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Large-scale phenotyping of transgenic tobacco plants (Nicotiana tabacum) to identify essential leaf functions

机译:转基因烟草植物(尼古利亚纳Tabacum)的大规模表型鉴定基本叶功能

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Two of the major challenges in functional genomics are to identify genes that play a key role in biological processes, and to elucidate the biological role of the large numbers of genes whose function is poorly characterized or still completely unknown. In this study, a combination of large-scale expressed sequence tag sequencing, high-throughput gene silencing and visual phenotyping was used to identify genes in which partial inhibition of expression leads to marked phenotypic changes, mostly on leaves. Three normalized tobacco (Nicotiana tabacum) cDNA libraries were prepared directly in a binary vector using different tissues of tobacco as an RNA source, randomly sequenced and clustered. The Agrobacterium-tobacco leaf disc transformation system was used to generate sets of antisense or co-suppression transgenic tobacco plants for over 20 000 randomly chosen clones, each representing an independent cluster. After transfer to the glasshouse, transgenic plants were scored visually after 10-14 days for changes in growth, leaf form and chlorosis or necrosis. Putative hits were validated by repeating the transformation. This procedure is more stringent than the analysis of knockout mutants, because it requires that even a partial decrease in expression generates a phenotype. This procedure identified 88 validated gene/phenotype relations. These included several previously characterized gene/phenotype relationships, demonstrating the validity of the approach. For about one-third, a function could be inferred, but a loss-of-function phenotype had not been described previously. Strikingly, almost one-half of the validated genes were poorly annotated, or had no known function. For 77 of these tobacco sequences, a single or small number of potential orthologues were identified in Arabidopsis. The genes for which orthologues were identified in Arabidopsis included about one-half of the genes whose function was completely unknown. Comparison with published gene/phenotype relations for Arabidopsis knockout mutants revealed surprisingly little overlap with the present study. Our results indicate that partial gene silencing identifies novel gene/phenotype relationships, which are distinct from those uncovered by knockout screens. They also show that it is possible to perform these analyses in a crop species in which full genome sequence information is lacking, and subsequently to transfer the information to a reference species in which functional studies can be performed more effectively.
机译:功能基因组学中的两个主要挑战是鉴定在生物过程中发挥关键作用的基因,并阐明函数特征差或仍然完全未知的大量基因的生物学作用。在该研究中,用于鉴定大规模表达序列标签测序,高通量基因沉默和视觉表型的组合鉴定了表达的部分抑制导致显着的表型变化,主要是叶片。使用不同的烟草作为RNA源,随机测序和聚集,直接在二元载体中直接制备三个标准化的烟草(烟塔Tabacum)cDNA文库。农杆菌 - 烟草叶片变换系统用于生成用于超过20 000多个随机所选择的克隆的反义或共抑制转基因烟草植物,每个克隆代表独立簇。在转移到玻璃料后,在10-14天后,转基因植物在增长,叶片和萎黄或坏死的变化后在视觉上进行评分。通过重复转变来验证推定的命中。该过程比敲除突变体的分析更严格,因为它需要表达中的部分降低产生表型。该过程确定了88个验证的基因/表型关系。这些包括若干以前特征的基因/表型关系,展示了方法的有效性。对于大约三分之一,可以推断出函数,但先前未描述函数损失表型。引人注目的是,几乎一半的验证基因被批量差,或者没有已知的功能。对于这些烟草序列中的77个,在拟南芥中鉴定了单个或少数潜在的原子原理。在拟南芥中鉴定了拟拟合原因的基因,包括函数完全未知的一半基因。与已发表的基因/表型关系对拟南芥敲除突变体的比较显示出令人惊讶地与本研究重叠。我们的结果表明,部分基因沉默鉴定了新的基因/表型关系,其与敲除屏幕未覆盖的那些不同。他们还表明,可以在缺乏全基因组序列信息的作物种类中进行这些分析,并且随后将信息转移到可以更有效地进行功能性研究的参考物种。

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