Triticeae Genomics and Genetics 2014, Vol.5, No.2, 1-11
http://tgg.biopublisher.ca
8
Farooq J., Khaliq I., Kashif M., Ali Q., and Mahpara, S., 2011, Genetic
analysis of relative cell injury percentage and some yield contributing
traits in wheat under normal and heat stress conditions. Chilean
Journal of Agricultural Research,
71(4):511-520
http://dx.doi.org/10.4067/S0718-58392011000400003
Farooq J., Khaliq I., Akbar M., Kashif M., and Mahpara S., 2013, Hybrid vigor
studies for different yield contributing traits in wheat under normal
and heat stress conditions. Communicata Scienteae, 4(2):139-152
Fonseca S., Patterson, F.L., 1968, Hybrid vigour in seven parental diallel
cross in common wheat. (
Triticum aestivum
L.). Crop Science, 8: 85-88
http://dx.doi.org/10.2135/cropsci1968.0011183X000800010025x
Knobel, H. A., Labuschange M.T., and Derenter C.S., 1997, The expression
of heterosis in the F1 generation of a diallel cross of diverse hard red
winter wheat genotypes. Cereal Research Communication, 25: 911-915
Matzingar D.F., Mann T.J., and Cockerham C.C., 1962. Diallel crosses in
Nicotiana tabaccum
. Crop Science, 2: 383-386
http://dx.doi.org/10.2135/cropsci1962.0011183X000200050006x
Modhej A., Naderi A., Emam Y., Aynehband A., Normohamadi Gh., 2008,
Effects of post-anthesis heat stress and nitrogen levels on grain yield in
wheat (
T. durum
and
T. aestivum
) genotypes. International Journal of
Plant Production, 2: 257-267
Morgan C.L., 1998. Mid-parent advantage and heterosis in F1 hybrids of
wheat from crosses among old and modern varieties. Journal of
Agricultural Science, 130: 287-295
http://dx.doi.org/10.1017/S0021859698005334
Morgan C.L., Austin R.B., Ford M.A., Bingham J., Angus W.J., and
Chowdhary S., 1989. An evaluation of F1hybrid winter wheat
genotypes produced using a chemical hybridizing agent. Journal of
Agricultural Sciences, 1212: 143-149
http://dx.doi.org/10.1017/S0021859600085038
Rasul, I., Khan A.S., and Ali Z., 2002. Estimation of heterosis for yield and
some yield components in bread wheat. International Journal of
Biological Sciences, 4(2): 214-216
Reynolds M.P., Belota M., Delgado M.I.B., Amani I., and Fischer R.A.,
1994, Physiological and morphological traits associated with spring
wheat yield under hot, irrigated conditions. Australian Journal of Plant
Physiology, 21: 717-730
http://dx.doi.org/10.1071/PP9940717
Shah S. M. A., Swati M. S., Shahzad T., and Khalil I.H., 2004, Heterosis for
yield and related traits in spring wheat. Sarhad Journal of Agicultural
Research, 20(4): 537-542
Sial A.M., Arain M.A., Khanzada S., Naqvi M.H., Dahot M.U., and
Nizamani N.A., 2005, Yield and quality paremeters of wheat genotypes
affected by sowing dates and high temperature stress. Pakistan Journal
of Botany, 37: 575-584
Singh, H., Sharma, S.N., and Sain, R.S., 2004, Heterosis studies for yield
and its components in bread wheat over environments. Hereditas
,
141:
106-114
http://dx.doi.org/10.1111/j.1601-5223.2004.01728.x
Solomon K.F., Labuschang M.T., Viljoen C.D., 2006, Estimates of heterosis
and association of genetic distance with heterosis in durum wheat
under different moisture regimes. Journal of Agricultural Science, 145:
239-248
http://dx.doi.org/10.1017/S0021859606006551
Steel R.G.D., Torrie J.H., and Dickey D.A., 1997. Principles and procedures
of statistics: A biometrical approach.3
rd
ed. McGraw Hill, New York,
USA. 672 p
Weigand C.L., and Cuellar J.A., 1981. Duration of grain filling and kernel
weight of wheat as affected by temperature. Crop Science, 21: 95-101
http://dx.doi.org/10.2135/cropsci1981.0011183X001100010027x
Wynne J.C., Emery D.A., and Rice P.M., 1970. Combining ability estimates
in
Arachis hypogea
L. II. Field performance of F1 hybrids. Crop
Science, 10(6):713-715
http://dx.doi.org/10.2135/cropsci1970.0011183X001000060036x
Zehr, B.E., Ratralikar V.P., Reddy L.M.M., and Pandy L.V., 1997, Strategies
for utilizing Heterosis in wheat, rice and oilseed Brassica in India.
(Abstract B-28). In: Proceeding Genetics and Exploitation of Heterosis
in Crops, Mexico City. pp. 232-233