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Regulation of polyamine metabolism and biosynthetic gene expression during olive mature-fruit abscission

机译:橄榄成熟果实脱落过程中多胺代谢和生物合成基因表达的调控

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Exogenous ethylene and some inhibitors of polyamine biosynthesis can induce mature-fruit abscission in olive, which could be associated with decreased nitric oxide production as a signaling molecule. Whether H2O2 also plays a signaling role in mature-fruit abscission is unknown. The possible involvement of H2O2 and polyamine in ethylene-induced mature-fruit abscission was examined in the abscission zone and adjacent cells of two olive cultivars. Endogenous H2O2 showed an increase in the abscission zone during mature-fruit abscission, suggesting that accumulated H2O2 may participate in abscission signaling. On the other hand, we followed the expression of two genes involved in the polyamine biosynthesis pathway during mature-fruit abscission and in response to ethylene or inhibitors of ethylene and polyamine. OeSAMDC1 and OeSPDS1 were expressed differentially within and between the abscission zones of the two cultivars. OeSAMDC1 showed slightly lower expression in association with mature-fruit abscission. Furthermore, our data show that exogenous ethylene or inhibitors of polyamine encourage the free putrescine pool and decrease the soluble-conjugated spermidine, spermine, homospermidine, and cadaverine in the olive abscission zone, while ethylene inhibition by CoCl2 increases these soluble conjugates, but does not affect free putrescine. Although the impact of these treatments on polyamine metabolism depends on the cultivar, the results confirm that the mature-fruit abscission may be accompanied by an inhibition of S-adenosyl methionine decarboxylase activity, and the promotion of putrescine synthesis in olive abscission zone, suggesting that endogenous putrescine may play a complementary role to ethylene in the normal course of mature-fruit abscission.
机译:外源乙烯和某些多胺生物合成抑制剂可诱导橄榄成熟果实脱落,这可能与减少一氧化氮的产生有关,这是信号分子。 H2 O2 是否在成熟果实脱落中也起信号作用尚不清楚。在两个橄榄品种的脱落区和邻近细胞中,研究了H2 O2 和多胺可能参与乙烯诱导的成熟果实脱落。内源H2 O2 在成熟果实脱落过程中的脱落区增加,表明积累的H2 O2 可能参与了脱落信号的传递。另一方面,我们追踪了成熟果实脱落期间响应于乙烯或乙烯和多胺抑制剂的两个参与多胺生物合成途径的基因的表达。 OeSAMDC1和OeSPDS1在两个品种的脱落区之内和之间差异表达。 OeSAMDC1显示与成熟水果脱落相关的略低表达。此外,我们的数据表明,外源乙烯或多胺抑制剂可促进游离腐胺池并减少橄榄脱落区的可溶性结合的亚精胺,亚精胺,高嘧啶和尸胺,而CoCl2抑制乙烯可增加这些可溶性结合物,但不影响免费的腐胺。尽管这些处理对多胺代谢的影响取决于品种,但结果证实,成熟果实脱落可能伴随着S-腺苷甲硫氨酸脱羧酶活性的抑制,并促进了橄榄脱落区腐胺的合成。内源性腐胺在正常成熟果实脱落过程中可能与乙烯起补充作用。

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