Campbell E L, Hagen K D, Cohen M F, Summers M L, Meeks J C
Section of Microbiology, Division of Biological Sciences, University of California, Davis, California 95616, USA.
J Bacteriol. 1996 Apr;178(7):2037-43. doi: 10.1128/jb.178.7.2037-2043.1996.
Strain UCD 311 is a transposon-induced mutant of Nostoc sp. strain ATC C 29133 that is unable to fix nitrogen in air but does so under anoxic conditions and is able to establish a functional symbiotic association with the hornwort Anthoceros punctatus. These properties of strain UCD 311 are consistent with previous observations that protection against oxygen inactivation of nitrogenase is physiologically provided within A. punctatus tissue. Upon deprivation of combined nitrogen, strain UCD 311 clearly differentiates heterocysts and contains typical heterocyst-specific glycolipids; it also makes apparently normal akinetes upon phosphate starvation. Sequence analysis adjacent to the point of the transposon insertion revealed an open reading frame designated devR. Southern analysis established that similar sequences are present in other heterocyst-forming cyanobacteria. devR putatively encodes a protein of 135 amino acids with high similarity to the receiver domains of response regulator proteins characteristics of two-component regulatory systems. On the basis of its size and the absence of other functional domains, DevR is most similar to CheY and Spo0F. Reconstruction of the mutation with an interposon vector confirmed that the transposition event was responsible for the mutant phenotype. The presence of wild-type devR on a plasmid in strain UCD 311 restored the ability to fix nitrogen in air. While devR was not essential for differentiation of akinetes, its presence in trans in Nostoc sp. strain ATCC 29133 stimulated their formation to above normal levels in aging medium. On the basis of RNA analysis, devR is constitutively expressed with respect to the nitrogen source for growth. The devR gene product is essential to the development of mature heterocysts and may be involved in a sensory pathway that is not directly responsive to cellular nitrogen status.
菌株UCD 311是念珠藻属菌株ATCC 29133的转座子诱导突变体,它在空气中不能固氮,但在缺氧条件下可以固氮,并且能够与角苔属的斑点角苔建立功能性共生关系。菌株UCD 311的这些特性与之前的观察结果一致,即在斑点角苔组织内可通过生理方式保护固氮酶免受氧失活。在缺乏化合态氮时,菌株UCD 311明显分化出异形胞并含有典型的异形胞特异性糖脂;在磷酸盐饥饿时,它还能形成看似正常的厚壁孢子。对转座子插入位点附近的序列分析揭示了一个名为devR的开放阅读框。Southern分析表明,其他形成异形胞的蓝细菌中也存在相似序列。devR推测编码一种由135个氨基酸组成的蛋白质,与双组分调节系统中响应调节蛋白的接收结构域高度相似。基于其大小和缺乏其他功能结构域,DevR与CheY和Spo0F最为相似。用插入子载体重建突变证实转座事件导致了突变体表型。菌株UCD 311中质粒上野生型devR的存在恢复了在空气中固氮的能力。虽然devR对厚壁孢子的分化不是必需的,但它在念珠藻属菌株ATCC 29133中的反式存在会在老化培养基中将其形成刺激到高于正常水平。基于RNA分析,devR的表达与生长的氮源组成型相关。devR基因产物对于成熟异形胞的发育至关重要,可能参与了一条不直接响应细胞氮状态的传感途径。