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cje ›› 2010, Vol. 29 ›› Issue (01): 36-42.

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Coupling effect of salt and fertilizer on European chicory (Cichorium intybusL.) under seawater irrigation and N and P application.

SUN Lei;LONG Xiao-hua;LIU Zhao-pu;LI Qing;LI Hong-yan   

  1. Key Laboratory of Marine Biology of Jiangsu Province, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China
  • Online:2010-01-08 Published:2010-01-08

Abstract: A field experiment was conducted on the coastal mudflat in Yancheng of northern Jiangsu Province to study the coupling effect of salt and fertilizer on European chicory (Cichorium intybus L.) under different concentration seawater irrigation and N and P fertilization application. Compared with fresh water irrigation (treatment W1), the yield of C. intybus fleshy root and aerial parts   decreased less under 20% seawater irrigation (treatment W2), but decreased signifi
cantly under 40% seawater irrigation (treatment W3). In the trials of N fertilization, the yield of fleshy root and aerial parts was  higher in treatment N3 (N 90 kg·hm-2) than in treatment N1 (N 0 kg·hm-2); and in the trials of P fertilization, the yield was  higher in treatment P3 (P2O5 45 kg·hm-2) than in treatment P1 (P2O5 0 kg·hm-2). Under the same concentration seawater irrigation, C. intybus main stem grown longer and thicker with increasing N and P application. Treatments W1N3 and W1P3 were the best coupling effect for C. intybus fleshy root and aerial part yield, and treatments W2N3 and W1P2 (fresh water, P2O5 22.5 kg·hm-2) were the best coupling effect for C. intybus seed yield. Seawater, N and P, especially seawater, had significant effects on C. intybus. The best combination of the treatments for C. intybus biological yield was W1N3P3, and that for C. intybus seed yield was W2N3P2.

Key words: Neutral landscape model, RULE, SimMap, Landscape metrics