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首页> 外文期刊>Journal of Experimental Botany >Transcriptome and metabolome analyses provide insights into root and root-released organic anion responses to phosphorus deficiency in oat
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Transcriptome and metabolome analyses provide insights into root and root-released organic anion responses to phosphorus deficiency in oat

机译:转录组和代谢物分析提供了对根系和根系释放的有机阴离子反应对燕麦磷缺乏的见解

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摘要

Roots and root-released organic anions play important roles in uptake of phosphorus (P), an essential macronutrient for food production. Oat, ranking sixth in the world's cereal production, contains valuable nutritional compounds and can withstand poor soil conditions. Our aim was to investigate root transcriptional and metabolic responses of oat grown under P-deficient and P-sufficient conditions. We conducted a hydroponic experiment and measured root morphology and organic anion exudation, and analysed changes in the transcriptome and metabolome. Oat roots showed enhanced citrate and malate exudation after 4 weeks of P deficiency. After 10 d of P deficiency, we identified 9371 differentially expressed transcripts with a 2-fold or greater change (P&0.05): 48 sequences predicted to be involved in organic anion biosynthesis and efflux were consistently up-regulated; 24 up-regulated transcripts in oat were also found to be up-regulated upon P starvation in rice and wheat under similar conditions. Phosphorylated metabolites (i.e. glucose-6-phosphate, myo-inositol phosphate) were reduced dramatically, while citrate and malate, some sugars and amino acids increased slightly in P-deficient oat roots. Our data are consistent with a strategy of increased organic anion efflux and a shift in primary metabolism in response to P deficiency in oat.
机译:根和根系释放的有机阴离子在磷(P)的摄取中起重要作用,是食品生产的必要态营养源。燕麦,在世界谷物生产中排名第六,含有有价值的营养化合物,可以承受差的土壤条件。我们的目的是调查在P缺陷和P足病症下生长的燕麦的根转转录和代谢反应。我们进行了水培实验,并测量了根系形态和有机阴离子渗出,分析了转录组和代谢物的变化。燕麦根表现出增强的柠檬酸盐和P缺乏4周后的苹果酸渗漏。经过10天的P缺乏,我们鉴定了9371种差异表达的转录物,其变化或更大的变化(P& 0.05):48个序列预测参与有机阴离子生物合成,始终上调;在类似条件下,还发现燕麦中的24个上调的燕麦转录物上调在水稻和小麦中。磷酸化代谢物(即葡萄糖-6-磷酸盐,肌醇磷酸肌醇磷酸盐)显着降低,而柠檬酸盐和苹果酸盐,一些糖和氨基酸在P缺陷型燕麦根中略微增加。我们的数据与增加的有机阴离子流出的策略一致,以及对燕麦的P缺乏症的主要代谢转变。

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