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蓝藻 nif 基因簇的组织和调节:对植物细胞中固氮酶表达的影响。

Organization and regulation of cyanobacterial nif gene clusters: implications for nitrogenase expression in plant cells.

机构信息

Department of Biology, University of Missouri-St. Louis, One University Blvd., St. Louis, MO 63121, USA.

出版信息

FEMS Microbiol Lett. 2019 Apr 1;366(7). doi: 10.1093/femsle/fnz077.

Abstract

For over 50 years scientists have considered the possibility of engineering a plant with nitrogen fixation capability, freeing farmers from their dependence on nitrogen fertilizers. With the development of the tools of synthetic biology, more progress has been made toward this goal in the last 5 years than in the previous five decades. Most of the effort has focused on nitrogenase genes from Klebsiella oxytoca, which has complex gene regulation. There may be advantages in using nitrogenase genes from cyanobacteria, which comprise large polycistronic gene clusters that may be easier to manipulate and eventually express in a plant. The fact that some diatoms have a cyanobacterial nitrogen fixing organelle further supports the idea that a cyanobacterial nitrogenase gene cluster may function in a newly-engineered, cyanobacterial-based plant organelle, a nitroplast. This review describes recent attempts to express the nif genes from Anabaena variabilis ATCC 29413, Leptolyngbya boryana dg5 and Cyanothece sp. ATCC 51142 in heterologous cyanobacteria in the context of the organization of the nitrogenase genes and their regulation by the transcription factor CnfR via its highly conserved binding sites.

摘要

五十多年来,科学家们一直考虑通过工程技术使植物具备固氮能力,从而使农民摆脱对氮肥的依赖。随着合成生物学工具的发展,过去 5 年中在实现这一目标方面取得的进展超过了过去 50 年。大多数研究都集中在来自产碱菌属的固氮酶基因上,因为该基因的基因调控较为复杂。利用蓝藻的固氮酶基因可能具有优势,因为蓝藻的基因簇通常较大,可能更容易操作,并最终在植物中表达。一些硅藻具有蓝细菌固氮细胞器,这进一步支持了这样一种观点,即蓝细菌固氮酶基因簇可能在新设计的基于蓝细菌的植物细胞器——硝化体中发挥作用。本文综述了近期在不同蓝藻中表达鱼腥藻 Anabaena variabilis ATCC 29413、颤藻 Leptolyngbya boryana dg5 和集胞藻 Cyanothece sp. ATCC 51142 中的 nif 基因的尝试,同时还介绍了氮调节因子 CnfR 通过其高度保守的结合位点对固氮酶基因的组织和调控。

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