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Genetic divergence and biology of adaptation inCicer arietinum L.

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Summary

The role of 19 structural, developmental and biochemical traits in relation to specific adaptation was analysed in a set of 17 diverse lines with quantified adaptation, representing contemporary cultivars and land races of chickpea (Cicer arietinum L.), using multivariate analysis. Significant varietal variation was observed for most characters, particularly for the activity of the enzyme nitrate reductase (NR) and protein content in the plant. The distance analysis (D2-statistic) revealed that seed size and pod number and their associated attributes were important forces of divergence. The additional forces of divergence were NR activity at the flower initiation stage, yield components such as number of primary and secondary branches, and other features such as plant habit and duration of flowering. The principal component analysis revealed some similarities and also differences from the distance analysis. Leaf size, days to flower initiation, seed size and, to some extent, NR activity at flower initiation stage, were important in the first vector. Developmental traits such as chlorophyll depth, NR activity at the pod initiation and grain filling stages, and the percent protein content in the plant at flower initiation were important in the second vector. In general, the clustering pattern was not related to the geographical origin, seed colour, size of regression coefficient for yield, or deviation from linearity. The importance of the developmental and biochemical attributes in the divergence of cultivated chickpea, such as days to flower initiation, duration of flowering, NR activity and the rates of protein accumulation in developing seeds, and in adaptation, suggests the critical role of these attributes. NR activity at the flower initiation stage would appear to have a major role in the domestication of this crop and its intra-specific differentiation, as an increased seed size could not have been possible without better nutrient uptake and utilization.

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References

  • Beevers L, Hageman RH (1968) Nitrate reductase in higher plants. Annu Rev Plant Physiol 20:495–522

    Google Scholar 

  • Bennett E (1970) Adaptation in wild and cultivated plant populations. In: Frankel OH, Bennett E (eds) Genetic resources in plants-IBP handbook no 11. Blackwell Scientific Publ, Oxford Edinburgh, pp 195–237

    Google Scholar 

  • Dani RG (1979) Variability and association between yield and yield components in pigeonpea. Indian J Agric Sci 49:507–510

    Google Scholar 

  • Dani RG, Murty BR (1982) Genetic analysis of biology of adaptation in chickpea. Indian J Genet 42:183–195

    Google Scholar 

  • Evans HJ, Nason A (1953) Pyridine nucleotide nitrate reductase from extracts of higher plants. Plant Physiol 28:233–254

    Google Scholar 

  • Frankel OH, Bennett E (eds) (1970) Genetic resources in plants-IBP handbook no 11. Blackwell Scientific Publ, Oxford Edinburgh

    Google Scholar 

  • Frankel OH, Hawkes JB (eds) (1975) Crop genetic resources for today and tomorrow-IBP publications no 2. Cambridge University Press, Cambridge

    Google Scholar 

  • Hageman RH, Hucklesby DP (1972) Nitrate reductase from higher plants. In: Pierto AS (ed) Methods in enzymology, vol 23. Academic Press, London New York

    Google Scholar 

  • Jain KC, Pandya BP, Pande K (1981) Genetic divergence in chickpea. Indian J Genet 41:220–225

    Google Scholar 

  • Katiyar RP (1978) Genetic divergence for morphophysiological and quality determinants of yield in chickpea. Indian J Agric Sci 48:451–454

    Google Scholar 

  • Mahalanobis PC (1936) On the generalised distance in statistics. Proc Natl Acad Sci India 2:49–55

    Google Scholar 

  • Moreno MT, Cubero JI (1978) Variation inCicer arietinum. Euphytica 27:465–485

    Google Scholar 

  • Murty BR, Arunachalam V (1965) The nature of divergence in relation to breeding system in some crop plants. Indian J Genet 26A:188–198

    Google Scholar 

  • Murty BR (1975) Biology of adaptation in chickpea. In: Proc Int Workshop Grain Legumes. ICRISAT, Hyderabad, India

    Google Scholar 

  • Narayan RKJ, Macefield AJ (1976) Adaptive responses and genetic divergence in a world germplasm collection of chickpea (Cicer arietinum L.). Theor Appl Genet 47:179–187

    Google Scholar 

  • Pokhriyal TC, Abrol YP (1980) Nitrate assimilation in relation to total reduced nitrogen inCicer arietinum L. Exp Agric 16:127–135

    Google Scholar 

  • Ramanujam S (1975) Genetic diversity, stability and plant type in pulse crops. In: Proc Int Workshop Grain Legumes. ICRISAT, Hyderabad, India

    Google Scholar 

  • Rao CR (1952) Advanced statistical methods in biometrial research. Wiley and Sons, New York

    Google Scholar 

  • Schilling G (1983) Gnetic specificity of nitrogen nutrition in leguminous plants. In: Saric MR, Loughman BC (eds) Genetic aspects of plant nutrition. Martinus Nijhoff/Dr W Junk, The Hague, pp 311–324

    Google Scholar 

  • Shumny VK, Tokarev BI (1983) Genetic variability in the systems of absorption and utilization of mineral elements. In: Saric MR, Loughman BC (eds) Genetic aspects of plant nutrition. Martinus Nijhoff/Dr W Junk, The Hague, pp 487–495

    Google Scholar 

  • Singh KB, Auckland A (1975) Chickpea breeding at ICRISAT. In: Proc Int Workshop Grain Legumes. ICRISAT, Hyderabad, India

    Google Scholar 

  • Sinha SK (1974) Yield of grain legumes, problems and prospects. Indian J Genet 34:988–994

    Google Scholar 

  • Smartt J (1978) The evolution of pulse crops. Econ Bot 32:185–198

    Google Scholar 

  • Vairavan S, Siddiq EA, Arunachalam V, Swaminathan MS (1973) A study on the nature of genetic divergence in rice from Assam and North east Himalayas. Theor Appl Genet 43:213–221

    Google Scholar 

  • Van der Maesen LJG (1972)Cicer L. a Monograph of the genus, with special Reference to chickpea (Cicer arietinum L.), its ecology and cultivation. Meded Landib-Hogesh, Wageningen

    Google Scholar 

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Communicated by H. F. Linskens

Part of dissertation submitted for Ph. D. Degree in genetics at the Post Graduate School, I.A.R.I., New Delhi in 1979, by R. G. Dani

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Dani, R.G., Murty, B.R. Genetic divergence and biology of adaptation inCicer arietinum L.. Theoret. Appl. Genetics 69, 383–392 (1985). https://doi.org/10.1007/BF00570907

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  • DOI: https://doi.org/10.1007/BF00570907

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