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IRRIGATION OF CHICKPEA (CICER ARIETINUM L.) INCREASES YIELD BUT NOT WATER PRODUCTIVITY

Published online by Cambridge University Press:  02 February 2015

GURIQBAL SINGH*
Affiliation:
Department of Plant Breeding and Genetics, Punjab Agricultural University, Ludhiana 141004, India
HARI RAM
Affiliation:
Department of Plant Breeding and Genetics, Punjab Agricultural University, Ludhiana 141004, India
NAVNEET AGGARWAL
Affiliation:
Department of Plant Breeding and Genetics, Punjab Agricultural University, Ludhiana 141004, India
NEIL C. TURNER
Affiliation:
UWA Institute of Agriculture and Centre for Legumes in Mediterranean Agriculture, M080, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia
*
§Corresponding author. Email: singhguriqbal@pau.edu
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Summary

The depth to ground water is increasing in several regions of the world due to use of high-yielding, but also high water-requiring crops such as rice (Oryza sativa) and wheat (Triticum aestivum), in order to maintain food security for an ever increasing world population. There is a need not only to increase the water productivity of food crops, but also to find less water-requiring crops. Irrigated chickpea (Cicer arietinum L.), traditionally grown without irrigation, may provide an alternative crop to irrigated wheat in some regions. Two field experiments were conducted to determine the effects of irrigation on chickpea yields, yield components and grain and biomass water productivity (based on irrigation (WPI) and irrigation + rainfall (WPI+R)) grown in a loamy sand soil. In the first year, 75 mm of irrigation at the vegetative stage and at the vegetative plus podding stages resulted in a 59% and a 73% increase in grain yield, respectively, compared to no irrigation, but with little change in WPI+R. Overall yields in the second year were significantly higher due to warmer temperatures and fewer frosts during flowering and podding. Compared to no irrigation, 75 mm of irrigation at flowering or at podding resulted in a 7% and a 27% increase in grain yield, but a decrease in grain and biomass water productivity (WPI+R). Irrigation had a significant effect on the number of pods plant−1 in both the years and on 100-seed weight in the first year. We conclude that application of a single irrigation during podding to chickpea grown in a loamy sand soil will reliably increase yields and may provide a water-saving alternative to wheat in water-scarce environments.

Information

Type
Research Article
Copyright
Copyright © Cambridge University Press 2015 
Figure 0

Table 1. Mean soil properties in the surface 0.15 m at the experimental site.

Figure 1

Figure 1. Weekly rainfall (a) and mean weekly maximum and minimum temperatures (b) during the cropping seasons of 2007–08 and 2008–09.

Figure 2

Figure 2. Effect of three irrigation treatments on grain yield, biological yield (aboveground biomass) and harvest index of chickpeas in the growing seasons of 2007–08 and 2008–09. The mean values for each treatment (n = 3) are given along with the least significant difference (p = 0.05) where statistically significant.

Figure 3

Figure 3. Effect of three irrigation treatments on plant height, the number of primary branches and secondary branches in chickpea in the growing seasons of 2007–08 and 2008–09. The mean values for each treatment (n = 3) are given along with the least significant difference (p= 0.05) where statistically significant.

Figure 4

Figure 4. Effect of three irrigation treatments on the number of pods per plant, the number of seeds per pod and the 100-seed weight of chickpeas in the growing seasons of 2007–08 and 2008–09. The mean values for each treatment (n = 3) are given along with the least significant difference (p = 0.05) where statistically significant.

Figure 5

Table 2. Effect of irrigation scheduling on grain and biomass water productivity (WPI and WPI+R) in chickpea.