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脲酶抑制剂N-(正丁基)硫代磷酸三酰胺(NBPT)的短期处理改变了玉米幼苗中尿素的同化作用,并调节了参与初级和次级代谢的基因的转录谱。

Short-Term Treatment with the Urease Inhibitor N-(n-Butyl) Thiophosphoric Triamide (NBPT) Alters Urea Assimilation and Modulates Transcriptional Profiles of Genes Involved in Primary and Secondary Metabolism in Maize Seedlings.

作者信息

Zanin Laura, Venuti Silvia, Tomasi Nicola, Zamboni Anita, De Brito Francisco Rita M, Varanini Zeno, Pinton Roberto

机构信息

Dipartimento di Scienze Agroalimentari, Ambientali e Animali, University of Udine Udine, Italy.

Department of Biotechnology, University of Verona Verona, Italy.

出版信息

Front Plant Sci. 2016 Jun 22;7:845. doi: 10.3389/fpls.2016.00845. eCollection 2016.

Abstract

To limit nitrogen (N) losses from the soil, it has been suggested to provide urea to crops in conjunction with the urease inhibitor N-(n-butyl) thiophosphoric triamide (NBPT). However, recent studies reported that NBPT affects urea uptake and urease activity in plants. To shed light on these latter aspects, the effects of NBPT were studied analysing transcriptomic and metabolic changes occurring in urea-fed maize seedlings after a short-term exposure to the inhibitor. We provide evidence that NBPT treatment led to a wide reprogramming of plant metabolism. NBPT inhibited the activity of endogenous urease limiting the release and assimilation of ureic-ammonium, with a simultaneous accumulation of urea in plant tissues. Furthermore, NBPT determined changes in the glutamine, glutamate, and asparagine contents. Microarray data indicate that NBPT affects ureic-N assimilation and primary metabolism, such as glycolysis, TCA cycle, and electron transport chain, while activates the phenylalanine/tyrosine-derivative pathway. Moreover, the expression of genes relating to the transport and complexation of divalent metals was strongly modulated by NBPT. Data here presented suggest that when NBPT is provided in conjunction with urea an imbalance between C and N compounds might occur in plant cells. Under this condition, root cells also seem to activate a response to maintain the homeostasis of some micronutrients.

摘要

为了减少土壤中的氮(N)损失,有人建议将尿素与脲酶抑制剂N-(正丁基)硫代磷酸三酰胺(NBPT)一起施用于作物。然而,最近的研究报告称,NBPT会影响植物对尿素的吸收和脲酶活性。为了阐明这些方面,研究了NBPT对短期接触该抑制剂的尿素喂养玉米幼苗转录组和代谢变化的影响。我们提供的证据表明,NBPT处理导致植物代谢的广泛重编程。NBPT抑制内源性脲酶的活性,限制尿素铵的释放和同化,同时植物组织中尿素积累。此外,NBPT导致谷氨酰胺、谷氨酸和天冬酰胺含量发生变化。微阵列数据表明,NBPT影响尿素氮的同化和初级代谢,如糖酵解、三羧酸循环和电子传递链,同时激活苯丙氨酸/酪氨酸衍生途径。此外,NBPT强烈调节与二价金属运输和络合相关基因的表达。这里呈现的数据表明,当NBPT与尿素一起施用时,植物细胞中碳和氮化合物之间可能会出现失衡。在这种情况下,根细胞似乎也会激活一种反应以维持某些微量营养素的稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c52f/4916206/f1329c616857/fpls-07-00845-g0001.jpg

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