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丝状蓝细菌营养缺陷型的分离与初步鉴定

Isolation and preliminary characterization of auxotrophs of a filamentous Cyanobacterium.

作者信息

Currier T C, Haury J F, Wolk C P

出版信息

J Bacteriol. 1977 Mar;129(3):1556-62. doi: 10.1128/jb.129.3.1556-1562.1977.

Abstract

Auxotrophic mutants of the filamentous cyanobacterium Anabaena variabilis were isolated by a method in which, after mutagenesis and before penicllin enrichment, mutant and wild-type cells were separated by cavitation. Auxotrophs were identified by their inability to grow on minimal medium, and they were partially characterized by replica plating to media supplemented with single nutrients or specific groups of nutrients. Of the 83 auxotrophs isolated, 65 required an inorganic source of nitrogen for growth. In addition, auxotrophs were isolated that required methionine (six), uracil (two), adenine (one), biotin (two), and nicotinic acid (two). (The number of isolates of each type is indicated in parentheses.) The nutrient requirements of five auxotrophs appeared complex and were not determined. A large proportion of the mutants requiring inorgainic fixed nitrogen was altered in the differentiation of heterocysts. The following morphological aberrancies were observed: abnormally high and abnormally low frequencies of heterocysts; thick, uneven heterocyst envelopes; incompletely developed pore regions; very distinct pore regions; and protoplasts separated from the envelope of the heterocyst. Spontaneously occurring, N2-fixing, prototrophic revertants of mutants with aberrant heterocysts have been isolated at a frequency of 2 X 10(-8) to 4 X 10(-8) of the cells plated. That most such revertants produced morphologically normal heterocysts is consisten with the idea that heterocysts play an essential role in aerobic N2 fixation.

摘要

通过一种方法分离出了丝状蓝细菌多变鱼腥藻的营养缺陷型突变体,该方法是在诱变后且在青霉素富集之前,通过空化作用将突变体细胞和野生型细胞分离。营养缺陷型通过其在基本培养基上无法生长来鉴定,并通过影印接种到补充有单一营养素或特定营养素组的培养基上进行部分表征。在分离出的83个营养缺陷型中,65个需要无机氮源才能生长。此外,还分离出了需要甲硫氨酸(6个)、尿嘧啶(2个)、腺嘌呤(1个)、生物素(2个)和烟酸(2个)的营养缺陷型。(每种类型的分离株数量在括号中注明。)5个营养缺陷型的营养需求似乎很复杂,尚未确定。很大一部分需要无机固定氮的突变体在异形胞分化方面发生了改变。观察到以下形态异常:异形胞频率异常高和异常低;异形胞包膜厚且不均匀;孔区域发育不完全;孔区域非常明显;以及原生质体与异形胞包膜分离。已以接种细胞的2×10^(-8)至4×10^(-8)的频率分离出具有异常异形胞的突变体的自发发生的、固氮的、原养型回复突变体。大多数此类回复突变体产生形态正常的异形胞,这与异形胞在需氧固氮中起重要作用的观点一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78d5/235135/c16b67837bc1/jbacter00310-0401-a.jpg

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