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Physiological and Transcriptional Changes of Three Citrus Rootstock Seedlings under Iron Deficiency

机译:缺铁条件下三种柑橘砧木幼苗的生理和转录变化

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摘要

Iron is an essential micronutrient for plants, and plants have evolved adaptive mechanisms to improve iron acquisition from soils. Grafting on iron deficiency-tolerant rootstock is an effective strategy to prevent iron deficiency-chlorosis in fruit-tree crops. To determine the mechanisms underlying iron uptake in iron deficiency, two iron deficiency-tolerant citrus rootstocks, Zhique (ZQ) and Xiangcheng (XC), as well as iron deficiency-sensitive rootstock trifoliate orange (TO) seedlings were studied. Plants were grown in hydroponics system for 100 days, having 50 μM iron (control) and 0 μM iron (iron deficiency) nutrient solution. Under iron deficiency, more obvious visual symptoms of iron chlorosis were observed in the leaves of TO, whereas slight symptoms were observed in ZQ and XC. This was further supported by the lower chlorophyll concentration in the leaves of TO than in leaves of ZQ and XC. Ferrous iron showed no differences among the three citrus rootstock roots, whereas ferrous iron was significantly higher in leaves of ZQ and XC than TO. The specific iron absorption rate and leaf iron proportion were significantly higher in ZQ and XC than in TO, suggesting the iron deficiency tolerance can be explained by increased iron uptake in roots of ZQ and XC, allowed by subsequent translocation to shoots. In transcriptome analysis, 29, 298, and 500 differentially expressed genes (DEGs) in response to iron deficiency were identified in ZQ, XC, and TO, respectively (Fold change ≥ 2 and Probability ≥ 0.8 were used as thresholds to identify DEGs). A Gene Ontology analysis suggested that several genotype-specific biological processes are involved in response to iron deficiency. Genes associated with cell wall biosynthesis, ethylene and abscisic acid signal transduction pathways were involved in iron deficiency responses in citrus rootstocks. The results of this study provide a basis for future analyses of the physiological and molecular mechanisms of the tolerance of different citrus rootstocks to iron deficiency.
机译:铁是植物必需的微量营养素,植物已经进化出适应性机制来改善土壤中铁的吸收。耐缺铁的砧木嫁接是防止果树作物缺铁-绿化的有效策略。为了确定铁缺乏引起铁吸收的机理,研究了两种耐铁缺乏的柑橘砧木,直((ZQ)和香城(XC),以及对铁缺乏敏感的三叶橙(TO)幼苗。使植物在水培系统中生长100天,其中含有50μM铁(对照)和0μM铁(缺铁)营养液。在铁缺乏的情况下,在TO的叶子中观察到了更明显的铁绿化的视觉症状,而在ZQ和XC中观察到了轻微的症状。 TO叶片中的叶绿素浓度低于ZQ和XC叶片中的叶绿素浓度,这进一步证明了这一点。在三个柑橘砧木根中,亚铁没有差异,而ZQ和XC叶片中的亚铁明显高于TO。 ZQ和XC的比铁吸收率和叶铁比例显着高于TO,表明铁缺乏耐受性可以通过ZQ和XC根部铁吸收的增加来解释,随后再转移到芽中。在转录组分析中,分别在ZQ,XC和TO中鉴定出29、298和500个针对铁缺乏症的差异表达基因(DEG)(倍数≥2和概率≥0.8用作鉴定DEG的阈值)。基因本体论分析表明,一些基因型特定的生物学过程参与了对铁缺乏症的反应。与细胞壁生物合成,乙烯和脱落酸信号转导途径相关的基因参与了柑橘砧木的铁缺乏反应。这项研究的结果为今后分析不同柑橘类砧木对铁缺乏的耐受性的生理和分子机制提供了基础。

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