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Physiological aspects of iron nutrition

Iron source affects iron reduction and re‐greening of kiwifruit (Actinidia deliciosa) leaves

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Pages 1751-1765 | Published online: 21 Nov 2008

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Juan M. Arjona-López, Lidia Aparicio-Durán, Frederick G. Gmitter$suffix/text()$suffix/text(), Rocío Calero-Velázquez, Jude W. Grosser, Estefanía Romero-Rodríguez, Aurea Hervalejo & Francisco J. Arenas-Arenas. (2023) Physiological response of new citrus rootstocks under the effect of lime induced iron chlorosis stress conditions. New Zealand Journal of Crop and Horticultural Science 0:0, pages 1-14.
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H. Başar & S. Gürel. (2015) Response of Gemlik Olive Trees to Soil and Foliar Treatments of Iron in Combination with Zinc and Boron. Communications in Soil Science and Plant Analysis 46:12, pages 1507-1524.
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C.K. Morikawa, M. Saigusa, H. Nakanishi, N.K. Nishizawa, K. Hasegawa & S. Mori. (2004) Co-situs application of controlled-release fertilizers to alleviate iron chlorosis of paddy rice grown in calcareous soil. Soil Science and Plant Nutrition 50:7, pages 1013-1021.
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Adamo Domenico Rombolà, Moreno Toselli, José Carpintero, Tarek Ammari, Maurizio Quartieri, José Torrent & Bruno Marangoni. (2003) Prevention of Iron‐Deficiency Induced Chlorosis in Kiwifruit (Actinidia deliciosa) Through Soil Application of Synthetic Vivianite in a Calcareous Soil. Journal of Plant Nutrition 26:10-11, pages 2031-2041.
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Mohamed Zouari, Anunciación Abadía & Javier Abadía. (2001) IRON IS REQUIRED FOR THE INDUCTION OF ROOT FERRIC CHELATE REDUCTASE ACTIVITY IN IRON-DEFICIENT TOMATO. Journal of Plant Nutrition 24:2, pages 383-396.
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Adrian Peticila, Gina Vasile Scaeteanu, Roxana Madjar, Florin Stanica & Adrian Asanica. (2015) Fertilization Effect on Mineral Nutrition of Actinidia Deliciosa (kiwi) Cultivated on Different Substrates. Agriculture and Agricultural Science Procedia 6, pages 132-138.
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