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Transcriptome analysis in roots and leaves of wheat seedlings in response to low-phosphorus stress

机译:响应低磷胁迫的小麦幼苗根和叶片转录组分析

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Low phosphorus availability is a major abiotic factor constraining wheat growth. The molecular mechanisms of the wheat whole genome under low-phosphorus stress are still unclear. To obtain information on gene expression in wheat seedlings under low-phosphorus stress, transcriptome sequencing was performed on roots and leaves. The results showed that 2,318 (1,646 upregulated and 672 downregulated) transcripts were differentially expressed in the leaves, and 2,018 (1,310 upregulated and 708 downregulated) were differentially expressed in the roots. Further analysis showed that these differentially expressed genes (DEGs) were mainly enriched in carbon fixation in photosynthetic organs and in carbon metabolism, photosynthesis, glyoxylate and dicarboxylate metabolism and plant-pathogen interaction in both leaves and roots. These pathways were mainly associated with environmental adaptation, energy metabolism and carbohydrate metabolism, suggesting that the metabolic processes were strengthened in wheat seedlings under low-phosphorus stress and that more energy and substances were produced to resist or adapt to this unfavourable environment. This research might provide potential directions and valuable resources to further study wheat under low-phosphorus stress.
机译:低磷可用性是一个主要的非生物因素,限制小麦生长。小麦全基因组在低磷胁迫下的分子机制仍不清楚。为了在低磷应激下获得小麦幼苗中基因表达的信息,在根和叶中进行转录组测序。结果表明,在叶片中差异表达2,318(1,646个上调和672个下调的)转录物,在根中差异表达了2,018(1,310上调和708)。进一步的分析表明,这些差异表达基因(DEGS)主要富集光合器官中的碳固定,在碳代谢,光合作用,乙醛酸和二羧酸二羧酸盐代谢和叶片和根中的植物 - 病原体相互作用。这些途径主要与环境适应,能量代谢和碳水化合物代谢有关,表明在低磷胁迫下的小麦幼苗中加强了代谢过程,并产生了更多的能量和物质来抵抗或适应这种不利的环境。这项研究可能提供潜在的方向和宝贵的资源,以进一步研究小麦在低磷压力下。

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