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首页> 外文期刊>Czech Journal of Genetics and Plant Breeding >Comparative metabolomics and transcriptomics of pistils, stamens and pistilloid stamens widen key knowledge of pistil and stamen development in wheat
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Comparative metabolomics and transcriptomics of pistils, stamens and pistilloid stamens widen key knowledge of pistil and stamen development in wheat

机译:雌雄同体,雄蕊和激发藤雄蕊的比较代谢组和转录组织扩大了小麦雌蕊和雄蕊发育的关键知识

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摘要

To examine the role of metabolites in wheat stamen and pistil development, metabolomic analyses of pistilloid stamens (PS), pistils (P), and stamens (S) from a novel wheat mutant homologous transformation sterility-1 (HTS-1) and controls from their sib-line CSTP were conducted using base gas chromatography-mass spectrometry (GC-MS) and liquid chromatography-mass spectrometry (LC-MS). Then, the metabolomic data were integrated with previously published transcriptomic data and analysed. In total, 141 annotated metabolites were determined from P, PS and S tissues by comparison with reference standards. A total of 90, 93 and 18 different metabolites were identified in S vs. PS, S vs. P and P vs. PS, respectively. Among the different metabolites, 80 may be associated with stamen and pistil growth. Using integration evaluations of both the previous transcriptome data and the 80 various metabolites, we found two perturbed pathways that significantly affect flower development in plants, namely, the phenylpropanoid biosynthesis and cysteine and methionine metabolism. The ethylene synthesis pathway, one key branch of the cysteine and methionine metabolic pathways, could have a pivotal role in pistillody growth involving HTS-1. We found two key enzyme genes in the ethylene synthesis pathway (the SAM synthase gene and the ACC synthase gene) that have higher expression levels in stamens than in pistilloid stamens or pistils. We speculate, that the decrease in ethylene content during stamen development leads to pistillody traits in HTS-1. This study helps elucidate the molecular mechanisms underlying stamen and pistil growth in wheat.
机译:为了检查在小麦雄蕊和雌蕊发展代谢物,pistilloid雄蕊(PS),雌蕊(P)的代谢物组学分析,和雄蕊(S)的从一种新的小麦从角色突变体同源变换无菌性-1(HTS-1)和控制他们的同胞线CSTP使用碱气相色谱 - 质谱(GC-MS)和液相色谱 - 质谱(LC-MS)进行的。然后,代谢组学数据与此前公布的数据转录组和综合分析。总共141种注释的代谢物通过与参考标准相比较,从P,PS和S的组织来确定。共90,93和18个不同的代谢物S中分别鉴定与PS,S与P和P对PS,。在各种不同的代谢产物,80可以与雄蕊和雌蕊的生长相关联。使用前面的转录组数据和80种多种代谢物两者的整合评估,我们发现了两个干扰途径是显著影响花发育植物,即苯丙生物合成和半胱氨酸和蛋氨酸代谢。乙烯合成途径,和甲硫氨酸的半胱氨酸中的一个键分支代谢途径,可能在pistillody生长涉及HTS-1举足轻重的作用。我们发现在具有在雄蕊更高的表达水平比在pistilloid雄蕊或雌蕊的乙烯合成途径(在SAM合成酶基因和ACC合酶基因)的两个关键酶的基因。我们推测,在乙烯含量在雄蕊发育导致pistillody性状HTS-1的减少。这项研究有助于阐明潜在的花蕊在小麦生长的分子机制。

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