Plant Soil Environ., 2003, 49(2):67-74 | DOI: 10.17221/4092-PSE

Earliness, spike productivity and protein content in European winter wheat landraces and obsolete cultivars

L. Dotlačil, J. Hermuth, Z. Stehno
Research Institute of Crop Production, Prague-Ruzyně, Czech Republic

European winter wheat landraces and obsolete cultivars (121 accessions in set I and 101 accessions in set II) with modern check cultivars were evaluated in three-year field trials. Increased spike productivity in modern cultivars could be attributed mainly to increased number of grains in spikelet and increased HI, whereas TGW has marginal effect. Old cultivars had on average by 2-3% higher crude protein content in grain than modern ones. Among selected 10 characters, relatively wide diversity (C.V. 11-20%) has been estimated in spike length and characters of spike productivity (except of grain weight with C.V. close to 9%). It was difficult to distinguish the cultivars according to the country of origin, however, earliness and lower spike productivity seems to be characteristic for South-East origin whereas cultivars from North-West Europe showed opposite characters. Correlation analyses showed close relations between earliness in heading and in maturity and negative relation between late heading and grain filling period, which was positively correlated with TGW and HI (r = 0.26 to 0.38). Number of grains in spikelets was highly correlated with spike productivity and HI (r = 0.62 to 0.69) whereas relations between these two characters and TGW were lower (r = 0.20 to 0.51). Spike productivity characters, except of TGW, are in negative correlation with crude protein content in grain (r = -0.34 to -0.50). Regression analyses confirmed that main determining character for the spike productivity is number of kernels in spikelet (about 40% of variation) while effects of TGW are about half-size. Crude protein content was positively affected by plant height (15-30% of variation) impact of grain weight per spike was lower (14-17% of variation) and negative. Potentially valuable donors of earliness and longer grain filling period were identified for further studies and/or utilization in breeding programs. As especially valuable character can be considered very high crude protein content (around 18% in cvs Berg-land, Ukrajinka, Sippbachzeller, Innichen Nr. 25001 and Barbu du Finistre). High crude protein content combined with relatively good spike productivity and/or long grain filling period or earliness was found in cvs Visperterminen 640 E, Hatvan, Szekacz 1242, Berchtesgardener Vogel, Ble du Lot and Barbu du Finistere.

Keywords: wheat; geographic origin; genetic diversity; relations among characters; donors

Published: February 28, 2003  Show citation

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Dotlačil L, Hermuth J, Stehno Z. Earliness, spike productivity and protein content in European winter wheat landraces and obsolete cultivars. Plant Soil Environ. 2003;49(2):67-74. doi: 10.17221/4092-PSE.
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References

  1. Belay G., Tesemma T., Bechere E., Mitiku D. (1995): Natural and human selection for purple-grain tetraploid wheats in the Ethiopian highlands. Genet. Res. Crop Evol., 42: 387-391. Go to original source...
  2. Brush S.B., Meng E. (1998): Farmers' valuation and conservation of crop genetic resources. Genet. Res. Crop Evol., 45: 139-150. Go to original source...
  3. Devkota R.P., Shah R.P. (1998): Use value of rice and wheat landraces in the public sector breeding programmes in Nepal. In: Managing agrobiodiversity: farmers' changing perspectives and institutional responses in the HKH region, Kathmandu, Nepal. Int. Cent. Integr. Mount. Dev.: 391-395.
  4. Ehdaie B., Waines J.G. (1989): Genetic variation, heritability and path - analysis in landraces of bread wheat from south-western Iran. Euphytica, 41: 183-190. Go to original source...
  5. Hintum T.J.L. van, Elings A. (1991): Assessment of glutenin and phenotypic diversity of Syrian durum wheat landraces in relation to their geographical origin. Euphytica, 55: 209-215. Go to original source...
  6. Jafari-Shabestari J., Corke H., Qualset C.O. (1995): Field evaluation of salinity stress in Iranian hexaploid wheat landraces accessions. Genet. Res. Crop Evol., 42: 147-156. Go to original source...
  7. Jaradat A.A. (1992): Estimates of phenotypic diversity and traits associations in durum wheat landraces from Jordan. J. Genet. Breed., 46: 69-76.
  8. Keller L., Schmid J.E., Keller E.R. (1991): Are cereal land races a source for breeding? Landwirtsch. Schweiz, 4: 197-202.
  9. Li Xingpu, Sun Fengrui, Guo Beihai, Liu Lianru, Pang Chunming (1997): Evaluation of abiotic stress resistance in Hebei winter wheat genetic resources. Wheat Inform. Serv., 85: 1-6.
  10. Michalová A., Dotlačil L. (1993): The evaluation of winter wheat gene pool of Czech, Moravian and Slovak origin. Plant Genet. Res. Ann. Rep.: 2-9.
  11. Moghaddam M., Ehdaine B., Waines J.G. (1998): Genetic variation for and interrelation-ships among agronomic traits in landraces of bread wheat from south-western Iran. J. Genet. Breed., 52: 73-81.
  12. Obari K. (1990): Evaluation of local wheat landraces in breeding programmes in Syria. In: Wheat Genet. Res. Meet. Div. Needs ICARDA: 211-215.
  13. Rodriguez-Quijano K., Vazquez J.F., Garillo J.M. (1994): Variation of high molecular weight glutenin subunits in Spanish landraces of Triticum aestivum ssp. vulgare and ssp. spelta. J. Genet. Breed., 44: 121-126.
  14. Tesemma T., Tsegaye S., Belay G., Bechere E., Mitiku D. (1998): Stability of performance of tetraploid wheat landraces in the Ethiopian highland. Euphytica, 102: 301- 308. Go to original source...
  15. Vojdani P., Meybodi M. (1993): Distribution and genetic diversity of primitive bread wheats in Iran. In: Damania A.B. (ed.): Biodiversity and wheat improvement. U.K. John Wiley & Sons, Chichester: 409-415.
  16. Wang Z.N., Guo B.H. (1992): SDS-PAGE analysis for local wheat varieties in Hebei. Acta Agric. Baredli, Siniea, 7: 35-39.
  17. Yang J.Z., Liang Q. (1995): Yinchun 3 wheat germplasm with high protein content and resistance to drought. Crop Genet. Res., 1: 44.
  18. Zeven A.C., Hintum T.J.L. van (1992): Classification of landraces and improved cultivars of hexaploid wheats (Triticum aestivum, T. compactum and T. spelta) grown in the USA and described in 1992. Euphytica, 59: 33-47. Go to original source...
  19. Zeven A.C., Schachl R. (1989): Groups of bread wheat landraces in Austrian Alps. Euphytica, 41: 235-246. Go to original source...
  20. Zou Z.T., Yang W.Y. (1995): Development of wheat germplasm research in Sichuean province. Crop Genet. Res., 2: 19-20.

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