Seed Viability, Seedling Growth and Yield in White Guinea Yam
Abstract
:1. Introduction
2. Materials and Methods
2.1. Experimental Location
2.2. Experimental Materials, Layout, Design and Management
2.3. Data Collection
2.4. Data Analysis
3. Results
3.1. Seed Germination and Related Attributes
3.2. Seedling Growth, Tuber Yield and Related Attribute Assessments
4. Discussion
5. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Obidiegwu, J.E.; Akpabio, E.M. The geography of yam cultivation in southern Nigeria: Exploring its social meanings and cultural functions. J. Ethn. Foods 2017, 4, 28–35. [Google Scholar] [CrossRef]
- Alabi, T.R.; Adebola, P.O.; Asfaw, A.; De Koeyer, D.; Lopez-Montes, A.; Asiedu, R. Spatial multivariate cluster analysis for defining target population of environments in West Africa for yam breeding. Intern. J. Appl. Geo. Res. 2019, 10, 1–30. [Google Scholar] [CrossRef] [Green Version]
- Baeten, L.; Jacquemyn, H.; van Calster, H.; van Beek, E.; Devlaeminck, R.; Verheyen, K.; Hermy, M. Low recruitment across life stages partly accounts for the slow colonization of forest herbs. J. Ecol. 2009, 97, 109–117. [Google Scholar] [CrossRef] [Green Version]
- Chen, F.Q.; Xie, Z.Q. Reproductive allocation, seed dispersal and germination of Myricaria laxiflora, an endangered species in the three Gorges Reservoir Area. Plant. Ecol. 2007, 191, 67–75. [Google Scholar] [CrossRef]
- Chen, F.; Liu, L.; Chen, F.; Jia, G. The ecological characteristics of seed germination and seedling establishment of Manglietia patungensis: Implication for species conservation. Am. J. Plant. Sci. 2012, 3, 1455–1461. [Google Scholar] [CrossRef] [Green Version]
- Marcos-Filho, J. Seed vigor testing: An overview of the past, present and future perspective. Sci. Agric. 2015, 72, 363–374. [Google Scholar] [CrossRef] [Green Version]
- Khan, N.; Kazmi, R.H.; Willems, L.A.J.; van Heusden, A.W.; Ligterink, W.; Hilhorst, H.W.M. Exploring the natural variation for seedling traits and their link with seed dimensions in tomato. PLoS ONE 2012, 7, e43991. [Google Scholar] [CrossRef]
- Norman, P.E.; Asfaw, A.; Tongoona, P.B.; Danquah, A.; Danquah, E.Y.; Koeyer, D.D.; Asiedu, R. Can parentage analysis facilitate breeding activities in root and tuber crops? Agric. J. 2018, 8, 95. [Google Scholar] [CrossRef] [Green Version]
- Akoroda, M.O. Sexual seed production in white yam. Seed Sci. Technol. 1985, 13, 571–581. [Google Scholar]
- Aighewi, B.A.; Asiedu, R.; Maroya, N.; Balogun, M. Improved propagation methods to raise the productivity of yam (Dioscorea rotundata Poir.). Food Secur. 2015, 7, 823–834. [Google Scholar] [CrossRef] [Green Version]
- Sadik, S.; Okereke, O.U. Flowering, pollen grain germination, fruiting, germination and seedling development of yam (Dioscorea rotundata Poir.). Ann. Bot. 1975, 39, 597–604. [Google Scholar] [CrossRef]
- Lebot, V. Tropical root and tuber crops cassava, sweet potato, yams and aroids. In Crop Production Science in Horticulture; Series 17; CABI Publishing: Wallingford, UK, 2009; 432p. [Google Scholar]
- Orkwor, G.C.; Asiedu, R.; Ekanayake, I.J. (Eds.) Food Yams: Advances in Research; International Institute of Tropical Agriculture (IITA): Ibadan, Nigeria; Nigeria and National Root Crops Research Institute (NRCRI): Umudike, Abia State, 1998; p. 249. [Google Scholar]
- Powell, A.A.; Thornton, J.M.; Mitchell, J.A. Vigour differences in brassica seed and their significance to emergence and seedling variability. J. Agric. Sci. 1991, 116, 369–373. [Google Scholar] [CrossRef]
- Demir, I.; Ermis, S.; Mavi, K.; Matthews, S. Mean germination time of pepper seed lots (Capsicum annuum L.) predicts size and uniformity of seedlings in germination tests and transplant modules. Seed Sci. Technol. 2008, 36, 21–30. [Google Scholar] [CrossRef]
- International Soil Reference and Information Centre and the Food and Agriculture Organization (ISRIC/FAO). Procedures for Soil Analysis. Technical Paper 9, 6th ed.; Van Reeuwljk, L.P., Ed.; FAO: Wangeningen, The Netherlands, 2002; p. 118. [Google Scholar]
- Islam, A.K.M.A.; Anuar, N.; Yaakob, Z. Effects of genotypes and pre-sowing treatments onseed germination behavior of Jatropha. Asian J. Plant. Sci. 2009, 8, 433–439. [Google Scholar] [CrossRef]
- AOSA. Seed Vigor Testing Handbook: Contribution No. 32 to Handbook on Seed Testing; Association of Official Seed Analysis: Springfield, IL, USA, 1983; pp. 1–93. [Google Scholar]
- Hossain, M.A.; Arefin, M.K.; Khan, B.M.; Rahman, M.A. Effects of seed treatments on germination and seedling growth attributes of Horitaki (Terminalia chebula Retz.) in the nursery. Res. J. Agric. Biol. Sci. 2006, 1, 135–141. [Google Scholar]
- Jones, K.W.; Sanders, D. The influence of soaking pepper seed in water or potassium salt solutions on germination at three temperatures. J. Seed Technol. 1987, 11, 97–102. [Google Scholar]
- Feike, T.; Weis, K.; Claupein, W.; Mueller, J. Propagation of physic nut (Jatropha curcas) on Leyte Island, Philippines. In Proceedings of the Conference on International Agricultural Research and Development, New Delhi, India, 9–11 October 2007; University of Kassel-Wittzenhauzen and University of Gottingen: Gottingen, Germany, 2007; 6p, Available online: http://www.tropentag.de/2007/abstracts/full/284.pdf (accessed on 2 March 2009).
- Burson, B.L.; Tischler, C.R.; Ocumpaugh, W.R. Breeding for reduced post-harvest seed dormancy in switchgrass: Registration of TEM-LoDorm switchgrass germplasm. J. Plant. Regist. 2009, 3, 99–103. [Google Scholar] [CrossRef]
- Sadhu, R.N.; Kaul, V. Seed coat dormancy in Robinia pseudo-acacia. India For. 1989, 115, 483–487. [Google Scholar]
- Finch-Savage, W.E.; Bassel, G. Seed vigour and crop establishment: Extending performance beyond adaptation. J. Exp. Bot. 2016, 67, 567–591. [Google Scholar] [CrossRef] [Green Version]
- Wood, D.; Morris, W. Ecological constraints to seedling establishment on the pumice plains, Mount St. Helens, Washington. Am. J. Bot. 1990, 77, 1411–1418. [Google Scholar] [CrossRef]
- Zhang, J.; Maun, M. Establishment and growth of Panicum virgatum L. seedlings on a Lake Erie sand dune. Bull. Torrey Bot. Club 1991, 118, 141–153. [Google Scholar] [CrossRef]
- Moegenburg, S. Sabal palmetto seed size: Causes of variation, choices of predators, and consequences for seedlings. Oecologia 1996, 106, 539–543. [Google Scholar] [CrossRef] [PubMed]
- Castro, J.; Hodar, J.; Gomez, J. Seed size. In Handbook of Seed Science and Technology; CRC Press: Boca Raton, FL, USA, 2006; p. 397. [Google Scholar]
- Cornet, D.; Sierre, J.; Tournebize, R.; Nez, B. Yams (Dioscorea Spp.) Plant Size Hierarchy and Yield Variability: Emergence Time is Critical. Eur. J. Agron. 2014, 55, 100–107. [Google Scholar] [CrossRef]
Macronutrients | |||||||
---|---|---|---|---|---|---|---|
Medium | pH (H2O)1:1 | %OC | N (%) | P (%) | K (%) | Mg (%) | Ca (%) |
Cocopeat | 4.61 | 1.401 | 0.133 | 0.057 | 0.380 | 0.199 | 1.618 |
Topsoil | 6.08 | 1.489 | 0.078 | 0.0004 | 0.007 | 0.019 | 0.050 |
Micronutrients | |||||||
Na (%) | Zn (%) | Cu (%) | Mn (%) | Fe (%) | |||
Cocopeat | 0.339 | 0.008 | 0.002 | 0.019 | 0.006 | ||
Topsoil | 0.003 | 0.001 | 0.002 | 0.043 | 0.015 |
Family | DFSG | DAYSG | CVG | SES | GI | FGP | SVI |
---|---|---|---|---|---|---|---|
North Carolina 1 | |||||||
TDr1676 | 20.5 | 39.0 | 2.33 | 39.7 | 5.2 | 81.45 | 332.0 |
TDr1677 | 23.5 | 74.0 | 2.30 | 32.3 | 0.9 | 30.16 | 76.0 |
TDr1678 | 26.0 | 72.0 | 2.30 | 26.4 | 0.8 | 31.36 | 87.0 |
TDr1679 | 17.5 | 30.0 | 2.49 | 80.4 | 72.3 | 88.00 | 628.0 |
TDr1680 | 18.5 | 33.0 | 2.47 | 91.6 | 17.5 | 81.37 | 358.0 |
TDr1681 | 23.5 | 36.0 | 2.33 | 55.7 | 4.0 | 90.79 | 304.0 |
TDr1682 | 22.0 | 36.0 | 2.42 | 69.5 | 12.5 | 73.80 | 368.0 |
TDr1683 | 22.0 | 42.0 | 2.36 | 46.8 | 6.8 | 73.05 | 391.0 |
TDr1684 | 18.5 | 34.0 | 2.42 | 61.3 | 15.2 | 84.8 | 689.0 |
Mean | 21.3 | 44.0 | 2.38 | 56.0 | 15.0 | 70.5 | 359.0 |
LSD(0.05) | 2.50 | 4.13 | 0.03 | 2.98 | 0.77 | 5.19 | 140.5 |
Polycross | |||||||
TDr1685 | 19.0 | 36.0 | 2.35 | 53.2 | 12.2 | 82.4 | 438.0 |
TDr1686 | 26.5 | 71.0 | 2.26 | 22.9 | 2.1 | 40.4 | 92.0 |
TDr1687 | 22.0 | 69.0 | 2.28 | 28.3 | 4.9 | 45.0 | 160.0 |
TDr1688 | 19.5 | 32.0 | 2.44 | 69.4 | 6.2 | 72.8 | 378.0 |
TDr1689 | 20.5 | 32.0 | 2.44 | 72.3 | 17.1 | 91.0 | 646.0 |
TDr1690 | 30.5 | 43.0 | 2.27 | 38.9 | 1.2 | 70.5 | 240.0 |
TDr1691 | 25.0 | 54.0 | 2.23 | 18.2 | 1.1 | 33.2 | 72.0 |
TDr1692 | 23.0 | 43.0 | 2.31 | 36.0 | 8.2 | 63.0 | 317.0 |
Mean | 23.3 | 47.5 | 2.32 | 42.4 | 6.6 | 62.3 | 292.9 |
LSD(0.05) | 3.46 | 2.82 | 0.02 | 6.99 | 0.37 | 5.92 | 95.30 |
Between NC-1&PC LSD(0.05) | 0.98 | 1.18 | 0.01 | 1.72 | 0.20 | 1.82 | 40.05 |
Within all families LSD(0.05) | 2.85 | 3.44 | 0.02 | 5.00 | 0.59 | 5.31 | 116.57 |
CV(%) | 6.1 | 3.5 | 0.5 | 4.8 | 2.5 | 3.8 | 16.8 |
Family | Sampling Regime | ||||
---|---|---|---|---|---|
21 DAS | 28 DAS | 35 DAS | 42 DAS | 49 DAS | |
North Carolina 1 | |||||
TDr1676 | 1.61 | 8.06 | 30.24 | 58.87 | 76.21 |
TDr1677 | 0.00 | 3.20 | 8.74 | 19.05 | 27.02 |
TDr1678 | 0.00 | 4.25 | 7.64 | 16.98 | 28.85 |
TDr1679 | 2.98 | 40.95 | 70.48 | 84.54 | 87.72 |
TDr1680 | 1.51 | 28.04 | 70.68 | 76.99 | 77.16 |
TDr1681 | 0.00 | 4.58 | 48.06 | 81.67 | 86.32 |
TDr1682 | 0.00 | 21.20 | 48.20 | 61.00 | 69.40 |
TDr1683 | 0.00 | 13.65 | 32.87 | 65.25 | 70.47 |
TDr1684 | 1.60 | 26.40 | 51.40 | 78.40 | 83.80 |
Mean | 0.86 | 16.70 | 40.92 | 60.31 | 67.44 |
Within NC-1 family LSD(0.05) | 0.69 | 3.92 | 6.02 | 8.49 | 9.44 |
Polycross | |||||
TDr1685 | 0.40 | 9.20 | 42.80 | 70.20 | 80.40 |
TDr1686 | 0.00 | 2.06 | 7.53 | 20.89 | 32.86 |
TDr1687 | 0.20 | 2.80 | 11.40 | 29.40 | 40.20 |
TDr1688 | 1.38 | 25.00 | 50.74 | 71.44 | 73.30 |
TDr1689 | 1.00 | 29.20 | 65.60 | 84.20 | 90.80 |
TDr1690 | 0.00 | 0.00 | 25.83 | 49.17 | 68.12 |
TDr1691 | 0.00 | 0.83 | 4.20 | 13.02 | 23.10 |
TDr1692 | 0.00 | 6.20 | 22.40 | 48.80 | 62.20 |
Mean | 0.37 | 9.41 | 28.81 | 48.40 | 58.90 |
Within PC family LSD(0.05) | 0.71 | 1.64 | 4.95 | 11.54 | 16.40 |
Between NC-1 and PC LSD(0.05) | 0.23 | 1.02 | 1.83 | 3.29 | 4.31 |
Between all families LSD(0.05) | 0.65 | 2.85 | 2.43 | 9.26 | 12.12 |
CV(%) | 48.7 | 10.2 | 6.9 | 8.3 | 9.1 |
Family | Pedigree | SN | TL (cm) | TW (cm) | TWT (g) |
---|---|---|---|---|---|
North Carolina 1 | |||||
TDr1676 | TDr9700793 × TDr9902789 | 1.8 | 6.0 | 2.6 | 28.8 |
TDr1677 | TDr8902157 × TDr9902789 | 2.2 | 6.4 | 2.7 | 27.4 |
TDr1678 | TDr8902475 × TDr9902789 | 2.2 | 6.9 | 2.8 | 33.8 |
TDr1679 | TDr9700632 × TDr9902607 | 2.0 | 6.6 | 2.8 | 31.5 |
TDr1680 | TDr9700205 × TDr9902607 | 1.6 | 5.3 | 2.0 | 19.2 |
TDr1681 | TDr08-21-3 × TDr9902607 | 2.3 | 5.5 | 2.5 | 25.9 |
TDr1682 | TDr9519158 × TDr9501932 | 1.9 | 5.9 | 2.3 | 23.9 |
TDr1683 | TDr9518988 × TDr9501932 | 1.5 | 4.9 | 1.9 | 15.1 |
TDr1684 | Ojuiyawo × TDr9501932 | 1.6 | 6.1 | 2.3 | 24.0 |
Mean | 1.7 | 6.0 | 2.6 | 25.7 | |
LSD(0.05) | 0.46 | 1.22 | 0.3 | 8.3 | |
Polycross | |||||
TDr1685 | TDr9700793 | 1.6 | 6.6 | 2.5 | 29.7 |
TDr1686 | TDr8902157 | 2.0 | 6.3 | 2.4 | 28.5 |
TDr1687 | TDr8902475 | 2.2 | 7.5 | 2.8 | 47.4 |
TDr1688 | TDr9700632 | 1.9 | 4.8 | 1.9 | 14.2 |
TDr1689 | TDr9700205 | 1.7 | 5.4 | 2.8 | 16.2 |
TDr1690 | TDr08-21-3 | 1.8 | 5.3 | 2.0 | 17.2 |
TDr1691 | TDr9519158 | 1.8 | 5.6 | 2.2 | 20.0 |
TDr1692 | TDr9518988 | 1.8 | 5.6 | 2.1 | 19.5 |
Mean | 2.0 | 6.2 | 2.2 | 26.7 | |
Within PC family LSD(0.05) | 0.24 | 0.78 | 0.26 | 7.56 | |
Between NC-1 and PC LSD(0.05) | 0.06 | 0.19 | 0.06 | 1.81 | |
Between all families LSD(0.05) | 0.28 | 0.90 | 0.31 | 8.58 | |
CV(%) | 44.4 | 43.4 | 36.9 | 96.6 |
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Norman, P.E.; Danquah, A.; Asfaw, A.; Tongoona, P.B.; Danquah, E.Y.; Asiedu, R. Seed Viability, Seedling Growth and Yield in White Guinea Yam. Agronomy 2021, 11, 2. https://doi.org/10.3390/agronomy11010002
Norman PE, Danquah A, Asfaw A, Tongoona PB, Danquah EY, Asiedu R. Seed Viability, Seedling Growth and Yield in White Guinea Yam. Agronomy. 2021; 11(1):2. https://doi.org/10.3390/agronomy11010002
Chicago/Turabian StyleNorman, Prince E., Agyemang Danquah, Asrat Asfaw, Pangirayi B. Tongoona, Eric Y. Danquah, and Robert Asiedu. 2021. "Seed Viability, Seedling Growth and Yield in White Guinea Yam" Agronomy 11, no. 1: 2. https://doi.org/10.3390/agronomy11010002
APA StyleNorman, P. E., Danquah, A., Asfaw, A., Tongoona, P. B., Danquah, E. Y., & Asiedu, R. (2021). Seed Viability, Seedling Growth and Yield in White Guinea Yam. Agronomy, 11(1), 2. https://doi.org/10.3390/agronomy11010002