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Transcriptional response of rice flag leaves to restricted external phosphorus supply during grain filling in rice cv. IR64

机译:水稻CV籽粒灌浆过程中稻标志叶对限制外磷供应的转录响应。 IR64

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摘要

Plant phosphorus (P) remobilisation during leaf senescence has fundamental implications for global P cycle fluxes. Hypothesising that genes involved in remobilisation of P from leaves during grain filling would show altered expression in response to P deprivation, we investigated gene expression in rice flag leaves at 8 days after anthesis (DAA) and 16 DAA in plants that received a continuous supply of P in the nutrient solution vs plants where P was omitted from the nutrient solution for 8 consecutive days prior to measurement. The transcriptional response to growth in the absence of P differed between the early stage (8 DAA) and the later stage (16 DAA) of grain filling. At 8 DAA, rice plants maintained production of energy substrates through upregulation of genes involved in photosynthesis. In contrast, at 16 DAA carbon substrates were produced by degradation of structural polysaccharides and over 50% of highly upregulated genes in P-deprived plants were associated with protein degradation and nitrogen/amino acid transport, suggesting withdrawal of P from the nutrient solution led to accelerated senescence. Genes involved in liberating inorganic P from the organic P compounds and vacuolar P transporters displayed differential expression depending on the stage of grain filling stage and timing of P withdrawal.
机译:植物磷(P)在叶片衰老期间重新筛选对全球P循环通量具有根本的影响。假设参与在谷物填充期间从叶子中复制p的基因将显示出表达改变的表达响应于p剥夺,我们在接受连续供应的植物中的8天后在8天后研究了稻花叶中的基因表达P在营养溶液中,在测量前连续8天从营养溶液中省略P的植物。在没有P的情况下对生长的转录反应在籽粒填充的早期(8Daa)和后期(16Daa)之间不同。在8AA,稻米植物通过涉及光合作用的基因的上调来维持能量基质的生产。相反,在16Daa碳基材上通过结构多糖的降解产生,并且在剥夺植物中超过50%的高度上调基因与蛋白质降解和氮/氨基酸输送有关,表明从LED的营养溶液中撤离P.加速衰老。根据有机P化合物和真空P输送器涉及从有机P化合物和真空P传送器的基因取决于谷物灌装阶段的阶段和P撤出的时序显示差异表达。

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