首页> 外文期刊>International Journal of Molecular Sciences >Genotypic Variation under Fe Deficiency Results in Rapid Changes in Protein Expressions and Genes Involved in Fe Metabolism and Antioxidant Mechanisms in Tomato Seedlings (Solanum lycopersicum L.)
【24h】

Genotypic Variation under Fe Deficiency Results in Rapid Changes in Protein Expressions and Genes Involved in Fe Metabolism and Antioxidant Mechanisms in Tomato Seedlings (Solanum lycopersicum L.)

机译:缺铁下的基因型变异导致番茄幼苗蛋白质表达和涉及铁代谢及抗氧化机制的基因快速变化。茄子(Solanum lycopersicum L.)

获取原文
           

摘要

To investigate Fe deficiency tolerance in tomato cultivars, quantification of proteins and genes involved in Fe metabolism and antioxidant mechanisms were performed in “Roggusanmaru” and “Super Doterang”. Fe deficiency (Moderate, low and –Fe) significantly decreased the biomass, total, and apoplastic Fe concentration of “Roggusanmaru”, while a slight variation was observed in “Super Doterang” cultivar. The quantity of important photosynthetic pigments such as total chlorophyll and carotenoid contents significantly decreased in “Roggusanmaru” than “Super Doterang” cultivar. The total protein profile in leaves and roots determines that “Super Doterang” exhibited an optimal tolerance to Fe deficiency compared to “Roggusanmaru” cultivar. A reduction in expression of PSI (photosystem I), PSII (photosystem II) super-complexes and related thylakoid protein contents were detected in “Roggusanmaru” than “Super Doterang” cultivar. Moreover, the relative gene expression of SlPSI and SlPSII were well maintained in “Super Doterang” than “Roggusanmaru” cultivar. The relative expression of genes involved in Fe-transport (SlIRT1 and SlIRT2) and Fe(III) chelates reductase oxidase (SlFRO1) were relatively reduced in “Roggusanmaru”, while increased in “Super Doterang” cultivar under Fe deficient conditions. The H+-ATPase relative gene expression (SlAHA1) in roots were maintained in “Super Doterang” compared to “Roggusanmaru”. Furthermore, the gene expressions involved in antioxidant defense mechanisms (SlSOD, SlAPX and SlCAT) in leaves and roots showed that these genes were highly increased in “Super Doterang”, whereas decreased in “Roggusanmaru” cultivar under Fe deficiency. The present study suggested that “Super Doterang” is better tomato cultivar than “Roggusanmaru” for calcareous soils.
机译:为了研究番茄品种对铁缺乏的耐受性,在“ Roggusanmaru”和“ Super Doterang”中对参与铁代谢和抗氧化机制的蛋白质和基因进行了定量分析。缺铁(中等,低和–Fe)显着降低了“ Roggusanmaru”的生物量,总铁和质外铁的浓度,而“ Super Doterang”品种则观察到轻微的变化。与“ Super Doterang”品种相比,“ Roggusanmaru”品种的重要光合色素含量(例如总叶绿素和类胡萝卜素含量)显着降低。与“ Roggusanmaru”品种相比,叶和根中的总蛋白质谱决定了“ Super Doterang”对铁缺乏表现出最佳耐受性。与“ Super Doterang”品种相比,“ Roggusanmaru”中检测到PSI(光系统I),PSII(光系统II)超复合物的表达降低,相关类囊体蛋白含量降低。此外,“超级杂种”中的SlPSI和SlPSII的相对基因表达比“ Roggusanmaru”品种保持良好。在铁缺乏条件下,“ Roggusanmaru”中涉及Fe转运的基因(SlIRT1和SlIRT2)和Fe(III)螯合物还原酶氧化酶(SlFRO1)的相对表达相对降低,而“ Super Doterang”品种则相对升高。与“ Roggusanmaru”相比,“ Super Doterang”中保持了根中H + -ATPase相对基因表达(S1AHA1)。此外,叶和根中参与抗氧化防御机制的基因表达(SlSOD,SlAPX和SlCAT)表明,这些基因在“ Super Doterang”中高度增加,而在“ Roggusanmaru”品种中在铁缺乏时降低。本研究表明,对于钙质土壤,“超级杂种”比“ Roggusanmaru”是更好的番茄品种。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号