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Transcriptomics of cytokinin and auxin metabolism and signaling genes during seed maturation in dormant and non-dormant wheat genotypes

机译:休眠和非休眠小麦基因型种子成熟过程中细胞分裂素和生长素代谢和信号转导基因的转录组学

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摘要

To gain insights into the roles of cytokinin (CK) and auxin in regulating dormancy during seed maturation in wheat, we examined changes in the levels of CK and indole-3-acetic acid (IAA) and expression patterns of their metabolism and signaling genes in embryonic and endospermic tissues of dormant and non-dormant genotypes. Seed maturation was associated with a decrease in the levels of isopentenyladenine in both tissues mainly via repression of the CK biosynthetic TaLOG genes. Differential embryonic trans-zeatin content and expression patterns of the CK related genes including TacZOG, TaGLU and TaARR12 between maturing seeds of the two genotypes implicate CK in the control of seed dormancy induction and maintenance. Seed maturation induced a decrease of IAA level in both tissues irrespective of genotype, and this appeared to be mediated by repression of specific IAA biosynthesis, transport and IAA-conjugate hydrolysis genes. The differential embryonic IAA content and expression pattern of the IAA biosynthetic gene TaAO during the early stage of seed maturation between the two genotypes imply the role of IAA in dormancy induction. It appears from our data that the expression of specific auxin signaling genes including TaRUB, TaAXR and TaARF mediate the role of auxin signaling in dormancy induction and maintenance during seed maturation in wheat.
机译:为了深入了解细胞分裂素(CK)和生长素在调节小麦种子成熟过程中休眠中的作用,我们研究了CK和吲哚-3-乙酸(IAA)水平的变化以及它们的代谢和信号转导基因的表达模式。休眠和非休眠基因型的胚胎和胚乳组织。种子成熟与两种组织中异戊烯腺嘌呤水平的降低有关,这主要是通过抑制CK生物合成TaLOG基因来实现的。两种基因型的成熟种子之间差异的胚反玉米蛋白含量和CK相关基因(包括TacZOG,TaGLU和TaARR12)的表达模式都表明CK参与了种子休眠诱导和维持的控制。种子成熟导致两种组织中IAA水平的降低,而与基因型无关,这似乎是由抑制特定的IAA生物合成,转运和IAA共轭水解基因介导的。两种基因型之间在种子成熟的早期,IAA生物合成基因TaAO的胚胎IAA含量和表达模式的差异暗示了IAA在休眠诱导中的作用。从我们的数据看来,包括TaRUB,TaAXR和TaARF在内的特定生长素信号传导基因的表达介导了生长素信号传导在小麦种子成熟期间休眠诱导和维持中的作用。

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