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. 2021 Apr 7;10(4):716. doi: 10.3390/plants10040716

Table 1.

Information derived from previous studies on drought in rice.

Title Parents Type of Crossing Number of Marker Used Type of Marker Population Size Number of QTLs References
Mapping QTLs for root traits in a recombinant inbred population from two indica ecotypes in rice IR58821–23-B-1–2-1 X IR52561-UBN-1–1-2 RIL 367 AFLP, RFLP 166 39 [28]
A large-effect QTL for grain yield under reproductive-stage drought stress in upland rice Vandana X Way Rarem SF3 126 SSR 436 22 [29]
Locating QTLs controlling constitutive root traits in the rice population IAC 165 × Co39. IAC 165 X CO39 RIL 182 RFLP, SSR 125 42 [30]
Molecular mapping and location of QTLs for drought-resistance traits in indica rice (Oryza sativa L.) lines adapted to target environments Nootripathu X IR20 RIL 79 SSR 250 21 [31]
Using chromosome introgression lines to map Quantitative Trait Loci for photosynthesis parameters in rice (Oryza sativa L.) leaves under drought and well-watered field conditions. Haogelao X Shennong265 BC 130 SSR 94 29 [32]
Identification of QTLs controlling rice drought tolerance at seedling stage in hydroponic culture. IRAT109 X Akihikari BC 57 SSR 106 5 [33]
Genetic analysis of rainfed lowland rice drought tolerance under naturally-occurring stress in eastern India: Heritability and QTL effects. CT9993 X IR62266 DH 315 AFLP, RFLP, SSR 154 18 [34]
Quantitative Trait Loci Associated with Drought Tolerance at Reproductive Stage in Rice. CT9993 X IR62266 DH 332 AFLP, RFLP, SSR 154 69 [19]
Saturation mapping of QTL regions and identification of putative candidate genes for drought tolerance in rice. CT9993 X IR62266 DH 400 AFLP, RFLP, SSR 154 42 [35]
Grains yield QTLs with consistent-effect under reproductive- stage drought stress in rice. KaliAus X IR64
KaliAus X MTU1010
BC 4 SSR 300 3 [36]
Mapping consistent rice (Oryza sativa L.) yield QTLs under drought stress in target rainfed environments. Nootripathu X IR20 RIL 79 SSR 397 2 [37]
Identification and mapping of QTLs associated with drought tolerance traits in rice by a cross between Super Basmati and IR55419-04. IR55419-04 X Super Basmati SF2 73 SSR 418 21 [38]
Genetic variation, linkage mapping of QTL and correlation studies for yield, root, and agronomic traits for aerobic adaptation. MASARB25 X Pusa Basmati 1460
MAS26 X HKR47
SF2 50 SSR 250 35 [39]
Genetic mapping of quantitative trait loci for grain yield under drought in rice under controlled greenhouse conditions. Vandana X Cocodrie SF2 88 InDels. SNP, SSR 187 6 [18]
Identification of Quantitative Trait Loci for ABA sensitivity at seed germination and seedling stages in rice. IRAT109 X Zhenshan 97 RIL 220 SSR 154 17 [40]
Identification of quantitative trait loci for four morphologic traits under water stress in rice (Oryza sativa L.). IRAT109 X Zhenshan 97 RIL 220 SSR 180 36 [41]
Genetic Basis of Drought Resistance at Reproductive Stage in Rice: Separation of Drought Tolerance From Drought Avoidance. IRAT109 X Zhenshan 97 RIL 220 SSR 180 12 [42]
Genetic analysis for drought resistance of rice at reproductive stage in field with different types of soil. IRAT109 X Zhenshan 97 RIL 220 SSR 180 53 [43]
Locating genomic regions associated with components of drought resistance in rice: comparative mapping within and across species. CT9993 X IR62266 DH 315 AFLP, RFLP, SSR 154 41 [44]
Comparison of QTLs for rice seedling morphology under different water supply conditions. Azucena X IR64 DH 189 RFLP, SSR 96 12 [45]