Aberkane H, Belkadi B, Kehel Z, Filali-Maltouf A, Tahir IS, Meheesi S, Amri A (2021) Assessment of drought and heat tolerance of durum wheat lines derived from interspecific crosses using physiological parameters and stress indices. Agronomy 11(4):695
Aghamolki MTK, Yusop MK, Oad FC, Zakikhani H, Jaafar HZ, Kharidah S, Musa MH (2014) Heat stress effects on yield parameters of selected rice cultivars at reproductive growth stages. J Food Agric Environ 12(2):741–746
Akbar MR, Purwoko BS, Dewi IS, Suwarno WB (2018) Agronomic and drought tolerance evaluation of doubled haploid rice breeding lines derived from anther culture. SABRAO J Breeding Gen 50(2):115
Atkinson NJ, Lilley CJ, Urwin PE (2013) Identification of genes involved in the response of Arabidopsis to simultaneous biotic and abiotic stresses. Plant Physiol 162(4):2028–2041
Article CAS PubMed PubMed Central Google Scholar
Bahuguna RN, Jha J, Pal M, Shah D, Lawas LMF, Khetarpal S, Jagadish KSV (2015) Physiological and biochemical characterization of NERICA-L-44: a novel source of heat tolerance at the vegetative and reproductive stages in rice. Physiol Plant 154(4):543–559
Article CAS PubMed Google Scholar
Beena R, Vighneswaran V, Sindhumole P, Narayankutty MC, Voleti SR (2018) Impact of high temperature stress during reproductive and grain filling stage in rice. ORYZA-an Int J Rice 55(1):26–133
Bharani M, Nagarajan P, Rabindran R, Saraswathi R, Balasubramanian P, Ramalingam J (2010) Bacterial leaf blight resistance genes (Xa21, xa13 and xa5) pyramiding through molecular marker assisted selection into rice cultivars. Arch Phytopathol Plant Protection 43(10):1032–1043
Bhuyan SS, Barik DP, Dash B, Rout P, Pattnaik SS, Verma R, Katara JL, Parameswaran C, Devanna BN, Sahoo RK, Mishra A (2024) Assessment of genetic diversity in androgenic-based doubled haploid-derived improved restorer lines of indica rice. J Crop Sci Biotechnol 27(2):211–223
Catolos M, Sandhu N, Dixit S, Shamsudin NA, Naredo ME, McNally KL, Henry A, Diaz MG, Kumar A (2017) Genetic loci governing grain yield and root development under variable rice cultivation conditions. Front Plant Sci 8:1763
Article PubMed PubMed Central Google Scholar
Choudhary DK, Kasotia A, Jain S, Vaishnav A, Kumari S, Sharma KP, Varma A (2016) Bacterial-mediated tolerance and resistance to plants under abiotic and biotic stresses. J Plant Growth Regul 35:276–300
Chukwu SC, Rafii MY, Ramlee SI, Ismail SI, Oladosu Y, Muhammad I, Musa I, Ahmed M, Jatto MI, Yusuf BR (2019) Recovery of recurrent parent genome in a marker-assisted backcrossing against rice blast and blight infections using functional markers and SSRs. Plants 9:1411
Dash B, Bhuyan SS, Singh SK, Chandravani M, Swain N, Rout P, Katara JL, BN, D. and Samantaray, S. (2022) Androgenesis in indica rice: a comparative competency in development of doubled haploids. PLoS ONE 17(5):e0267442
Article CAS PubMed PubMed Central Google Scholar
Dossa GS, Torres R, Henry A, Oliva R, Maiss E, Cruz CV, Wydra K (2017) Rice response to simultaneous bacterial blight and drought stress during compatible and incompatible interactions. Eur J Plant Pathol 147:115–127
Dwiningsih Y (2020) Molecular genetic analysis of drought resistance and productivity traits of rice genotypes. University of Arkansas
Dwivedi SL, Britt AB, Tripathi L, Sharma S, Upadhyaya HD, Ortiz R (2015) Haploids: constraints and opportunities in plant breeding. Biotechnol Adv 33(6):812–829
El-Esawi MA, Alayafi AA (2019) Overexpression of rice Rab7 gene improves drought and heat tolerance and increases grain yield in rice (Oryza sativa L.). Genes 10(1):56
Article PubMed PubMed Central Google Scholar
Ferrie AM, Möllers C (2011) Haploids and doubled haploids in Brassica spp. for genetic and genomic research. Plant Cell Tissue Organ Cult 104:375–386
Fischer RA, Maurer R (1978) Drought resistance in spring wheat cultivars. I. Grain yield responses. Aust J Agric Res 29(5):897–912
Fujita D, Trijatmiko KR, Tagle AG, Sapasap MV, Koide Y, Sasaki K, Tsakirpaloglou N, Gannaban RB, Nishimura T, Yanagihara S, Fukuta Y (2013) NAL1 allele from a rice landrace greatly increases yield in modern indica cultivars. Proc Natl Acad Sci 110(51):20431–20436
Article CAS PubMed PubMed Central Google Scholar
Gaballah MM, Abu El-Ezz AF (2019) Genetic behavior of some rice genotypes under normal and high temperature stress. Alexandria Sci Exchange J 40:370–384
Ghadirnezhad SSR, Pirdashti H, Esmaeili MA, Nematzade GA (2023) Biochemical and physiological characteristics of mutant genotypes in rice (Oryza sativa L.) contributing to salinity tolerance indices. Gesunde Pflanzen. 75(2):303–315
Govintharaj P, Manonmani S, Karthika G, Robin S (2020) Introgression of bacterial blight resistance genes (Xa 21, xa 13 and xa 5) into CB 174 R, an elite restorer line in rice. Biol Life Sci Forum 4(1):72 (MDPI)
Graham-Acquaah S, Siebenmorgen TJ, Reba ML, Massey JH, Mauromoustakos A, Adviento-Borbe A, January R, Burgos R, Baltz-Gray J (2019) Impact of alternative irrigation practices on rice quality. Cereal Chem 96(5):815–823
Guan YS, Serraj R, Liu SH, Xu JL, Ali J, Wang WS, Venus E, Zhu LH, Li ZK (2010) Simultaneously improving yield under drought stress and non-stress conditions: a case study of rice (Oryza sativa L.). J Exp Bot 61(15):4145–4156
Huang JZ, E ZG, Zhang HL, Shu QY (2014) Workable male sterility systems for hybrid rice: genetics, biochemistry, molecular biology, and utilization. Rice 7:1–4
IRRI (Knowledge-bank) http://www.knowledgebank.irri.org/ricebreedingcourse/Breeding_for_disease_resistance_Blight.htm
Ji K, Wang Y, Sun W, Lou Q, Mei H, Shen S, Chen H (2012) Drought-responsive mechanisms in rice genotypes with contrasting drought tolerance during reproductive stage. J Plant Physiol 169(4):336–344
Article CAS PubMed Google Scholar
Jiang P, Xie X, Huang M, Zhou X, Zhang R, Chen J, Wu D, Xia B, Xiong H, Xu F, Zou Y (2016) Potential yield increase of hybrid rice at five locations in southern China. Rice 9:1–14
Joseph M, Gopalakrishnan S, Sharma R, Singh V, Singh A, Singh N, Mohapatra T (2004) Combining bacterial blight resistance and Basmati quality characteristics by phenotypic and molecular marker-assisted selection in rice. Mol Breed 13(4):377–387
Karwa S, Bahuguna RN, Chaturvedi AK, Maurya S, Arya SS, Chinnusamy V, Pal M (2020) Phenotyping and characterization of heat stress tolerance at reproductive stage in rice (Oryza sativa L.). Acta Physiol Plant 42:1–6
Kumar A, Dixit S, Ram T, Yadaw RB, Mishra KK, Mandal NP (2014) Breeding high-yielding drought-tolerant rice: genetic variations and conventional and molecular approaches. J Exp Bot 65(21):6265–6278
Article CAS PubMed PubMed Central Google Scholar
Lafitte R (2002) Relationship between leaf relative water content during reproductive stage water deficit and grain formation in rice. Field Crop Res 76(2–3):165–174
Lawas LM, Zuther E, Jagadish SK, Hincha DK (2018) Molecular mechanisms of combined heat and drought stress resilience in cereals. Curr Opin Plant Biol 45:212–217
Article CAS PubMed Google Scholar
Liu H, Zeng B, Zhao J, Yan S, Wan J, Cao Z (2023) Genetic research progress: heat tolerance in rice. Int J Mol Sci 24(8):7140
Article CAS PubMed PubMed Central Google Scholar
Mew TW, Wu SZ, Horino O (1982) Pathotypes of Xanthomonas oryzae pv. oryzae in Asia. In IRPS 75:2–7
Mondo VVH, Nascente AS, Neves PD, Taillebois JE, Neto MO (2016) Flowering synchronization in hybrid rice parental lines. Aust J Crop Sci 10(8):1213–21 (Vaz Mondo)
Odiyo O, Njoroge K, Chemining’wa GN, Beyene Y (2014) Performance and adaptability of doubled haploid maize testcross hybrids under drought stress and non-stress conditions
Palanisamy D, Marappan S, Ponnuswamy RD, Mahalingam PS, Bohar R, Vaidyanathan S (2019) Accelerating hybrid rice breeding through the adoption of doubled haploid technology for R-line development. Biologia 74(10):1259–1269
Piveta LB, Roma-Burgos N, Noldin JA, Viana VE, Oliveira CD, Lamego FP, Avila LAD (2020) Molecular and physiological responses of rice and weedy rice to heat and drought stress. Agriculture 11(1):9
Pradhan SK, Nayak DK, Mohanty S, Behera L, Barik SR, Pandit E, Lenka S, Anandan A (2015) Pyramiding of three bacterial blight resistance genes for broad-spectrum resistance in deepwater rice variety, Jalmagna. Rice 8:1–14
Pradhan KC, Pandit E, Mohanty SP, Moharana A, Sanghamitra P, Meher J, Jena BK, Dash PK, Behera L, Mohapatra PM, Bastia DN, Pradhan SK (2022) Development of broad spectrum and durable bacterial blight resistant variety through pyramiding of four resistance genes in rice. Agronomy. 12(8):1903
Prasanth VV, Basava KR, Babu MS, Devi SR, Mangrauthia SK, Sarla VSRN (2016) Field level evaluation of rice introgression lines for heat tolerance and validation of markers linked to spikelet fertility. Physiol Mol Biol Plants 22:179–192
Comments (0)