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Molecular Plant Breeding 2013, Vol.5, No.7, 36
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Agric., Ecosys. and Envt., 136: 59-68 http://dx.doi.org/10.1016/j.agee.
2009.11.009
Horvat D., Jurković Z., Sudar R., Pavlinić D., and Šimić, G., 2002, The
relative amounts of HMW Glutenin Subunits of OS wheat cultivars in
relation to bread-making quality, Cereal Res. Communication, 30:
415-422
Kimball B.A., 2010, Lessons from FACE: CO2 Effects and interactions
with water, nitrogen, and temperature, In: Hillel D., Rosenzweig C.,
(eds.), Handbook of Climate Change and Agro-ecosystems: Impacts,
Adaptation, and Mitigation, Imperial College Press, London, UK, pp
87-110 http://dx.doi.org/10.1142/9781848166561_0006
Lizana X.C., and Calderini D.F., 2013, Yield and grain quality of wheat in
response to increased temperatures at key periods for grain number and
grain weight determination: considerations for the climatic change
scenarios of Chile, The J. Agric. Sci., 151: 209-221 http://dx.doi.org/10.
1017/S0021859612000639
Manthey F.A., Kegode R.B., and Elias E.M., 2000, Relationship between
gluten index and SDS micro-sedimentation and mixograph
tests, AACC 2000 Annual Meeting, American Association of Cereal
Chemists, Inc
Mohan D., Singh S.S., and Gupta R.K., 2011, Vibrancy of the Indian wheat
in upholding Yield and Quality under Global Environmental Change,
In: Singh S.S., Hanchinal R.R., Singh G., Sharma R.K., Tyagi B.S.,
Saharan M.S., and Sharma Indu (eds.), Wheat: Productivity
Enhancement under Changing Climate, Narosa Publishing House, New
Delhi, pp 87-94
Mohan D., and Gupta R.K., 2013a, Analysing grain properties of Indian
bread-wheat cultivars for defining route to end-product quality and key
attributes for selection, Indian J. Genet., 73(4): 1-8
Mohan D., Gupta R.K., and Verma A., 2013b, Characterization of Indian
hallmark wheat germplasm for grain quality and the stable genetic
resource, Indian J. Genet., 73(1): 14-22
Mohan D., Gupta R. .K, and Sharma Indu, 2013c, Harnessing flour recovery
in the Indian wheats, Indian J. Agric. Sci., 83(7): 781-87
Mohan D., and Gupta R.K. 2014, Exploring crop morphology to supplement
augmentation of wheat flour recovery – An analysis, Canadian J. Plant
Breed. 2(1): 44-50
Ortiz R., Sayre K.D., Govaerts B., Gupta R., Subbarao G.V., Ban T., Hodson
D., Dixon J.M., Ivan Ortiz-Monasterio J. and Reynolds M., 2008,
Climate change: Can wheat beat the heat?, Agric., Ecosys. and Envt.,
126: 46-58 http://dx.doi.org/10.1016/j.agee.2008.01.019
Payne P.I., Corfield K.G., Holt L.M., and Blackman J.A., 1981, Correlations
between the inheritance of certain high-molecular weight subunits of
glutenin and bread-making qualities in progenies of six cresses of
bread wheat, J. Sci. Food and Agric., 32: 51-60 http://dx.doi.org/10.
1002/jsfa.2740320109
Payne P.I., Nigtingale M.A., Krattiger A.F., and Holt L.M., 1987, The
relationship between HMW glutenin subunit composition and the
bread-making quality of British-grown wheat varieties, J. Sci. Food
and Agric., 40: 51-65 http://dx.doi.org/10.1002/jsfa.2740400108
Pena R.J., 2008, Improving or preserving bread making quality while
enhancing grain yield in wheat., In: Reynolds M.P., Pietragalla J., and
Braun H.J., (eds.), International Symposium on Wheat Yield Potential:
Challenges to International Wheat Breeding, Mexico, D.F.: CIMMYT,
pp 171-74
Pena R.J., 2011, Breeding bread wheat for diverse food end-use. In: Singh
S.S., Hanchinal R.R., Singh G., Sharma R.K., Tyagi B.S., Saharan M.S.,
and Sharma Indu (eds), Wheat: Productivity Enhancement under
Changing Climate, Narosa Publishing House, New Delhi, pp 315-323
Rao P.H., Leelavathi K., and Shurpalekar S.R., 1986, Test baking of chapati
–development of a method, Cereal Chem., 63: 297-303
Simic G., Horvat D., Jurkovic Z., drezner G., Novoselovic D., and
Dvojkovic K., 2006, The genotype effect on the ratio of wet gluten
content to total wheat grain protein, J. Central European Agric., 7(1):
13-18
Uthayakumaran S., Batey I., and Wrigley C., 2009, Implications of global
climate change for wheat-grain quality, Online, AACC International
Cereal Science Knowledge Database
Weegels P.L., Hamer R.J., and Schofield I.D., 1996, Functional properties of
wheat glutenin, J. Cereal Sci., 23: 1-18 http://dx.doi.org/10.1006/jcrs.
1996.0001
Wrigley C., 2006, Global warming and wheat quality, Cereal Foods World,
51: 34-36
Wrigley C.W. ,2009, Wheat: A Unique Grain. In: Khan A., and Shewry
P.R. (eds.), Wheat Chemistry and Technology, 4th Edn, AACC
International, Inc., St. Paul, MN. pp 3-19 http://dx.doi.org/10.1094/
9781891127557.001
Ziska L.H., Morris C.F., and Goins E.W., 2004, Quantitative and qualitative
evaluation of selected wheat varieties released since 1903 to increasing
atmospheric carbon dioxide: Can yield sensitivity to carbon dioxide be
a factor in wheat performance?, Global Change Biology, 10:
1810-1819 http://dx.doi.org/10.1111/j.1365-2486.2004.00840.x