A field experiment was conducted in a randomized block design with three replications at the Agricultural
Research farm, R.B.S. College, Bichpuri, Agra, (Uttar Pradesh) during 2018-19. Evaluated the protection
potential of 27 genotypes namely K-1317, K-307, K-9423, DBW-39, K- 402, WH-147, DBW-17, K-1007,
K-9107, HUW-234, K-7903, LOK-1, WH-711, Raj-3765, PBW-550, PBW-343, Raj-1482, Raj-4037,
HUW-213, HD-3086, PBW-154, HD-2967, WH-1105,
PBW-502, PBW-373, PBW-226 and UP-2338 under irrigated with canal water condition. The observations
were recorded on five randomly selected plants in each replication for each genotypesand the mean data for
grain yield and its attributes. Initiation of spike, days to maturity, plant heightat maturity, number of tillers
per plant, number of spikes per plant, number of spikelets per plant, spike length , number of grains per
spike, weight of 1000-grains, grain yield per plant and grain yield per plot were subjected to an analysis of
variance the results revealed that significant differences among 27 triticum aestivum genotypes for grain
yield and its attributes among 27 triticum aestivum varieties WH-147 and K-7903 for grain yield. These
genotypes may be process the for stresses as evidence by performance in predominantly soil and water use
they should be included in direct cultivation in such environment as hybridization program to develop
recombinants position high grain yield.
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