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Metabolic pathways and genes identified by RNA-seq analysis of barley near-isogenic lines differing by allelic state of the Black lemma and pericarp ( Blp ) gene

机译:通过大麦近等基因系的RNA-seq分析鉴定的代谢途径和基因,这些基因因黑外和果皮(​​Blp)基因的等位基因状态而异

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Some plant species have ‘melanin-like’ black seed pigmentation. However, the chemical and genetic nature of this ‘melanin-like’ black pigment have not yet been fully explored due to its complex structure and ability to withstand almost all solvents. Nevertheless, identification of genetic networks participating in trait formation is key to understanding metabolic processes involved in the expression of ‘melanin-like’ black seed pigmentation. The aim of the current study was to identify differentially expressed genes (DEGs) in barley near-isogenic lines (NILs) differing by allelic state of the Blp (black lemma and pericarp) locus. RNA-seq analysis of six libraries (three replicates for each line) was performed. A total of 957 genome fragments had statistically significant changes in expression levels between lines BLP and BW, with 632 fragments having increased expression levels in line BLP and 325 genome fragments having decreased expression. Among identified DEGs, 191 genes were recognized as participating in known pathways. Among these were metabolic pathways including ‘suberin monomer biosynthesis’, ‘diterpene phytoalexins precursors biosynthesis’, ‘cutin biosynthesis’, ‘cuticular wax biosynthesis’, and ‘phenylpropanoid biosynthesis, initial reactions’. Differential expression was confirmed by real-time PCR analysis of selected genes. Metabolic pathways and genes presumably associated with black lemma and pericarp colour as well as Blp-associated resistance to oxidative stress and pathogens, were revealed. We suggest that the black pigmentation of lemmas and pericarps is related to increased level of phenolic compounds and their oxidation. The effect of functional Blp on the synthesis of ferulic acid and other phenolic compounds can explain the increased antioxidant capacity and biotic and abiotic stress tolerance of black-grained cereals. Their drought tolerance and resistance to diseases affecting the spike may also be related to cuticular wax biosynthesis. In addition, upregulated synthesis of phytoalexins, suberin and universal stress protein (USP) in lemmas and pericarps of the Blp carriers may contribute to their increased disease resistance. Further description of the DEGs haplotypes and study of their association with physiological characteristics may be useful for future application in barley pre-breeding.
机译:一些植物物种具有“黑色素样”黑色种子色素沉着。但是,这种“黑色素”黑色颜料的化学和遗传性质由于其复杂的结构和可承受几乎所有溶剂的能力而尚未得到充分研究。尽管如此,识别参与性状形成的遗传网络是理解“黑色素样”黑色种子色素沉着表达所涉及的代谢过程的关键。本研究的目的是鉴定大麦近等基因系(NIL)中的差异表达基因(DEG),该基因因Blp(黑和果皮)基因座的等位基因状态而异。进行了六个文库的RNA-seq分析(每行三个重复)。共有957个基因组片段在BLP和BW品系之间的表达水平发生了统计学上的显着变化,其中632个片段在BLP品系中的表达水平升高,而325个基因组片段的表达降低。在已鉴定的DEG中,有191个基因被认为参与了已知途径。其中包括“ suberin单体生物合成”,“ diterpene phytoalexins前体生物合成”,“角质生物合成”,“表皮蜡生物合成”和“苯丙烷生物合成,初始反应”等代谢途径。通过选择基因的实时PCR分析确认差异表达。揭示了可能与黑和果皮颜色相关的代谢途径和基因,以及与氧化应激和病原体相关的Blp相关性。我们认为外和果皮的黑色色素沉着与酚类化合物水平及其氧化有关。功能性Blp对阿魏酸和其他酚类化合物合成的影响可以解释黑粒谷物抗氧化能力增强以及生物和非生物胁迫耐受性。它们的耐旱性和对影响穗的疾病的抵抗力也可能与表皮蜡的生物合成有关。此外,Blp携带者的外和果皮中植物抗毒素,木栓质蛋白和通用应激蛋白(USP)的合成上调可能有助于提高其抗病性。 DEGs单倍型的进一步描述以及它们与生理特性的关联的研究对于将来在大麦预育中的应用可能是有用的。

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