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Extreme nuclear disproportion and constancy of enzyme activity in a heterokaryon of Neurospora crassa

机译:景天孢菌异核体中的极端核错配和酶活性恒定性

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Heterokaryons of Neurospora crassa were generated by transformation of multinucleate conidia of a histidine-3 auxotroph with his-3+ plasmid. In one of the transformants, propagated on a medium with histidine supplementation, a gradual but drastic reduction occurred in the proportion of prototrophic nuclei that contained an ectopically integrated his-3+ allele. This response was specific to histidine. The reduction in prototrophic nuclei was confirmed by several criteria: inoculum size test, hyphal tip analysis, genomic Southern analysis, and by visual change in colour of the transformant incorporating genetic colour markers. Construction and analyses of three-component heterokaryons revealed that the change in nuclear ratio resulted from interaction of auxotrophic nucleus with prototrophic nucleus that contained an ectopically integrated his-3+ gene, but not with prototrophic nucleus that contained his-3+ gene at the normal chromosomal location. The growth rate of heterokaryons and the activity of histidinol dehydrogenasea€”the protein encoded by the his-3+ genea€”remained unchanged despite prototrophic nuclei becoming very scarce. The results suggest that not all nuclei in the coenocytic fungal mycelium may be active simultaneously, the rare active nuclei being sufficient to confer the wild-type phenotype.
机译:通过使用his-3 +质粒转化组氨酸3营养缺陷型的多核分生孢子,可以产生克雷索氏菌的异核。在其中一种在补充有组氨酸的培养基上繁殖的转化子中,原养核中含有异位整合的his-3 +等位基因的比例逐渐但急剧降低。该反应对组氨酸是特异性的。原生营养核的减少通过以下几个标准得到确认:接种物大小测试,菌丝尖端分析,基因组Southern分析以及结合遗传颜色标记的转化体颜色的视觉变化。对三组分异核体的​​构建和分析表明,核比率的变化是由于营养缺陷性核与含有异位整合了his-3 +基因的原营养核相互作用而引起的,而不是正常情况下含有his-3 +基因的原营养核相互作用染色体位置。尽管原营养核变得非常稀缺,但异核体的生长速度和组氨酸醇脱氢酶“ his-3 +族所编码的蛋白质”的活性仍保持不变。结果表明,并非所有的胞核真菌菌丝体中的核都可能同时具有活性,稀有的活性核足以赋予野生型表型。

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