Inheritance, heterosis and combinatorial ability in G. hirsutum L. G. barbadense L. interspecific crosses
Valentina Dimitrova
, Minka Koleva
Abstract: Five G. hirsutum and three G. barbadense (FR-B-201, FR-B-202 and FR-B-203) varietis were included in reciprocal crosses to study the inheritance, heterosis and combining ability of the parent forms for productivity/plant, number of bolls, boll weight, lint percentage and fiber lenght. It was found that the inheritance of productivity/plant was mainly with positive overdominance and independenly of crossing direction, with manifested heterosis from 5.2% to 36.1% and 7.2% to 32.7% respectively, in the crosses with G. hirsutum female parent and G. barbadense female parent. The inheritance of longer fiber of the G. barbadense species was incompletely dominant in some cases with positive overdominance. Genetic control was mainly non-additive for the studied traits, except for lint percentage, it was additive or non-additive depending on the direction of crossing. The variety Chirpan-539 (G. hirsutum) was idenfied as good general combiner for productivity and lint percentage, the varieties FR-B-102 and FR-B-103 (G. barbadense) were identified as good general combiners for fiber length.
Keywords: combining ability; cotton; genetic control; heterosis; interspecific hybridization
Citation: Dimitrova, V. & Koleva, M. (2024). Inheritance, heterosis and combinatorial ability in G. hirsutum L. × G. barbadense L. interspecific crosses. Bulg. J. Agric. Sci., 30(6), 1020–1032
References: (click to open/close) | Adetunji, S. T. (1997). Inheritance, heterosis and combinative ability in interspecific cotton hybrids Gossypium hirsutum L. × G. barbadense L. Dissertation for awarding the scientific and educational degree "Doctor" (PhD), Specialized Scientific Council for Plant Breeding and Plant Biotechnologies at VAK, Sofia. Adsare, A. D., Salve, A. N. & Patil, N. P. (2017). Heterosis studies for quantitative traits in interspecific hybrids of cotton (G hirsutum L. x G barbadense L.). Journal of Phytology, 9(1), 11-14. Anwar, M., Iqbal, M. Z., Abro, A. A., Memon, S., Bhutto, L. A., Memon, S. A. & Peng, Y. (2022). Inter-Specific hybridization in cotton (Gossypium hirsutum) for crop improvement. Agronomy, 12(12), 3158. https://doi.org/10.3390/agronomy12123158. Basal, H., Unay, A., Canavar, O. & Yavas, I. (2009). Combining ability for fiber quality parameters and within-boll yield components in intraspecific and interspecific cotton populations. Span J. Agric. Res.,7(2), 364-374. Available online at: www. inia.es/sjar. Bölek, Y., Çokkizgin, H. & Bardak, A. (2014). Genetic analysis of fiber traits in cotton. KSU J. Nat. Sci., 17(1), 15-20. Borzan, G. & Guvercin, R. S. (2021). Combining ability and hybrid vigor in interspecific (Gossypium hirsutum L. x Gossypium barbadense L.) line x tester hybrids of cotton. Turk. J. Field Crops, 26(1), 96-102. DOI: 10.17557/tjfc.871366. Bozhinov, M. & Dimitrova, L. (1974). The Bulgarian cotton - a specific ecological group of the species G. hirsutum L. Agricultural Science, 1 (Bg). Chaudhry, M. R. & Guitchounts, A. (2003). Cotton Facts. Technical Paper No. 25 of the Common Fund for Commodities. International Cotton Advisory Committee, First Edition 2003. ISBN 0-9704918-3-2. Library of Congress Control No. 2003 107 604. Chen, Y., Liu, G., Ma, H., Song, Z., Zhang, C., Zhang, J., Zhang, J., Wang, F. & Zhang, J. (2018). Identification of introgressed alleles conferring high fiber quality derived from Gossypium barbadense L. in secondary mapping populations of G. hirsutum L. Front. Plant Sci., 9,1023. doi: 10.3389/fpls.2018.01023. Çoban, M., Ünay, A., Çifci, H. & İlhan, B. (2015). Effects of interspecific hybridization on cotton (Gossypium hirsutum L. × Gossypium barbadense L.). October 2015, Conference: ICAC 12th Inter-Regional Cooperative Research Network on Cotton for the Mediterranean and Middle East Regions At: Egypt. doi: https://doi.org/10.20546/ijcmas.2018.710.399. Çoban, M. & Ünay, A. (2017). Gene action and useful heterosis in interspecific cotton crosses (G hirsutum L. x G barbadense L.). Journal of Agricultural Sciences, 4(23), 438-443. Furong, W., Gong, Y., Zhang, C., Liu, G., Wang, L. Xu, Z. & Zhang, J. (2011). Genetic effects of introgression genomic components from Sea Island cotton (Gossypium barbadense L.) on fiber related traits in upland cotton (G. hirsutum L.). Euphytica, 181(1), 41-53. Genchev, G., Marinkov, V., Yovcheva, V. & Ognyanova, A. (1975). Biometrical methods in plant science, genetics and breeding. Zemizdat, Sofia, (Bg). Grover, C. E., Zhu, X., Grupp, K. K., Jareczek, J. J., Gallagher, J. P., Szadkowski, E., Seijo, J. G. & Wendel, J. F. (2015). Molecular confirmation of species status for the allopolyploid cotton species, Gossypium ekmanianum Wittmack. Genetic Resourses and Crop Evolution, 62, 103–114. doi: 10.1007/s10722-014-0138-x. Gungor, H. & Efe, L. (2017). A heterosis study for fiber quality traits in cotton. Journal of Natural Science, 20(1), 54-66. DOI: 10.18016/ksujns.65079, ISSN & 1309-1743. Hosseini, G. (2014). Estimation of genetic parameters for quantitative and qualitative traits in cotton cultivars (Gossypium hirsutum L. & Gossypium barbadense L.) and new scaling test of additive – dominance model. Journal of Plant Molecular Breeding (JPMB), 2(1), 45-63. Hu, Y., Chen, J., Fang, L., Zhang, Z., Ma, W., Niu, Y., Ju, L., Deng, J., Zhao, T., Lian, J., Baruch, K., Fang, D., Liu, X., Yong-ling, R., Rahman, M.-ur, Han, J., Wang, K., Wang, Q., Wu, H., Mei, G., Zang, Y., Han, Z., Xu, Ch., Shen, W., Yang, D., Si, Z., Dai, F., Zou, L., Huang, F., Bai, Y., Zhang, Y., Brodt, A., Ben-Hamo, H., Zhu, X., Zhou, B., Guan, X., Zhu, Sh., Chen, X. & Zhang, T. (2019). Gossypium barbadense and Gossypium hirsutum genomes provide insights into the origin and evolution of allotetraploid cotton. Nature Genetics, 51(4), 739–748. https://doi.org/10.1038/s41588-019-0371-5. Koynov, G. & Stoilova, A. (1996). A new variety long fiber cotton. Plant Science, l(4) XXXIII, Agricultural Academy, Sofia, 13-15 (Bg). Li, T., Wang, F., Yasir, M., Li, K., Qin, Y., Zheng, J., Luo, K., Zhu, S., Zhang, H., Jiang, Y., Zhang, Y. & Rong, J. (2022) Expression patterns divergence of reciprocal F1 hybrids between Gossypium hirsutum and Gossypium barbadense reveals overdominance mediating interspecific biomass heterosis. Front. Plant Sci., 13, 892805. doi: 10.3389/fpls.2022.892805. Malathi, S., Patil, R. S. & Saritha, H. S. (2019). Heterosis studies in interspecific cotton hybrids (G hirsutum L. x G barbadense L.) under irrigated condition. Electronic Journal of Plant Breeding, 10(2), 852-861. Mehboob-ur-Rahman, Shaheen, T., Tabbasam, N., Iqbal, M. A., Ashraf, M., Zafar, Y. & Paterson, A. H. (2012). Cotton genetic resources. A review. Agron. Sustain. Dev., 32, 419–432. doi: 10.1007/s13593-011-0051-z. Mingbao, L., Guo, X., Zhang, Y. & Yao, J. (2010). Genetic effects of special chromosome from Gossypium barbadense L. on fiber quality in G. hirsutum L. Journal of Natural Fibers, 7(3), 178-193. Munir, S., Qureshi, M. K., Shahzad, A. N., Manzoor, H., Shahzad, M. A., Aslam, K. & Athar, H. (2017). Assessment of gene action and combining ability for fibre and yield contributing trais in interspecific and intraspecific hybrids of cotton. Czech J. Genet. Plant Breed., 54(2), 71-77. doi: 10.17221/54/2017-CJGPB. Ognyanova, A. (1975). Elements of Biometric Genetics. Biometric methods in plant breeding, genetics and selection. Zemizdat, Sofia, 216-304 (Bg). Patel, D. H., Patel, D. U. & Kumar, V. (2014). Heterosis and combining ability analysis in tetraploid cotton (G.hirsutum L. and G.barbadense L.). Electronic J. Plant Breed., 5(3), 408-414. Rajeev, S., Patil, S. S., Manjula, S. M., Pranesh, K. J., Srivalli, P. & Kencharaddi, H. G. (2018). Studies on heterosis in cotton interspecific heterotic group hybrids (G.hirsutum x G.barbadense) for seed cotton yield and its components. Int. J. Curr. Microbiol. App. Sci., 7(10), 3437-3451. Roy, U., Paloti, M. C., Patil, R. S. & Katageri, I. S. (2018). Combining ability analysis for yield and yield attributing traits in interspecific (G hirsutum L. x G barbadense L.) hybrids of cotton. Electronic Journal of Plant Breeding, 9(2), 458-464. Sanamyan, M. F., Bobohujayev, S. U., Abdukarimov, S. S., Makamov, A. K. & Silkova, O. G. (2022). Features of chromosome introgression from Gossypium barbadense L. into G. hirsutum L. during the development of alien substitution lines. Plants, 11(4), 542. https://doi.org/10.3390/ plants11040542. Savchenko, V. K. (1984). Genetic analysis in netlike test crosses. Science and Technic, Minsk, (Ru). Shiming, L., Llewellyn, D. J., Stiller, W. N., Jacobs, J., Lacape, J.-M. &. Constable, G. A. (2011). Heritability and predicted selection response of yield components and fibre properties in an inter-specific derived RIL population of cotton. Euphytica, 178(3), 309-320. Stoilova, A. (1987). Genetic studies in the hybridization of the species Gossypium hirsutum L. × G. barbadense L. - Dissertation for the award of the scientific degree Candidate of Biological Sciences (PhD), Specialized Scientific Council for Genetics, BAN, Sofia (Bg). Tyagi, P., Bowman, D. T., Edmisten, K., Bourland, F. M., Campbell, B. T., Fraser, D. E., Wallace, T. P. & Kuraparthy, V. (2014). Components of hybrid vigor in upland cotton (Gossypium hirsutum L.) and their relationship with environment. Euphytica, 195(1), 117–127. Unay, A., Altintas, D. & Çoban, M. (2018). The determination of leaf anatomy, yield and quality characteristics in F1 and F2 generations of interspecific cotton hybrids (G hirsutum L. x G barbadense L.). Turkish Journal of Field Crops, 23(2), 146-150. Yu, J., Zhang, K., Li, S., Yu, S., Zhai, H., Wu, M., Li, X., Fan, S., Song, M., Yang, D., Li, Y. & Zhang, J. (2013). Mapping quantitative trait loci for lint yield and fiber quality across environments in a Gossypium hirsutum × Gossypium barbadense backcross inbred line population. Theor. Appl. Genet., 126, 275–287. doi: 10.1007/s00122-012-1980-x PMID: 23064252. Zhang, J. (2011). Twenty-five years of introgression breeding through interspecific hybridization between Gossypium hirsutum and Gossypium barbadense. Belt Wide Cotton Conferences, Atlanta, Georgia, January 4-7, 2011. Zhang, J. F., Percy, R. G. & McCarty, J. C. (2014). Introgression genetics and breeding between Upland and Pima cotton - a review. Euphytica, 198, 1–12. Zhang, T., Hu, Y., Jiang, W., Fang, L., Guan, X., Chen, J., Zhang, J., Saski, C.A., Scheffler, B. E., Stelly, D. M., Hulse-Kemp, A. M., Wan, Q., Liu, B., Chunxiao, L., Wang, S., Pan, M., Wang, Y., Wang, D., Ye, W., Chang, L., Zhang, W., Song, Q., Kirkbride, R. C., Chen, X. & Chen, Z. J. (2015). Sequencing of allotetraploid cotton (Gossypium hirsutum L. acc. TM-1) provides a resource for fiber improvement. Nat. Biotechnol., 33, 531–537. doi: 10.1038/nbt. 3207. Zhang, J., Wu, M., Yu, J., Li, X. & Pei, W. (2016). Breeding potential of introgression lines developed from interspecific crossing between upland cotton(Gossypium hirsutum) and Gossypium barbadense: heterosis, combining ability and genetic effects. PLoS ONE, 11(1), e0143646. doi:10.1371/journal. pone.0143646. |
|
| Date published: 2024-12-16
Download full text