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Insights into Resistance to Fe Deficiency Stress from a Comparative Study of In Vitro-Selected Novel Fe-Efficient and Fe-Inefficient Potato Plants

机译:从体外选择的新型高效铁和低效马铃薯植株的比较研究中了解对铁缺乏胁迫的抗性

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摘要

Iron (Fe) deficiency induces chlorosis (IDC) in plants and can result in reduced plant productivity. Therefore, development of Fe-efficient plants is of great interest. To gain a better understanding of the physiology of Fe-efficient plants, putative novel plant variants were regenerated from potato (Solanum tubersosum L. var. ‘Iwa’) callus cultures selected under Fe deficient or low Fe supply (0–5 μM Fe). Based on visual chlorosis rating (VCR), 23% of callus-derived regenerants were classified as Fe-efficient (EF) and 77% as Fe-inefficient (IFN) plant lines when they were grown under Fe deficiency conditions. Stem height was found to be highly correlated with internodal distance, leaf and root lengths in the EF plant lines grown under Fe deficiency conditions. In addition, compared to the IFN plant lines and control parental biotype, the EF plants including the lines named A1, B2, and B9, exhibited enhanced formation of lateral roots and root hairs as well as increased expression of ferritin (fer3) in the leaf and iron-regulated transporter (irt1) in the root. These morphological adaptations and changes in expression the fer3 and irt1 genes of the selected EF potato lines suggest that they are associated with resistance to low Fe supply stress.
机译:铁(Fe)缺乏会在植物中诱发绿化(IDC),并可能导致植物生产力下降。因此,开发高铁效率的植物引起了极大的兴趣。为了更好地了解高铁效率植物的生理状况,从低铁或低铁含量(0-5μM铁)条件下选择的马铃薯(Solanum tubersosum L. var。'Iwa')愈伤组织培养物中提取了推定的新型植物变体。 。根据视觉萎黄等级(VCR),当它们在缺铁条件下生长时,有23%的愈伤组织来源的再生子被归为Fe效率(EF),而77%为Fe效率低(IFN)植物。发现在缺铁条件下生长的EF植株中茎高与节间距离,叶和根长度高度相关。此外,与IFN植物系和对照亲本生物型相比,包括A1,B2和B9系在内的EF植物表现出侧根和根毛形成增强,并且叶中铁蛋白(fer3)的表达增加。根中有铁调节转运蛋白(irt1)。这些形态适应和所选EF马铃薯品系的fer3和irt1基因表达变化表明,它们与对低铁供应压力的抗性相关。

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