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Extracellular complementation and the identification of additional genes involved in aerial mycelium formation in Streptomyces coelicolor.

机译:Coelicolor链霉菌中气生菌丝形成的细胞外互补和其他基因的鉴定。

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摘要

Morphogenesis in the bacterium Streptomyces coelicolor involves the formation of a lawn of hair-like aerial hyphae on the colony surface that stands up in the air and differentiates into chains of spores. bld mutants are defective in the formation of this aerial mycelium and grow as smooth, hairless colonies. When certain pairs of bld mutants are grown close to one another on rich sporulation medium, they exhibit extracellular complementation such that one mutant restores aerial mycelium formation to the other. The extracellular complementation relationships of most of the previously isolated bld mutants placed them in a hierarchy of extracellular complementation groups. We have screened for further bld mutants with precautions intended to maximize the discovery of additional genes. Most of the 50 newly isolated mutant strains occupy one of three of the previously described positions in the hierarchy, behaving like bldK, bldC, or bldD mutants. We show that the mutations in some of the strains that behave like bldK are bldK alleles but that others fall in a cluster at a position on the chromosome distinct from that of any known bld gene. We name this locus bldL. By introducing cloned genes into the strains that exhibit bldC or bldD-like extracellular complementation phenotypes, we show that most of these strains are likely to contain mutations in genes other than bldC or bldD. These results indicate that the genetic control of aerial mycelium formation is more complex than previously recognized and support the idea that a high proportion of bld genes are directly or indirectly involved in the production of substances that are exchanged between cells during morphological differentiation.
机译:天蓝色链霉菌细菌的形态发生涉及在菌落表面上长成空气状并分化成孢子链的菌毛状菌丝在菌落表面上的形成。 bld突变体在这种气生菌丝体的形成中有缺陷,并以光滑,无毛的菌落生长。当某些成对的bld突变体在丰富的孢子形成培养基上彼此靠近生长时,它们表现出细胞外互补性,因此一个突变体可将空中菌丝体的形成恢复为另一个。大多数以前分离的bld突变体的细胞外互补关系将它们置于细胞外互补基团的层次结构中。我们已筛选出更多的bld突变体,并采取了预防措施,以最大程度地发现其他基因。在这50个新分离的突变株中,大多数占据了先前描述的三个位置之一,就像bldK,bldC或bldD突变一样。我们显示,某些菌株的突变行为类似于bldK,是bldK等位基因,但其他突变则落在与任何已知bld基因不同的染色体位置上的簇中。我们将此基因座命名为bldL。通过将克隆的基因引入表现出bldC或bldD样细胞外互补表型的菌株中,我们表明这些菌株中的大多数很可能在bldC或bldD以外的基因中包含突变。这些结果表明,气生菌丝体形成的遗传控制比以前公认的更为复杂,并支持以下观点:高比例的bld基因直接或间接参与了形态分化过程中在细胞之间交换的物质的产生。

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