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小麦氮素缺乏响应中与光合作用和氮代谢相关的转录调控策略。

Transcription strategies related to photosynthesis and nitrogen metabolism of wheat in response to nitrogen deficiency.

机构信息

State Key Laboratory of Crop Biology, College of Agronomy, Shandong Agricultural University, Taian, 271018, Shandong, China.

ShanDong Shofine Seed Technology Co., Ltd., Jiangxiang, 272400, Shandong, China.

出版信息

BMC Plant Biol. 2020 Oct 1;20(1):448. doi: 10.1186/s12870-020-02662-3.

Abstract

BACKGROUND

Agricultural yield is closely associated with nitrogen application. Thus, reducing the application of nitrogen without affecting agricultural production remains a challenging task. To understand the metabolic, physiological, and morphological response of wheat (Triticum aestivum) to nitrogen deficiency, it is crucial to identify the genes involved in the activated signaling pathways.

RESULTS

We conducted a hydroponic experiment using a complete nutrient solution (N1) and a nutrient solution without nitrogen (N0). Wheat plants under nitrogen-deficient conditions (NDC) showed decreased crop height, leaf area, root volume, photosynthetic rate, crop weight, and increased root length, root surface area, root/shoot ratio. It indicates that nitrogen deficiency altered the phenotype of wheat plants. Furthermore, we performed a comprehensive analysis of the phenotype, transcriptome, GO pathways, and KEGG pathways of DEGs identified in wheat grown under NDC. It showed up-regulation of Exp (24), and Nrt (9) gene family members, which increased the nitrogen absorption and down-regulation of Pet (3), Psb (8), Nar (3), and Nir (1) gene family members hampered photosynthesis and nitrogen metabolism.

CONCLUSIONS

We identified 48 candidate genes that were involved in improved photosynthesis and nitrogen metabolism in wheat plants grown under NDC. These genes may serve as molecular markers for genetic breeding of crops.

摘要

背景

农业产量与氮素的施加密切相关。因此,在不影响农业生产的情况下减少氮素的施加仍然是一项具有挑战性的任务。为了了解小麦(Triticum aestivum)对氮素缺乏的代谢、生理和形态响应,确定参与激活信号通路的基因是至关重要的。

结果

我们使用完全营养液(N1)和无氮营养液(N0)进行了水培实验。在氮缺乏条件下(NDC)的小麦植株表现出降低的株高、叶面积、根体积、光合速率、作物重量和增加的根长、根表面积、根/茎比。这表明氮缺乏改变了小麦植株的表型。此外,我们对 NDC 下生长的小麦的表型、转录组、GO 途径和 KEGG 途径进行了综合分析。结果表明,Exp(24)和 Nrt(9)基因家族成员的上调增加了氮的吸收,而 Pet(3)、Psb(8)、Nar(3)和 Nir(1)基因家族成员的下调阻碍了光合作用和氮代谢。

结论

我们鉴定了 48 个候选基因,这些基因可能参与了 NDC 下生长的小麦植物中光合作用和氮代谢的改善。这些基因可以作为作物遗传育种的分子标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b71/7528333/103a93e44b62/12870_2020_2662_Fig1_HTML.jpg

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