Differential expression of iron-sulfur cluster biosynthesis genes during peach fruit development and ripening, and their response to iron compound spraying
文献类型: 外文期刊
作者: Song, Zhizhong 1 ; Ma, Ruijuan 1 ; Zhang, Bingbing 1 ; Guo, Shaolei 1 ; Yu, Mingliang 1 ; Korir, Nicholas Kibet 3 ;
作者机构: 1.Jiangsu Acad Agr Sci, Inst Hort, 50 Zhongling St, Nanjing 210014, Peoples R China
2.Jiangsu Key Lab Hort Crop Genet Improvement, Nanjing 210014, Peoples R China
3.Kenyatta Univ, Dept Agr Technol, POB 43844-00100, Nairobi, Kenya
关键词: Peach Fruit development;Amino acid-iron compound spraying;Fe-S cluster biosynthesis genes;Fe homeostasis
期刊名称:SCIENTIA HORTICULTURAE ( 影响因子:3.463; 五年影响因子:3.672 )
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收录情况: SCI
摘要: Iron (Fe) is required for the iron-sulphur (Fe-S) cluster biosynthesis, which occurs in chloroplasts, mitochondria and cytosol that needs dozens of genes. However, molecular mechanisms of Fe metabolism in fruit trees are largely rare, especially towards fruit development and ripening. In this work, we characterized 'Xiahui8' peach development, and analyzed expression profiles of 44 Fe-S cluster biosynthesis genes during different fruit development stages. The development of 'Xiahui8' peaches last for an average period of 130 days, followed by a rapid on-tree ripening during 7 days. Notably, the Fe accumulation in peach flesh was negatively correlated to fruit weight and volume, but positively correlated to flesh firmness. Quantitative Real-Time PCR (qRT-PCR) analysis showed that Fe-S cluster biosynthesis genes were differentially expressed during distinct fruit development stages. A majority of plastid SUF and mitochondria) ISC machinery genes were gradually enhanced along with fruit growth, and began to decrease since commercial harvest phase. The highest expression level of all cytosolic CIA machinery genes were appeared in early fruitlet formation stage, and gradually reduced until fruit ripening. Moreover, foliar spraying of amino acid-Fe compound fertilizer significantly enhanced the total soluble solid (TSS) content in peaches, accompanied by strengthened flesh firmness, Fe concentration, and succinate dehydrogenase (SDH) and aconitase (ACO) activities. Thirteen Fe-S cluster biosynthesis genes were responsive to fertilizer treatment, whose expression level were significantly induced, with the exception of HSCA2 that was reduced. Our findings provided molecular basis for Fe metabolism in peach fruit development, and revealed potential genes for further functional verification. (C) 2016 Elsevier B.V. All rights reserved.
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