
Haplotype Diversity at Sub1 Locus and Allelic Distribution Among Rice Varieties of Tide and Flood Prone Areas of South-East Asia
Received date: 2016-10-06
Accepted date: 2017-01-13
Online published: 2017-04-28
Single nucleotide polymorphisms and restriction digestion-based haplotype variations among 160 flood prone rice varieties were analyzed with enzymes Alu I and Cac8 I to generate polymorphisms at Sub1A and Sub1C loci (conferring submergence tolerance), respectively. Haplotype associated with phenotype was used to study the haplotype variations at Sub1A and Sub1C loci and to determine their functional influence on submergence tolerance and stem elongation. Three patterns at Sub1A locus, Sub1A0 (null allele), Sub1A1 (does not cut) and Sub1A2 (one SNP), and four patterns at Sub1C locus, Sub1C1, Sub1C2, Sub1C3 and Sub1C4, were generated. Both tolerant Sub1A1 and intolerant Sub1A2 had the same length, but the difference was presence of a restriction site in the Sub1A2, but absent at the Sub1A1. Further, two types of polymorphism were detected at the Sub1C, one included major length polymorphisms (165, 170 and 175 bp) and the other was a single restriction site at different position. Eight haplotypes (different combinations of the two loci), A1C1, A1C2, A1C4, A2C2, A2C4, A0C2, A0C3 and A0C4, were detected among 160 varieties. Haplotype A1C1 was comparatively more related to haplotypes A1C2 and A1C4, having the same Sub1A allele, and these haplotypes were found only in Bangladeshi, Sri Lankan and Indian varieties. Most tolerant varieties in A1C1 haplotype showed slow elongation, having tolerant specific Sub1A1 and Sub1C1 alleles. Further, the varieties Madabaru and Kottamali (A2C2) also showed moderate level of tolerance without Sub1A1 allele. These varieties were different with FR13A and also suspected to carry different novel tolerant genes at other loci. These materials could be used for hybridization with Sub1 varieties for pyramiding additional tolerant specific alleles into a single genotype for improving submergence tolerance in rice.
Key words: haplotype; Sub1; allele; single nucleotide polymorphism; submergence
S. M. Masuduzzaman A., Maksudul Haque Md., K. M. Shamsuddin A., A. Salam M., Ansar Ali Md. . Haplotype Diversity at Sub1 Locus and Allelic Distribution Among Rice Varieties of Tide and Flood Prone Areas of South-East Asia[J]. Rice Science, 2017 , 24(4) : 198 -206 . DOI: 10.1016/j.rsci.2017.01.002
| 1 | Ahmed N, Siddiqui A A, Ahmed A.2000. DDRT-PCR: Use of agarose gels for detection of amplified products. Mol Vis, 6(19): 144-147. |
| 2 | Bai G H, Guo P G, Kolb F L.2003. Genetic relationships among head blight resistant cultivars of wheat assessed on the basis of molecular markers.Crop Sci, 43(2): 498-507. |
| 3 | Bailey-Serres J, Fukao T, Ronald P, Ismail A, Heuer S, Mackill D.2010. Submergence tolerant rice: SUB1’s journey from landrace to modern cultivar.Rice, 3(2): 138-147. |
| 4 | Chapman J M, Cooper J D, Todd J A, Clayton D G.2003. Detecting disease associations due to linkage disequilibrium using haplotype tags: A class of tests and the determinants of statistical power.Hum Hered, 56: 18-31. |
| 5 | Chinq A, Caldwell K S, Junq M, Dolan M, Smith O S, Tinger S, Morgante M, Rafalski A J.2002. SNP frequency, haplotype structure and linkage disequilibrium in elite maize inbred lines.BMC Genet, 3: 19. |
| 6 | Clark A G, Weiss K M, Nickerson D A, Taylor S L, Buchanan A, Stengard J, Salomaa V, Vartiainen E, Perola M, Boerwinkle E, Sing C F.1998. Haplotype structure and population genetic inferences from nucleotide-sequence variation in human lipoprotein lipase.Am J Hum Genet, 63(2): 595-612. |
| 7 | Clark T G, Andrew T, Cooper G M, Margulies E H, Mullikin J C, Balding D J.2007. Functional constraint and small insertions and deletions in the ENCODE regions of the human genome.Genome Biol, 8: 180. |
| 8 | Collard B C Y, Septiningsih E M, Das S R, Carandang J J, Pamplona A M, Sanchez D L, Kato Y, Ye G, Reddy J N, Singh U S, Iftekharuddaula K M, Venuprasad R, Vera-Cruz C N, Mackill D J, Ismail A M.2013. Developing new flood-tolerant varieties at the International Rice Research Institute (IRRI).SABRAO J Breeding Genet, 45(1): 42-56. |
| 9 | Daly M J, Rioux J D, Schaffner S F, Hudson T J, Lander E S.2001. High-resolution haplotype structure in the human genome.Nat Genet, 29: 229-232. |
| 10 | Ella E S, Kawano N, Yamauchi Y, Tanaka K, Ismail A M.2003. Blocking ethylene perception enhances flooding tolerance in rice.Func Plant Biol, 30(7): 813-819. |
| 11 | Estoup A, Tailliez C, Cornuet J M, Solignac M.1995. Size homoplasy and mutational processes of interrupted microsatellites in two bee species, Apis mellifera and Bombus terrestris (Apidae).Mol Biol Evol, 12(6): 1074-1084. |
| 12 | Glaubitz J C, Rhodes O E, Dewoody J A.2003. Prospects for inferring pairwise relationships with single nucleotide polymorphisms.Mol Ecol, 12(4): 1039-1047. |
| 13 | Gupta P K, Roy J K, Prasad M.2001. Single nucleotide polymorphisms: A new paradigm for molecular marker technology and DNA polymorphism detection with emphasis on their use in plants.Curr Sci, 80(4): 524-535. |
| 14 | Hampe J, Schreiber S, Krawczak M.2003. Entropy-based SNP selection for genetic association studies.Hum Genet, 114(1): 36-43. |
| 15 | Iftekharuddaula K M, Newaz M A, Salam M A, Ahmed H U, Mahbub M A A, Septiningsih E M, Collard B C Y, Sanchez D L, Pamplona A M, Mackill D J.2011. Rapid and highprecision marker-assisted backcrossing to introgress the SUB1 QTL into BR11, the rainfed lowland rice mega variety of Bangladesh.Euphytica, 178(1): 83-97. |
| 16 | Jackson M B, Waters I, Setter T, Greenway H.1987. Injury to rice plants caused by complete submergence: A contribution of ethylene.J Exp Bot, 38(11): 1826-1838. |
| 17 | Jackson M B, Ram P C.2003. Physiological and molecular basis of susceptibility and tolerance of rice plants to complete submergence.Ann Bot, 91(2): 227-241. |
| 18 | Johnson G C L, Esposito L, Barratt B J, Smith A N, Heward J, Genova G D, Ueda H, Cordell H J, Eaves I A, Dudbridge F, Twells R C J, Payne F, Hughes W, Nutland S, Stevens H, Carr P, Tuomilehto-Wolf E, Tuomilehto J, Gough S C L, Clayton D G, Todd J A.2001. Haplotype tagging for the identification of common disease genes.Nat Genet, 29: 233-237. |
| 19 | Judson R, Salisbury B, Schneider J, Windemuth A, Stephens J C.2002. How many SNPs does a genome-wide haplotype map require?Pharmacogenomics, 3(3): 379-391. |
| 20 | Kruglyak L.1999. Prospects for whole-genome linkage disequilibrium mapping of common disease genes.Nat Genet, 22: 139-144. |
| 21 | Liu J F, Papasian C, Deng H W.2007. Incorporating single-locus tests into haplotype cladistic analysis in case-control studies.PLoS Genet, 3(3): e46. |
| 22 | Lorenz T C.2012. Polymerase chain reaction: Basic protocol plus troubleshooting and optimization strategies.J Vis Exp, 63: e3998. |
| 23 | Lu Y L, Shah T, Hao Z F, Taba S, Zhang S H, Gao S B, Liu J, Cao M J, Wang J, Prakash A B, Rong T Z, Xu Y B.2011. Comparative SNP and haplotype analysis reveals a higher genetic diversity and rapider LD decay in tropical than temperate germplasm in maize.PLoS One, 6(9): e24861. |
| 24 | Luca M D, Roshina N V, Geiger-Thornsberry G L, Lyman R F, Pasyukova E G, Mackay T F C.2003. Dopa decarboxylase (Ddc) affects variation in drosophila longevity.Nat Genet, 34: 429-433. |
| 25 | Mackill D J.1986. Rainfed lowland rice improvement in South and Southeast Asia: Results of a survey. In: Progress in Rainfed Lowland Rice. Los Baños, the Philippines: International Rice Research Institute: 115-144. |
| 26 | McCartney C A, Somers D J, Fedak G, Cao W.2004. Haploytpe diversity at fusarium head blight resistance QTLs in wheat.Theor Appl Genet, 109(2): 261-271. |
| 27 | McLauchlan A, Ogbonnaya F C, Hollingsworth B, Carter M, Gale K R, Henry R J, Holton T A, Morell M K, Rampling L P, Sharp P J, Shariflou M R, Jones M G K, Appels R.2001. Development of robust PCR-based DNA markers for each homoeo-allele of granule-bound starch synthase and their application in wheat breeding programs.Aust J Agric Res, 52(11/12): 1409-1416. |
| 28 | Mispan M S, Zhang L, Feng J, Gu X Y.2013. Quantitative trait locus and haplotype analyses of wild and crop-mimic traits in U.S. weedy rice.G3, 3(6): 1049-1059. |
| 29 | Mogg R, Batley J, Hanley S, Edwards D, O’Sullivan H, Edwards K.2002. Characterising the flanking regions of Zea mays microsatellites reveals a large number of useful sequence polymorphisms.Theor Appl Genet, 105(4): 532-543. |
| 30 | Neeraja C N, Maghirang-Rodriguez R, Pamplona A, Heuer S, Collard B C Y, Septiningsih E M, Vergara G, Sanchez D, Xu K, Ismail A M, Mackill D J.2007. A marker-assisted backcross approach for developing submergence-tolerant rice cultivars.Theor Appl Genet, 115(6): 767-776. |
| 31 | Rafalski A.2002. Applications of single nucleotide polymorphisms in crop genetics.Curr Opin Plant Biol, 5(2): 94-100. |
| 32 | Reed D H, Frankham R.2003. Correlation between fitness and genetic diversity regulatory variation in mouse genes.Nat Genet, 32: 1532-1739. |
| 33 | Sardana S.1997. Submergence tolerance and elongation ability in newly developed lines of rice for Tripura.Ind J Hill Farming, 10(1/2): 111-112. |
| 34 | Sasaki R Z C, Zhao Z C.2000a. Submergence tolerance of transplanted rice seedlings with several plant ages in leaf number: The duration of submergence and the role of endosperm reserves.Jpn J Crop Sci, 69(3): 365-371. |
| 35 | Sasaki R Z C, Zhao Z C.2000b. Submergence tolerance of transplanted rice seedlings with several plant ages in leaf number: Relationship between the growth during submergence and survival.Jpn J Crop Sci, 69(3): 372-379. |
| 36 | Septiningsih E M, Pamplona A M, Sanchez D L, Neeraja C N, Vergara G V, Heuer S, Ismail A M, Mackill D J.2009. Development of submergence-tolerant rice cultivars: The Sub1 locus and beyond.Ann Bot, 103(2): 151-160. |
| 37 | Septiningsih E M, Collard B C Y, Heuer S, Bailey-Serres J, Ismail A M, Mackill D J.2013. Applying genomics tools for breeding submergence tolerance in rice. In: Varshney R K, Tuberosa R. Translational Genomics for Crop Breeding: Improvement for Abiotic Stress, Quality and Yield Improvement. USA: Wiley- Blackwell: 9-30. |
| 38 | Septiningsih E M, Hidayatun N, Sanchez D L, Nugraha Y, Carandang J, Pamplona A M, Collard B C Y, Ismail A M, Mackill D J.2015. Accelerating the development of new submergence tolerant rice varieties: The case of Ciherang-Sub1 and PSB Rc18-Sub1.Euphytica, 202(2): 259-268. |
| 39 | Servin B, Martin O C, Me´zard M, Hospital F.2004. Toward a theory of marker-assisted gene pyramiding.Genetics, 168(1): 513-523. |
| 40 | Setter T L, Ellis M, Laureles E V, Ella E S, Senadhira D, Mishra S B, Sarkarung S, Datta S.1997. Physiology and genetics of submergence tolerance in rice.Ann Bot, 79: 67-77. |
| 41 | Shariflou M R, Sharp P J.1999. A polymorphic microsatellite in the 3’ end of ‘waxy’ genes of wheat, Triticum aestivum.Plant Breeding, 118(3): 275-277. |
| 42 | Singh N, Dang T T M, Vergara G V, Pandey D M, Sanchez D, Neeraja C N, Septiningsih E M, Mendioro M, Tecson-Mendoza E M, Ismail A M, Mackill D J, Heuer S.2010. Molecular marker survey and expression analyses of the rice submergence tolerance gene SUB1A.Theor Appl Genet, 121(8): 1441-1453. |
| 43 | Stephens J C, Schneider J A, Tanguay D A, Choi J, Acharya T, Stanley S E, Jiang R, Messer C J, Chew A, Han J H, Duan J C, Carr J L, Lee M S, Koshy B, Kumar A M, Zhang G, Newell W R, Windemuth A, Xu C B, Kalbfleisch T S, Shaner S L, Arnold K, Schulz V, Drysdale C M, Nandabalan K, Judson R S, Ruano G, Vovis G F.2001. Haplotype variation and linkage disequilibrium in 313 human genes.Science, 293: 489-493. |
| 44 | Viard F, Franck P, Dubois M P, Estoup A, Jarne P.1998. Variation of microsatellite size homoplasy across electromorphs, loci, and populations in three invertebrate species.J Mol Evol, 47(1): 42-51. |
| 45 | Wang Z K, Ni Z F, Wu H L, Nie X L, Sun Q X.2006. Heterosis in root development and differential gene expression between hybrids and their parental inbreds in wheat (Triticum aestivum L.).Theor Appl Genet, 113(7): 1283-1294. |
| 46 | Xu K, Mackill D J.1996. A major locus for submergence tolerance mapped on rice chromosome 9.Mol Breeding, 2(3): 219-224. |
| 47 | Xu K, Xu X, Ronald P C, Mackill D J.2000. A high-resolution linkage map of the vicinity of the rice submergence tolerance locus Sub1.Mol Gen Genet, 263(4): 681-689. |
| 48 | Xu K, Xu X, Fukao T, Canlas P, Maghirang-Rodriguez R, Heuer S, Ismail A M, Bailey-Serres J, Ronald P C, Mackill D J.2006. Sub1A is an ethylene-response-factor-like gene that confers submergence tolerance to rice.Nature, 442: 705-708. |
| 49 | Yamada N.1959. Physiological basis of resistance of rice plant against overhead flooding.Bull Nat Inst Agric Sci, 8: 110. |
| 50 | Yamamori M, Quynh N T.2000. Differential effects of Wx-A1, -B1 and -D1 protein deficiencies on apparent amylose content and starch pasting properties in common wheat.Theor Appl Genet, 100(1): 32-38. |
| 51 | Zhang K, Sun F Z, Zhao H Y.2005. Haplore: A program for haplotype reconstruction in general pedigrees without recombination.Bioinformatics, 21(1): 90-103. |
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