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Irrigation Frequency and Amount Affect Yield Components of Summer Squash (Cucurbita Pepo L.)

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Date

2004

Journal Title

Journal ISSN

Volume Title

Publisher

Elsevier Science Bv

Abstract

The aim of this study carried out in Van, Turkey was to determine the most suitable irrigation frequencies and quantities in summer squash (Cucurbita pepo L. cv. Sakiz) grown under field conditions. Irrigation quantities were based on pan evaporation (E-pan) from a screened class-A pan. Irrigation treatments consisted of two irrigation intervals (11: 5 days; 12: 10 days), and three pan coefficients (K(cp)1: 0.45; K(cp)2: 0.65 and K(cp)3: 0.85). Plants were adequately watered from seed sowing to first fruit emergence, then, scheduled irrigations were initiated at 5- and 10-day intervals. Irrigation quantities applied to the treatments varied from 279 to 475 mm; seasonal plant water consumption or evapotranspiration (&) of irrigation treatments varied from 336 to 539 mm; and the summer squash yield varied from 22.4 to 44.7 t ha(-1). The highest total yield was obtained from I1K(cp)3 treatment. However, K,2 treatments had the earliest yield. Treatments irrigated with higher amount of water generally gave lower irrigation water use efficiency (IWUE) values than others. E-l/E-pan ratios of treatments ranged from 0.12 to 1.16. Moreover, irrigation treatments had significant effects (P < 0.01) on yield and there were significant positive linear relations among irrigation water, plant water consumption, fruit traits and yield. In conclusion, K(cp)3 treatment with 5-day irrigation interval is recommended for summer squash grown under field conditions in order to get higher summer squash yield. However, if the irrigation water is scarce, it will be suitable to irrigate summer squash frequently using K(cp)1 values. (C) 2004 Elsevier B.V. All rights reserved.

Description

Sensoy, Suat/0000-0001-7129-6185

Keywords

Irrigation, Summer Squash, Free Surface Evaporation, Irrigation Scheduling

Turkish CoHE Thesis Center URL

WoS Q

Q1

Scopus Q

Q1

Source

Volume

67

Issue

1

Start Page

63

End Page

76