014. Grain yield QTLs with consistent-effect under
reproductive-stage drought stress in rice. Field Crops Res. 161: 46-54.
Pantuwan, G., Fukai, S.,
Cooper, M., Rajatasereekul, S. & Toole, J.C.O.
2002. Yield response of rice (Oryza sativa L.)
genotypes to drought under rain fed lowlands 2. selection of drought resistant
genotypes. Field Crops Res. 73(3): 169-180.
Peng, S.B., Huang, J.L.,
Sheehy, J.E., Laza, R.C., Visperas,
R.M., Zhong, X.H., Centeno, G.S., Khush,
G.S. & Cassman, K.G. 2004. Rice yields decline with
higher night temperature from global warming. Proc. Natl. Acad. Sci. 101(27): 9971-9975.
Riaz, A., Khaliq, A., Fiaz,
S., Noor, M.A., Nawaz, M.M., Mahboob, W. & Ullah, S. 2018. Weed management in direct seeded rice grown
under varying tillage systems and alternate water regimes. Planta Daninha. 36: e018179036.
Shao, H.B., Chu, L.Y., Shao, M.A., Abdul, J.C. & Hong-Mei, M. 2008. Higher plant antioxidants and
redox signaling under environmental stresses. Comptes Rendus Biol. 331(6): 433-441.
Sibounheuang, V., Basnayake,
J. & Fukai, S. 2006. Genotypic consistency in the
expression of leaf water potential in rice (Oryza sativa L.). Field Crops Res. 97(2-3): 142-154.
Singh, S., Aggarwal, P.K. & Yadav, R.N. 2010. Growth and
yield response of rice under heat stress during vegetative, reproductive, and
ripening growth phases. Crop Management and Physiol. 35(2010): 1-4.
Wattoo, F.M., Rana, R.M., Fiaz,
S., Zafar, S.A., Noor, M.A., Hassan, H.M., Bhatti, H.M., Rehman,
S., Anis, G.B. & Amir, R.M. 2018. Identification
of drought tolerant maize genotypes and seedling based morpho-physiological
selection indices for crop improvement. Sains Malaysiana 47(2): 295-302.
Xing, T.L., Juan, T.H., Xi, W., Yong, C.L., Jian, S. & Hua, C.S.
2008. Effects of high
temperature stress on flowering and grain-setting characteristics for Guodao 6. Acta Agron. Sinica34(4): 669-674.
Zacharias, M., Singh, S.D., Kumar,
S.N., Harit, R.C. & Aggarwal, P.K. 2010. Impact
of elevated temperature at different phenological stages on the growth and yield of wheat and rice. Indian J. Plant Physiol. 15(4) 350-358.
Zakaria, S., Matsuda, T., Tajima, S. & Nitta, Y. 2002. Effect of high temperature at ripening stage on the reserve accumulation in
seed in some rice cultivars. Plant Prod. Sci. 5(2): 160-168.
Zheng, W.H., Jun, M., Yi, L.X., Yan, L., Ping, Z.R., Yuan, L.H. &
Ren-Quan, W. 2005. Screening identification indexes of
drought resistance at the flowering stage in rice. Acta Agron. Sinica. 31(11):
1485-1489.
Zulkarnain, W.M., Ismail, M.R., Ashrafuzzaman, M., Saud, H.M. & Haroun, I.C. 2009. Growth, physiological and
biochemical responses of Malaysia rice cultivars to water stress. Pertanika J. Trop. Agric. Sci. 32(2): 323-333.
*Corresponding author; email: sfiaz@uoh.edu.pk
|