固氮蓝藻 Calothrix sp. NIES-4101 异囊发育过程中的复杂重组事件恢复了功能性 nif 基因簇

IF 3.9 2区 生物学 Q2 CELL BIOLOGY
Kazuma Uesaka, Mari Banba, Sotaro Chiba, Yuichi Fujita
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引用次数: 0

摘要

在异囊蓝藻Calothrix sp.NIES-4101(NIES-4101)的基因组中,固氮所必需的四个基因(nifB、nifH、nifD和nifK)在350kb的染色体区域内高度破碎成13个部分,其中四个部分在反向链中编码。这种复杂的片段特征使得很难通过 Anabaena sp. PCC 7120 异囊藻 nifD 基因的切除机制恢复完整的 nifBHDK 基因。为了考察NIES-4101的固氮能力,我们证实NIES-4101在复合无氮培养基上生长良好,并表现出较高的氮酶活性,这有力地证明了完整的nifBHDK基因在异囊中是通过复杂的重组过程恢复的。接下来,我们对固氮条件下生长的细胞制备的基因组进行了重新测序。通过对测序读数的重新组合,我们发现了涵盖完整 nifHDK 和 nifB 基因的两个等位组。此外,还通过 PCR 成功扩增出了覆盖 nifBHDK 操作子的 DNA 片段。我们认为 nifBHDK 的恢复过程如下。首先,nifD-nifK 基因通过四次切除事件得到恢复。然后,通过两次切除事件恢复完整的 nifH 和 nifB 基因,接着在倒置重复序列之间连续发生两次倒置事件和一次切除事件,形成功能性 nif 基因簇,即 nifB-fdxN-nifS-nifU-nifH-nifD-nifK。负责这九次重组事件的所有编码重组酶的基因都位于末端重复序列附近。NIES-4101 中 nifBHDK 基因的恢复是所报道的杂囊蓝藻中最复杂的基因组重组。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Restoration of the Functional nif Gene Cluster by Complex Recombination Events during Heterocyst Development in the Nitrogen-Fixing Cyanobacterium Calothrix sp. NIES-4101.

In the genome of the heterocystous cyanobacterium Calothrix sp. NIES-4101 (NIES-4101), the four genes essential for nitrogen fixation (nifB, nifH, nifD and nifK) are highly fragmented into 13 parts in a 350-kb chromosomal region, and four of these parts are encoded in the reverse strand. Such a complex fragmentation feature makes it difficult to restore the intact nifBHDK genes by the excision mechanism found in the nifD gene of the Anabaena sp. PCC 7120 heterocyst. To examine the nitrogen-fixing ability of NIES-4101, we confirmed that NIES-4101 grew well on a combined nitrogen-free medium and showed high nitrogenase activity, which strongly suggested that the complete nifBHDK genes are restored by a complex recombination process in heterocysts. Next, we resequenced the genome prepared from cells grown under nitrogen-fixing conditions. Two contigs covering the complete nifHDK and nifB genes were found by de novo assembly of the sequencing reads. In addition, the DNA fragments covering the nifBHDK operon were successfully amplified by PCR. We propose that the process of nifBHDK restoration occurs as follows. First, the nifD-nifK genes are restored by four excision events. Then, the complete nifH and nifB genes are restored by two excision events followed by two successive inversion events between the inverted repeat sequences and one excision event, forming the functional nif gene cluster, nifB-fdxN-nifS-nifU-nifH-nifD-nifK. All genes coding recombinases responsible for these nine recombination events are located close to the terminal repeat sequences. The restoration of the nifBHDK genes in NIES-4101 is the most complex genome reorganization reported in heterocystous cyanobacteria.

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来源期刊
Plant and Cell Physiology
Plant and Cell Physiology 生物-细胞生物学
CiteScore
8.40
自引率
4.10%
发文量
166
审稿时长
1.7 months
期刊介绍: Plant & Cell Physiology (PCP) was established in 1959 and is the official journal of the Japanese Society of Plant Physiologists (JSPP). The title reflects the journal''s original interest and scope to encompass research not just at the whole-organism level but also at the cellular and subcellular levels. Amongst the broad range of topics covered by this international journal, readers will find the very best original research on plant physiology, biochemistry, cell biology, molecular genetics, epigenetics, biotechnology, bioinformatics and –omics; as well as how plants respond to and interact with their environment (abiotic and biotic factors), and the biology of photosynthetic microorganisms.
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