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Characteristics of urea 15N absorption, allocation, and utilization by sweet-cherry (Prunus avium L.).

ZHAO Feng-xia1,2;JIANG Yuan-mao1,2;PENG Fu-tian1,2; GAO Xiang-bin1,2;LIU Bing-hua1,2;WANG Hai-yun1,2;ZHAO Lin1,2   

  1. 1State Key Laboratory of Crop Biology, Shandong Agricultural University, Tai’an 271018, Shandong, China;2College of Horticulture Science and Engineering, Shandong Agricultural University, Tai’an 271018, Shandong, China
  • Received:2007-02-07 Revised:1900-01-01 Online:2008-03-21 Published:2008-03-21

Abstract: With five-year old ‘Zaodaguo’ sweetcherry (Prunus avium L.) as test material, this paper studied the characteristics of its urea 15N absorption, allocation, and utilization when applied before bud-break. The results showed that the Ndff of different organs increased gradually with time, and was higher in fine roots and storage organs at full-blooming stage. At fruit core-hardening stage, the Ndff of long shoots and leaves increased quickly, reaching to 0.72% and 0.59%, respectively. From fruit core-hardening to harvesting stage, the Ndff of fruit had a rapid increase, with the peak (1.78%) at harvesting stage. After harvest, the Ndff of neonatal organs increased slowly while that of storage organs increased quickly. At full-blooming stage, the absorbed 15N in roots was firstly allocated to storage organs, with the highest allocation rate (54.91%) in large roots. At fruit core-hardening stage, the allocation rate in fine roots and storage organs decreased from 85.43% to 55.11%, while that in neonatal branches and leaves increased to 44.89%. At harvesting stage, the allocation rate in different organs had no significant change, but after harvest, the absorbed 15N had a rapid translocation to storage organs, and the allocation rate in fine roots and storage organs reached the highest (72.26%) at flower bud differentiation stage. The 15N allocation rate in neonatal branches and leaves at flower bud differentiation stage was decreased by 19.31%, compared with that at harvesting stage. From full-blooming to flower bud differentiation stage, the utilization rate of urea 15N was increasing, and reached the peak (16.86%) at flower bud differentiation stage.

Key words: inorganic phosphorus, Chrysosporum ovalisporum, dissolved organic phosphorus, alkaline phosphatase