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Comparative functional genomic screens of three yeast deletion collections reveal unexpected effects of genotype in response to diverse stress

机译:比较三个酵母缺失集合的功能基因组学筛选揭示了基因型对不同压力的反应出乎意料的影响

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摘要

The Yeast Knockout (YKO) collection has provided a wealth of functional annotations from genome-wide screens. An unintended consequence is that 76% of gene annotations derive from one genotype. The nutritional auxotrophies in the YKO, in particular, have phenotypic consequences. To address this issue, ‘prototrophic’ versions of the YKO collection have been constructed, either by introducing a plasmid carrying wild-type copies of the auxotrophic markers (Plasmid-Borne, PBprot) or by backcrossing (Backcrossed, BCprot) to a wild-type strain. To systematically assess the impact of the auxotrophies, genome-wide fitness profiles of prototrophic and auxotrophic collections were compared across diverse drug and environmental conditions in 250 experiments. Our quantitative profiles uncovered broad impacts of genotype on phenotype for three deletion collections, and revealed genotypic and strain-construction-specific phenotypes. The PBprot collection exhibited fitness defects associated with plasmid maintenance, while BCprot fitness profiles were compromised due to strain loss from nutrient selection steps during strain construction. The repaired prototrophic versions of the YKO collection did not restore wild-type behaviour nor did they clarify gaps in gene annotation resulting from the auxotrophic background. To remove marker bias and expand the experimental scope of deletion libraries, construction of a bona fide prototrophic collection from a wild-type strain will be required.
机译:酵母敲除(YKO)集合从全基因组屏幕中提供了大量功能注释。意外的结果是76%的基因注释来自一种基因型。特别是YKO中的营养缺陷型具有表型后果。为解决此问题,通过引入携带营养缺陷型标记的野生型拷贝的质粒(Plasmid-Borne,PBprot)或通过回交(Backcrossed,BCprot)来构建YKO集合的“原养”版本类型应变。为了系统地评估营养缺陷型的影响,我们在250个实验中比较了各种药物和环境条件下营养缺陷型和营养缺陷型集合的全基因组适应性概况。我们的定量概况揭示了基因型对三个缺失集合的表型的广泛影响,并揭示了基因型和菌株构建特异性的表型。 PBprot收集物表现出与质粒维持相关的适应性缺陷,而BCprot适应性特征由于菌株构建过程中营养选择步骤中的菌株损失而受到损害。修复的YKO集合的原养型版本无法恢复野生型行为,也无法阐明由营养缺陷型背景导致的基因注释中的空白。为了消除标记偏倚并扩大缺失文库的实验范围,将需要从野生型菌株中构建真正的原养型集合。

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