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ntcA基因表达的生态学方面及其作为海洋聚球藻属氮状态指标的应用

Ecological aspects of ntcA gene expression and its use as an indicator of the nitrogen status of marine Synechococcus spp.

作者信息

Lindell D, Post A F

机构信息

H. Steinitz Marine Biology Laboratory, Interuniversity Institute for Marine Sciences, Eilat 88103, Israel.

出版信息

Appl Environ Microbiol. 2001 Aug;67(8):3340-9. doi: 10.1128/AEM.67.8.3340-3349.2001.

Abstract

Nitrogen nutrition in cyanobacteria is regulated by NtcA, a transcriptional activator that is subject to negative control by ammonium. Using Synechococcus sp. strain WH7803 as a model organism, we show that ntcA expression was induced when cells were exposed to nitrogen stress but not when they were subjected to phosphorus or iron deprivation. Transcript levels accumulated in cells grown on a variety of inorganic and organic nitrogen sources, with the sole exception of ammonium. ntcA transcription was induced when ammonium levels dropped below 1 microM and reached maximal levels within 2 h. Furthermore, the addition of more than 1 microM ammonium led to a rapid decline in ntcA mRNA. The negative effect of ammonium was prevented by the addition of L-methionine-D,L-sulfoximine (MSX) and azaserine, inhibitors of ammonium assimilation. Thus, basal ntcA transcript levels are indicative of ammonium utilization. Conversely, the highest ntcA transcript levels were found in cells lacking a nitrogen source capable of supporting growth. Therefore, maximal ntcA expression would indicate nitrogen deprivation. This state of nitrogen deprivation was induced by a 1-h incubation with MSX. The rapid response of ntcA gene expression to the addition of ammonium and MSX was used to design a protocol for assessing relative ntcA transcript levels in field populations of cyanobacteria, from which their nitrogen status can be inferred. ntcA was basally expressed in Synechococcus at a nutrient-enriched site at the northern tip of the Gulf of Aqaba, Red Sea. Therefore, these cyanobacteria were not nitrogen stressed, and their nitrogen requirements were met by regenerated nitrogen in the form of ammonium.

摘要

蓝藻中的氮营养由NtcA调控,NtcA是一种转录激活因子,受铵的负调控。以聚球藻属菌株WH7803作为模式生物,我们发现当细胞暴露于氮胁迫时ntcA表达被诱导,而在磷或铁缺乏时则不被诱导。转录水平在多种无机和有机氮源上生长的细胞中积累,但铵除外。当铵水平降至1微摩尔以下时,ntcA转录被诱导,并在2小时内达到最高水平。此外,添加超过1微摩尔的铵会导致ntcA mRNA迅速下降。添加L-甲硫氨酸-D,L-亚砜亚胺(MSX)和重氮丝氨酸(铵同化抑制剂)可防止铵的负面影响。因此,基础ntcA转录水平指示铵的利用情况。相反,在缺乏能够支持生长的氮源的细胞中发现了最高的ntcA转录水平。因此,最大ntcA表达表明氮缺乏。这种氮缺乏状态通过与MSX孵育1小时诱导产生。利用ntcA基因表达对铵和MSX添加的快速反应,设计了一种评估蓝藻野外种群中相对ntcA转录水平的方案,据此可推断它们的氮状态。在红海亚喀巴湾北端营养丰富的位点,聚球藻中ntcA呈基础表达。因此,这些蓝藻没有受到氮胁迫,它们的氮需求通过铵形式的再生氮得到满足。

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