Molecular mechanisms of regulation of anthocyanine biosynthesis, photosynthesis, and frost resistance of winter wheat seedlings treated with the 5-aminolevulic acid

N. G. Averina, S. M. Savina, A. V. Yemelyanava, I. Dremuk, Yu. V. Prischepchik
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Abstract

It was found that in anthocyanin-enriched coleoptiles of winter wheat EtW5 variety, the exogenous 5-aminolevulinic acid (ALA) increased the content of anthocyanins by a factor of 1.5 and the expression level of structural (PAL, CHS) and regulatory (PAP-1) genes of the anthocyanin biosynthesis pathway. In coleoptiles of Vladi plants containing 33 times less anthocyanins compared to EtW5, the expression of CHS and PAP-1 was reduced and additionally inhibited by ALA. Thus, the genetic activity of the phenylpropanoid and flavonoid sites of the anthocyanin biosynthesis pathway shows distinct variety specificity and a dependence on the level of anthocyanins. ALA significantly reduced the thermal dissipation of excitation energy in PSII complexes in the EtW5 variety enriched with anthocyanins and significantly increased the level of these processes in the Vladi variety. Variety-specificity was noted in the levels of frost resistance of two varieties – high (88 % of surviving plants exposed to a temperature of –8 °С for 5 hours) in the EtW5 variety and lower (80 %) in the Vladi variety. ALA increased the frost resistance of both varieties due to an increase in the content of anthocyanins and proline in the coleoptiles of the EtW5 variety and a higher proline content in the Vladi variety.
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用 5-氨基乙酰丙酸处理冬小麦幼苗的花青素生物合成、光合作用和抗冻性的分子调控机制
研究发现,在富含花青素的冬小麦 EtW5 品种的颖果中,外源 5-氨基乙酰丙酸(ALA)可将花青素含量提高 1.5 倍,并提高花青素生物合成途径的结构基因(PAL、CHS)和调控基因(PAP-1)的表达水平。在花青素含量比 EtW5 少 33 倍的 Vladi 植物的叶绿体中,CHS 和 PAP-1 的表达量减少,而且还受到 ALA 的抑制。因此,花青素生物合成途径中的苯丙类和黄酮类位点的遗传活性具有明显的品种特异性,并依赖于花青素的水平。在富含花青素的 EtW5 品种中,ALA 明显降低了 PSII 复合物中激发能量的热耗散,而在 Vladi 品种中则明显提高了这些过程的水平。两个品种的抗冻性具有品种特异性--EtW5 品种的抗冻性高(暴露在-8 °С 温度下 5 小时的存活率为 88%),而 Vladi 品种的抗冻性较低(80%)。ALA 提高了两个品种的抗冻性,这是因为 EtW5 品种叶柄中的花青素和脯氨酸含量增加,而 Vladi 品种的脯氨酸含量更高。
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