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References
Ahmed AO, Obeid A, Dafallah B (2012). The influence of characters association on behavior of sugarcane genotypes (Saccharum spp) for cane yield and juice quality. World J. Agric. Res. 6(2):207-211. |
|
Ali Q, Ali A, Ahsan M, Nasir IA, Abbas HG, Ashraf MA (2014a). Line× Tester analysis for morpho-physiological traits of Zea mays L seedlings. Adv. Life Sci. 1(4):242-253. |
|
Ali Q, Ali A, Awan MF, Tariq M, Ali S, Samiullah TR, Muhammad S (2014b). Combining ability analysis for various physiological, grain yield and quality traits of Zea mays L. Life Sci. J. 11(8s): 540-551. |
|
Ali Q, Ahsan M, Ali F, Aslam M, Khan NH, Munzoor M, Muhammad S (2013). Heritability, heterosis and heterobeltiosis studies for morphological traits of maize (Zea mays L.) seedlings. Adv. Life Sci. 1(1):52-63. |
|
Bakhsh A, Arshad M, Haqqan AM (2006). Effect of genotype × environment interaction on relationship between grainyield and its components in hickpea (Cicer arietinum L.). Pak. J. Bot. 38(3):683-690 |
|
Bull T (2000). The Sugarcane Plant. Chapter 4. In: M Hogarth, P Allsopp, eds.Manual of cane growing Bureau of Sugar Experimental Stations, Indooroopilly, Australia. pp. 71-83. |
|
Butt SJ, Varis S, Nasir IA, Sheraz S, Shahid A (2015). Micro Propagation in Advanced Vegetable Production: A Review. Adv. Life Sci. 2(2): 48-57. |
|
Butterfield MK, Nuss KJ (2002). Prospects for new varieties in the medium to long term: The effects of current and future breeding strategy on variety characteristics. |
|
Cha-um S, Hien NT, Kirdmanee C (2006). Disease-free production of sugarcane varieties (Saccharum officinarum L.) using in vitro meristem culture. Biotechnol. 5(4):443-448. |
|
Falconer DS, MacKay TFC (1996). Introduction to Quantitative Genetics, 4th Ed. Longmans Green, Harlow, Essex, UK. |
|
Glaz B, Kang MS (2008). Location contributions determinedvia GGE biplot analysis of multienvironment sugarcane genotype - performance trials. Crop 48: 941-950. |
|
Hanson CH, Robinson HF, Comstock RE (1956). Biometrical studies of yield in segregating population of Korean Lespedeza. Agron. J. 48:268-272. |
|
Hoy JW, Bischoff KP, Milligan SB, Gravois KA (2003). Effect of tissue culture explant source on sugarcane yield components. Euphytica 129(2):237-240. |
|
Jackson P (1994). Genetic relationships between attributes in sugarcane clones closely related to Saccharum spontaneum. Euphytica 79:101-108. |
|
Janghir GZ, Nasir IA, Iqbal M (2013). Disease free and rapid mass production of sugarcane cultivars. Adv. Life Sci. 1(3):1Ä€8. |
|
Jamoza EJ, Owuoche J, Kiplagat O, Opile W (2013). Broad-sense |
|
Khan IA, Dahot MU, Seema N, Yasmin S, Bibi S, Raza S, Khatri A (2009). Genetic variability in sugarcane plantlets developed through in vitro mutagenesis. Pak. J. Bot. 41(1):153-166. |
|
Khan IA, Dahot MU, Seema N, Yasmin S, Bibi S, Raza S and Khatri A (2010). Genetic variability inplantletsderived from callus culture in sugarcane. Pak. J. Bot. 40(2):547-564. |
|
Khan IA, Khatari A, Siddiqui MA, Nizamani GS and Raza S (2004). Performance of promising sugarcane clones for yield and quality in different ecological zones of Sindhi. Pak. J. Bot. 36(1):83-92. |
|
Kimbeng CA, Rattey AR and Hetherington M (2002). Interpretation and implications of genotype × environment interactions in advanced stage sugarcane selection trials in central Queensland. Aust. J. Agric. Res. 53(9):1035-1045. |
|
Parfitt RC (2000). Genotype × environment interaction among secondary variety trials in the northern region of the South African sugar Ind. Sug. Technol. 74:245-258. |
|
Qamar Z, Riaz S, Nasir IA, Ali Q, Husnain T (2015). Transformation and transgenic expression studies of glyphosate tolerant and cane borer resistance genes in sugarcane (Sccharum officinarum L.). Mol. Plant Breed. 6(12):1-12. |
|
Rajeswari S, Thirugnanakumar S, Anandan A, Krishnamurthi M (2009). Somaclonal variation in sugarcane through tissue culture and evaluation for quantitative and quality traits. Euphytica 168:71-80. |
|
Raza S, Qamarunnisa S, Jamil I, Naqvi B, Azhar A, Qureshi JA (2014). Screening of sugarcane somaclones of variety BL4 for agronomic characteristics. Pak. J. Bot. 46(4):1531-1535. |
|
Riaz S, Shah AH, Ali Q (2016). Study of Dichlorophenoxyacetic Acid and 6-Benzylaminopurine Effects on Callus Development in Cucurbita moschata. Mol. Plant Breed. 7(3):1-12. |
|
Sani LA, Mustapha Y (2010). Effect of genotype and 2,4-d concentration on callogenesis in sugarcane (saccharum spp. hybrids). Bayero J. Pure Appl. Sci. 3(1):238-240. |
|
Silva da FF, Pereira MG, Ramos HCC, Damasceno PC Jr., Pereira NS, Ide CD (2007). Genotypic correlations of morpho-agronomic traits in papays and implications for genetic breeding. Crop Breed. Appl. Biotechnol. 7:345-352. |
|
Sood NP, Gupta K, Srivastava RK, Gosal SS (2006). Comparative studies on field performance of micro propagated and conventionally sugarcane plants. Plant Tissue Culture Biotechnol. 16:25-29. |
|
Sharma M (2005). In Vitro Regeneration Studies of Sugarcane. M.Sc. Dissertation. Submitted To Thapar Institute of Engineering and Technology. |
|
Steel RGD, Torrie JH, Dicky DA (1997). Principles and Procedures of Statistics. A Biometrical Approach 3rd Ed. McGraw Hill Book Co. Inc. New York. pp. 400-428. |
|
Tyagi SD, Khan MH (2010). Studies on genetic variability and interrelationship among the different traits in Microsperma lentil (Lens culinaris Medik). J. Agric. Biotechnol. Dev. 2(1):015-020. |
|
Zhou MM (2005). Performance of varieties N14 and NCo376 in the South East Lowveld of Zimbabwe. Proc S. Afr. Sug. Technol. Ass. 78:137-148. |
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