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Original Articles

Induction of Fe(III)-Chelate Reductase Activity by Ethylene and Salicylic Acid in Iron-Deficient Peach Rootstock Explants

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Pages 669-682 | Received 15 Oct 2003, Accepted 15 Apr 2004, Published online: 14 Feb 2007

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Deguo Han, Zhaoyuan Zhang, Boxin Ni, Haibin Ding, Wei Liu, Wenhui Li, Lijing Chai & Guohui Yang. (2018) Isolation and functional analysis of MxNAS3 involved in enhanced iron stress tolerance and abnormal flower in transgenic Arabidopsis. Journal of Plant Interactions 13:1, pages 433-441.
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Jing Kong, Yuanjie Dong, Xiuwei Zhang, Quanhui Wang, Linlin Xu, Shuang Liu, Jun Hou & Zhenyi Fan. (2015) Effects of Exogenous Salicylic Acid on Physiological Characteristics of Peanut Seedlings under Iron-Deficiency Stress. Journal of Plant Nutrition 38:1, pages 127-144.
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Pandurang R. Divte, Poonam Yadav, Atul Bhagawan Pawar, Vasundhara Sharma, Anjali Anand, Raghunath Pandey & Bhupinder Singh. (2021) Crop Response to Iron Deficiency is Guided by Cross-Talk Between Phytohormones and their Regulation of the Root System Architecture. Agricultural Research 10:3, pages 347-360.
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Stefania Astolfi, Silvia Celletti, Gianpiero Vigani, Tanja Mimmo & Stefano Cesco. (2021) Interaction Between Sulfur and Iron in Plants. Frontiers in Plant Science 12.
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Manuel Balparda, Alejandro M. Armas, Gonzalo M. Estavillo, Hannetz Roschzttardtz, María A. Pagani & Diego F. Gomez-Casati. (2020) The PAP/SAL1 retrograde signaling pathway is involved in iron homeostasis. Plant Molecular Biology 102:3, pages 323-337.
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Cengiz Kaya & Muhammad Ashraf. (2018) The mechanism of hydrogen sulfide mitigation of iron deficiency-induced chlorosis in strawberry (Fragaria × ananassa) plants. Protoplasma 256:2, pages 371-382.
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Gianpiero Vigani, Youry Pii, Silvia Celletti, Mauro Maver, Tanja Mimmo, Stefano Cesco & Stefania Astolfi. (2018) Mitochondria dysfunctions under Fe and S deficiency: is citric acid involved in the regulation of adaptive responses?. Plant Physiology and Biochemistry 126, pages 86-96.
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Carlos Lucena, Francisco J. Romera, María J. García, Esteban Alcántara & Rafael Pérez-Vicente. (2015) Ethylene Participates in the Regulation of Fe Deficiency Responses in Strategy I Plants and in Rice. Frontiers in Plant Science 6.
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Jing Kong, Yuanjie Dong, Linlin Xu, Shuang Liu & Xiaoying Bai. (2014) Effects of foliar application of salicylic acid and nitric oxide in alleviating iron deficiency induced chlorosis of Arachis hypogaea L.. Botanical Studies 55:1.
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Anna Rita Paolacci, Silvia Celletti, Giulio Catarcione, Malcolm J. Hawkesford, Stefania Astolfi & Mario Ciaffi. (2014) Iron deprivation results in a rapid but not sustained increase of the expression of genes involved in iron metabolism and sulfate uptake in tomato ( Solanum lycopersicum L.) seedlings . Journal of Integrative Plant Biology 56:1, pages 88-100.
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Theocharis Chatzistathis. 2014. Emerging Technologies and Management of Crop Stress Tolerance. Emerging Technologies and Management of Crop Stress Tolerance 293 311 .
María J. García, Vicente Suárez, Francisco J. Romera, Esteban Alcántara & Rafael Pérez-Vicente. (2011) A new model involving ethylene, nitric oxide and Fe to explain the regulation of Fe-acquisition genes in Strategy I plants. Plant Physiology and Biochemistry 49:5, pages 537-544.
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María J. García, Carlos Lucena, Francisco J. Romera, Esteban Alcántara & Rafael Pérez-Vicente. (2010) Ethylene and nitric oxide involvement in the up-regulation of key genes related to iron acquisition and homeostasis in Arabidopsis. Journal of Experimental Botany 61:14, pages 3885-3899.
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Brian M. Waters, Carlos Lucena, Francisco J. Romera, Gena G. Jester, April N. Wynn, Carmen L. Rojas, Esteban Alcántara & Rafael Pérez-Vicente. (2007) Ethylene involvement in the regulation of the H+-ATPase CsHA1 gene and of the new isolated ferric reductase CsFRO1 and iron transporter CsIRT1 genes in cucumber plants. Plant Physiology and Biochemistry 45:5, pages 293-301.
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Athanassios N. Molassiotis, Grigorios C. Diamantidis, Ioannis N. Therios, Vassilios Tsirakoglou & Kortessa N. Dimassi. (2005) Oxidative stress, antioxidant activity and Fe(III)-chelate reductase activity of five Prunus rootstocks explants in response to Fe deficiency. Plant Growth Regulation 46:1, pages 69-78.
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