[生长素消除甲基环丙烯和氨基氧乙酸对矮牵牛花粉粒萌发、花粉管生长和ACC合成的抑制作用]。

Ontogenez Pub Date : 2017-03-01
L V Kovaleva, E V Zakharova, A S Voronkov, G V Timofeeva
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引用次数: 0

摘要

如前所述,乙烯在受精程序期对雄性配子体的萌发、发育和生长起调节作用。然而,这些过程的调节机制迄今尚未得到研究。乙烯反应的多样性主要是由于其与其他植物激素的相互作用。根据我们的工作假设,乙烯通过与植物生长素的相互作用来控制花粉粒(PGs)的萌发和花粉管(PTs)的生长,现有数据表明,生长素可能是植物细胞极化和形态发生的关键调节剂,也是在acc合酶基因表达水平上调控乙烯生物合成的因素之一。本文以离体萌发的矮牵牛(Petuniahybrida L.)雄性配子体和花粉-柱头体系为研究材料,研究了植物激素(乙烯和IAA)和已知的乙烯受体阻阻剂(1-甲基环丙烯,1-MCP)、氨基酸氧乙酸(AOA)合成和运输IAA(triyodbenzoynaya acid, TYBA)对PGs萌发、PTs生长和ACC合成的影响。结果表明,外源乙烯和IAA对PGs萌发和pts生长均有促进作用。1-MCP和TYBA完全抑制了第一个过程,而IAA则消除了1-MCP和AOA对上述两个过程的抑制作用。Etrel仅部分减弱tyba的抑制作用。AOA对ACC合成调节的研究表明,IAA对离体雄配子体萌发和未授粉柱头中ACC的合成没有影响,而IAA对ACC的合成的抑制作用不显著,AOA对ACC合成的抑制作用被消除。经1-MCP处理的花粉在柱头授粉时,其PT生长速率和ACC水平均下降2.5倍。同时,IAA消除了1- mcp的抑制作用,使ACC的合成和PTs的生长恢复到控制值。这些结果为矮牵牛雄性配子体受精程序期萌发和生长过程中,在ACC生物合成水平上,乙烯和生长素信号转导通路的相互作用提供了证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Auxin Abolishes Inhibitory Effects of Methylcyclopropen and Amino Oxyacetic Acid on Pollen Grain Germination, Pollen Tube Growth, and the Synthesis of ACC in Petunia].

As established by us earlier, ethylene behaves as a regulator of germination, development, and growth of male gametophyte during the progamic phase of fertilization. However, the mechanisms of the regulation of these processes remain so far unstudied. It is believed that the main factor providing variety of the ethylene responses is its interaction with other phytohormones. According to our working hypothesis, ethylene controls germination of pollen grains (PGs) and growth of pollen tubes (PTs) by interacting with auxin, which, as the available data indicate, is likely a key regulator of plant cell polarization and morphogenesis and one of the factors modulating the biosynthesis of ethylene at the level of ACC-synthase gene expression. In the present work, on germinating in vitro male gametophyte and the pollen-stigma system for petunia (Petunia hybrida L.) effects of phytohormones (ethylene and IAA) and known blockers repressing ethylene reception (1-methylcyclopropene, 1-MCP), the synthesis of ACC (amino oxyacetic acid, AOA) and transport IAA (triyodbenzoynaya acid, TYBA) on PGs germination, PTs growth and the synthesis of ACC were investigated. According to the data obtained, exogenous ethylene and IAA stimulated both PGs germination and PTs growth. 1-MCP and TYBA completely inhibited the first process, whereas IAA abolished the inhibitory action of 1-MCP and AOA on both the above processes. Etrel only partially weakened the inhibitory effect of TYBA. Examination of ACC synthesis modulation with AOA showed that IAA does not affect the level of ACC in germinating in vitro male gametophyte and nonpollinated stigmas, while this phytohormone insignificantly raised the level of ACC and abolished the inhibitory effect of AOA on its synthesis in the pollenstigma system. Pollination of stigmas with the pollen preliminarily treated with 1-MCP led to 2.5-fold decline in both the rate of PT growth and the level of ACC. At the same time, IAA abolished the inhibitory action of 1-MCP recovering the synthesis of ACC and growth of PTs to the control values. All these results, taken together, provide evidence for the interaction of the signal transduction pathways of ethylene and auxin at the level of ACC biosynthesis in the course of germination and growth of petunia male gametophyte during the progamic phase of fertilization.

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