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Identification of an extensive gene cluster among a family of PPOs in Trifolium pratense L. (red clover) using a large insert BAC library

机译:使用大型插入BAC文库鉴定三叶草(红三叶草)PPO家族中广泛的基因簇

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Background Polyphenol oxidase (PPO) activity in plants is a trait with potential economic, agricultural and environmental impact. In relation to the food industry, PPO-induced browning causes unacceptable discolouration in fruit and vegetables: from an agriculture perspective, PPO can protect plants against pathogens and environmental stress, improve ruminant growth by increasing nitrogen absorption and decreasing nitrogen loss to the environment through the animal's urine. The high PPO legume, red clover, has a significant economic and environmental role in sustaining low-input organic and conventional farms. Molecular markers for a range of important agricultural traits are being developed for red clover and improved knowledge of PPO genes and their structure will facilitate molecular breeding. Results A bacterial artificial chromosome (BAC) library comprising 26,016 BAC clones with an average 135 Kb insert size, was constructed from Trifolium pratense L. (red clover), a diploid legume with a haploid genome size of 440–637 Mb. Library coverage of 6–8 genome equivalents ensured good representation of genes: the library was screened for polyphenol oxidase (PPO) genes. Two single copy PPO genes, PPO4 and PPO5, were identified to add to a family of three, previously reported, paralogous genes (PPO1–PPO3). Multiple PPO1 copies were identified and characterised revealing a subfamily comprising three variants PPO1/2, PPO1/4 and PPO1/5. Six PPO genes clustered within the genome: four separate BAC clones could be assembled onto a predicted 190–510 Kb single BAC contig. Conclusion A PPO gene family in red clover resides as a cluster of at least 6 genes. Three of these genes have high homology, suggesting a more recent evolutionary event. This PPO cluster covers a longer region of the genome than clusters detected in rice or previously reported in tomato. Full-length coding sequences from PPO4, PPO5, PPO1/5 and PPO1/4 will facilitate functional studies and provide genetic markers for plant breeding.
机译:背景技术植物中的多酚氧化酶(PPO)活性是具有潜在的经济,农业和环境影响的性状。在食品工业中,PPO引起的褐变会导致水果和蔬菜变色,这是不可接受的:从农业的角度来看,PPO可以保护植物免受病原体和环境压力的影响,通过增加氮的吸收和减少氮的释放来改善反刍动物的生长。动物的尿液。高PPO的豆科植物红三叶草在维持低投入的有机农场和常规农场方面具有重要的经济和环境作用。正在开发用于红三叶草的一系列重要农业性状的分子标记,对PPO基因及其结构的了解将促进分子育种。结果从Trifolium pratense L.(红三叶草)(一种单倍体豆科植物,单倍体基因组大小为440-637 Mb)构建的细菌人工染色体(BAC)文库包含26,016个BAC克隆,平均插入片段大小为135 Kb。文库覆盖6-8个基因组等价物,确保了基因的良好代表性:筛选了该文库中的多酚氧化酶(PPO)基因。鉴定出两个单拷贝PPO基因PPO4和PPO5,以添加到三个以前报道的旁系同源基因(PPO1-PPO3)中。鉴定并表征了多个PPO1拷贝,揭示了包含三个变体PPO1 / 2,PPO1 / 4和PPO1 / 5的亚家族。六个PPO基因聚集在基因组内:四个单独的BAC克隆可以装配到预测的190–510 Kb单BAC重叠群上。结论红三叶草中的PPO基因家族至少包含6个基因。这些基因中的三个具有高度同源性,表明最近的进化事件。与在水稻中检测到的或先前在番茄中报道的聚类相比,该PPO聚类覆盖的基因组区域更长。 PPO4,PPO5,PPO1 / 5和PPO1 / 4的全长编码序列将有助于功能研究,并为植物育种提供遗传标记。

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