首页> 外文期刊>The Plant Cell >Candidate Gene Networks for Acylsugar Metabolism and Plant Defense in Wild Tomato Solanum pennellii([OPEN])
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Candidate Gene Networks for Acylsugar Metabolism and Plant Defense in Wild Tomato Solanum pennellii([OPEN])

机译:野生番茄Solanulii中酰氨酸代谢和植物防御的候选基因网络([打开])

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Many solanaceous plants secrete acylsugars, which are branched-chain and straight-chain fatty acids esterified to Glu or Suc. These compounds have important roles in plant defense and potential commercial applications. However, several acylsugar metabolic genes remain unidentified, and little is known about regulation of this pathway. Comparative transcriptomics between low- and high-acylsugar-producing accessions of Solanum pennellii revealed that expression levels of known and novel candidate genes (putatively encoding beta-ketoacyl-(acyl-carrier-protein) synthases, peroxisomal acyl-activating enzymes, ATP binding cassette (ABC) transporters, and central carbon metabolic proteins) were positively correlated with acylsugar accumulation, except two genes previously reported to be involved in acylglucose biosynthesis. Genes putatively encoding oxylipin metabolic proteins, subtilisin-like proteases, and other antimicrobial defense proteins were upregulated in low-acylsugar-producing accessions. Transcriptome analysis after biochemical inhibition of biosynthesis of branched-chain amino acids (precursors to branched-chain fatty acids) by imazapyr showed concentration-dependent downregulation of known and most acylsugar candidate genes, but not defense genes. Weighted gene correlation network analysis identified separate coexpressed gene networks for acylsugar metabolism (including six transcription factor genes and flavonoid metabolic genes) and plant defense (including genes putatively encoding NB-ARC and leucine-rich repeat sequences, protein kinases and defense signaling proteins, and previously mentioned defense proteins). Additionally, virus-induced gene silencing of two trichomes preferentially expressed candidate genes for straight-chain fatty acid biosynthesis confirmed their role in acylsugar metabolism.
机译:许多溶律植物分泌酰基臂,其是酯化为Glu或Suc的支链和直链脂肪酸。这些化合物在植物防御和潜在商业应用中具有重要作用。然而,几种酰胺代谢基因仍未认定,并且关于该途径的调节,已知几乎是众所周知的。茄霉素的低 - 酰基普罗尼葡萄醛泻药之间的比较转录组织揭示了已知和新候选基因的表达水平(推注β-酮酰基 - (酰基 - 载体 - 蛋白)合成酶,过氧化物酶酰基激活酶,ATP结合盒式盒(ABC)转运蛋白和中央碳代谢蛋白质与酰基熊的积极呈正相关,除了先前据报道的两个基因涉及酰基葡萄糖生物合成。借助于奥克西蛋白酶样蛋白,枯草杆菌蛋白酶样蛋白和其他抗微生物防御蛋白的基因在低酰基葡萄糖的脱析中上调。通过咪唑显示分支链氨基酸生物合成的生物化学抑制后的转录组分析,显示出浓度依赖于已知和最酰基熊蛋白候选基因的浓度依赖性下调,但不是防御基因。加权基因相关网络分析鉴定了用于酰胺代谢(包括六种转录因子基因和类黄酮代谢基因)和植物防御的单独的共表达基因网络(包括借助于编码Nb-arc和富含亮氨酸的重复序列,蛋白激酶和防御信号蛋白的基因,以及以前提到的防御蛋白)。此外,病毒诱导的两个粒子的基因沉默优先表达直链脂肪酸生物合成的候选基因证实了它们在酰基氏血糖代谢中的作用。

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