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NSR1/MYR2是拟南芥中天冬酰胺合成酶1(ASN1)表达的负调控因子,并且可能参与拟南芥中氮再利用的调控。

NSR1/MYR2 is a negative regulator of ASN1 expression and its possible involvement in regulation of nitrogen reutilization in Arabidopsis.

作者信息

Nakano Yoshimi, Naito Yuki, Nakano Toshitsugu, Ohtsuki Namie, Suzuki Kaoru

机构信息

National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki 305-8566, Japan.

National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki 305-8566, Japan.

出版信息

Plant Sci. 2017 Oct;263:219-225. doi: 10.1016/j.plantsci.2017.07.013. Epub 2017 Jul 20.

Abstract

Nitrogen (N) is a major macronutrient that is essential for plant growth. It is important for us to understand the key genes that are involved in the regulation of N utilization. In this study, we focused on a GARP-type transcription factor known as NSR1/MYR2, which has been reported to be induced under N-deficient conditions. Our results demonstrated that NSR1/MYR2 has a transcriptional repression activity and is specifically expressed in vascular tissues, especially in phloem throughout the plant under daily light-dark cycle regulation. The overexpression of NSR1/MYR2 delays nutrient starvation- and dark-triggered senescence in the mature leaves of excised whole aerial parts of Arabidopsis plants. Furthermore, the expression of asparagine synthetase 1 (ASN1), which plays an important role in N remobilization and reallocation, i.e. N reutilization, in Arabidopsis, is negatively regulated by NSR1/MYR2, since the expressions of NSR1/MYR2 and ASN1 were reciprocally regulated during the light-dark cycle and ASN1 expression was down-regulated in overexpressors of NSR1/MYR2 and up-regulated in T-DNA insertion mutants of NSR1/MYR2. Therefore, the present results suggest that NSR1/MYR2 plays a role in N reutilization as a negative regulator through controlling ASN1 expression.

摘要

氮(N)是植物生长必需的主要大量营养素。了解参与氮利用调控的关键基因对我们来说很重要。在本研究中,我们聚焦于一种名为NSR1/MYR2的GARP型转录因子,据报道它在缺氮条件下会被诱导表达。我们的结果表明,NSR1/MYR2具有转录抑制活性,并且在维管组织中特异性表达,尤其是在每日光暗周期调控下的整个植物的韧皮部中。NSR1/MYR2的过表达延缓了拟南芥植株离体地上部分成熟叶片中营养饥饿和黑暗引发的衰老。此外,天冬酰胺合成酶1(ASN1)在拟南芥的氮转运和重新分配(即氮再利用)中起重要作用,其表达受到NSR1/MYR2的负调控,因为在光暗周期中NSR1/MYR2和ASN1的表达相互调控,并且在NSR1/MYR2过表达植株中ASN1表达下调,而在NSR1/MYR2的T-DNA插入突变体中ASN1表达上调。因此,目前的结果表明,NSR1/MYR2通过控制ASN1的表达作为负调控因子在氮再利用中发挥作用。

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