首页> 外文期刊>Scientia horticulturae >Distinct expression profiles of ripening related genes in the 'Nanguo' pear (Pyrus ussuriensis) fruits.
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Distinct expression profiles of ripening related genes in the 'Nanguo' pear (Pyrus ussuriensis) fruits.

机译:“南果”梨(Pyrus ussuriensis)果实中成熟相关基因的不同表达谱。

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"Nanguo" pear (Pyrus ussuriensis) is one of the most important pear varieties in the northern part of China. It is typical climacteric fruit, and the ripening process is controlled by ethylene. In this study, we compared the fruit firmness and ethylene production between non-treated fruits and fruits treated with 1 mul l-1 of 1-MCP (1-Methylcyclopropene, an ethylene inhibitor) under 4 degrees C or room temperature. The expression of genes involved in ethylene biosynthesis and signal transduction was investigated. Fruits harvested from different locations were also used to compare the gene expression. The results showed that 1-MCP treatment slowed down the fruit firmness drop but did not change the ethylene production very much during storage. The expression of genes involved in ethylene biosynthesis (ACS1, ACS4 and ACO), reception (ERS1a) and response (PG1 and PG2) were inhibited by 1-MCP treatments, and affected by the treatment temperature. The expression of receptor gene ETR1a showed a constitutive pattern in fruits treated with or without 1-MCP at room temperature, but was induced in treatment under 4 degrees C. In the fruit harvested from colder area (Shenyang), the ethylene production was higher and fruit firmness was lower than that in fruit harvested from warmer area (Anshan). Moreover, the expression of ethylene biosynthesis and receptor genes was lower in fruit from Shenyang than that from Anshan. PG2 was expressed earlier in fruits from Shenyang than those from Anshan and may play more important role in fruit softening. The possible mechanism under the expression patterns was discussed
机译:“南果”梨(Pyrus ussuriensis)是中国北方最重要的梨品种之一。它是典型的更年期水果,成熟过程由乙烯控制。在这项研究中,我们比较了在4摄氏度下未处理的水果与1 mull -1 的1-MCP(1-甲基环丙烯,一种乙烯抑制剂)处理过的水果之间的硬度和乙烯生产量或室温。研究了参与乙烯生物合成和信号转导的基因的表达。从不同位置收获的果实也用于比较基因表达。结果表明,1-MCP处理减缓了果实的硬度下降,但在储存过程中并没有很大地改变乙烯的产量。 1-MCP处理可抑制参与乙烯生物合成的基因(ACS1,ACS4和ACO),接收(ERS1a)和应答(PG1和PG2)的基因表达,并受处理温度的影响。受体基因ETR1a的表达在室温下用或不用1-MCP处理的果实中表现出组成型模式,但是在4摄氏度的处理中诱导。在较冷地区(沉阳)收获的果实中,乙烯产量较高,且果实硬度低于温暖地区(鞍山)。此外,沉阳果实中乙烯生物合成和受体基因的表达低于鞍山果实。 PG2在沉阳的果实中比在鞍山的果实中更早表达,可能在果实软化中起重要作用。讨论了表达模式下的可能机制

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