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缺铁和铁供应对桃-扁桃杂种砧木根系蛋白质图谱的诱导变化。

Changes induced by Fe deficiency and Fe resupply in the root protein profile of a peach-almond hybrid rootstock.

机构信息

Pomology Department, Aula Dei Experimental Station, CSIC, PO Box 13034, E-50080 Zaragoza, Spain.

出版信息

J Proteome Res. 2013 Mar 1;12(3):1162-72. doi: 10.1021/pr300763c. Epub 2013 Feb 8.

Abstract

The changes in the root extract protein profile of the Prunus hybrid GF 677 rootstock (P. dulcis × P. persica) grown in hydroponics as affected by Fe deficiency and short-term (24 h) Fe resupply have been studied by 2-dimensional gel electrophoresis-based techniques. A total of 335 spots were consistently found in the gels. Iron deficiency caused above 2-fold increases or >50% decreases in the relative abundance in 10 and 6 spots, respectively, whereas one spot was only detected in Fe-deficient plants. Iron resupply to Fe-deficient plants caused increases and decreases in relative abundance in 15 and 16 spots, respectively, and one more spot was only detected in Fe-resupplied Fe-deficient plants. Ninety-five percent of the proteins changing in relative abundance were identified using nanoliquid chromatography-tandem mass spectrometry. Defense responses against oxidative and general stress accounted for 50% of the changes in Fe-deficient roots. Also, a slight induction of the glycolysis-fermentation pathways was observed in GF 677 roots with Fe deficiency. The root protein profile of 24 h Fe-resupplied plants was similar to that of Fe-deficient plants, indicating that the deactivation of Fe-deficiency metabolic responses is slow. Taken together, our results suggest that the high tolerance of GF 677 rootstock to Fe deficiency may be related to its ability to elicit a sound defense response against both general and oxidative stress.

摘要

采用基于二维凝胶电泳的技术研究了水培条件下桃砧木 GF 677(甜樱桃×桃)根系在缺铁和短期(24 h)铁再供应时根提取物蛋白图谱的变化。在凝胶中总共发现了 335 个点。缺铁导致 10 个和 6 个点的相对丰度分别增加 2 倍或减少超过 50%,而一个点仅在缺铁植物中检测到。铁再供应到缺铁植物中导致 15 个和 16 个点的相对丰度增加和减少,而另一个点仅在铁再供应缺铁植物中检测到。使用纳升液相色谱-串联质谱法鉴定了 95%相对丰度变化的蛋白质。对氧化和一般应激的防御反应占缺铁根中变化的 50%。此外,在缺铁的 GF 677 根中观察到糖酵解-发酵途径的轻微诱导。24 h 铁再供应植物的根蛋白图谱与缺铁植物相似,表明铁缺乏代谢反应的失活较慢。总之,我们的结果表明,GF 677 砧木对缺铁的高耐受性可能与其引发针对一般和氧化应激的健全防御反应的能力有关。

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