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首页> 外文期刊>The Horticulture Journal >Proline Accumulates in Response to Higher Temperatures during Dehardening in Peach Shoot Tissues
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Proline Accumulates in Response to Higher Temperatures during Dehardening in Peach Shoot Tissues

机译:桃芽组织去硬化过程中脯氨酸在高温下积累

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摘要

Changes in cold hardiness, proline (Pro) content, and related gene expression were confirmed in the shoots of two peach cultivars (Prunus persica 'Janghowon Hwangdo' and 'Odoroki') during natural cold hardening (CH) and dehardening (DH), and 10 supplemental peach cultivars during experimental DH. Specifically, transcript accumulations of P5CS (Delta(1)-pyrroline-5-carboxylate synthase) and P5CR (Delta(1)-pyrroline-5-carboxylate reductase) were examined using quantitative real-time RT-PCR. The cold hardiness of the shoots of the two cultivars differed significantly during the entire experimental period. The cold hardiness of both cultivars increased gradually until December 2012, and then decreased until April 2013, whereas their Pro contents decreased from the beginning of the experiment until February 2013 and then increased in the spring. While the cold hardiness of the 10 peach cultivars decreased, their Pro contents increased during DH. Interestingly, the expression of the P5CS gene encoding an enzyme that catalyzes the conversion from glutamate (Glu) to glutamic-gamma-semialdehyde (GSA) in the first step of the Pro pathway showed patterns contrasting with the Pro contents in both experiments. In contrast, the expression of the P5CR gene encoding an enzyme that catalyzes the conversion from Delta(1)-pyrroline-5-carboxylate (P5C) to Pro in the final step of the Pro pathway showed patterns similar to the Pro contents in both experiments. Our results demonstrate that Pro accumulation responds positively to higher temperatures in the shoots of different peach cultivars, including the 10 supplemental peach cultivars, and the expression of both P5CS and P5CR genes showed contrasting patterns. Our results suggest that identification of the expression of both P5CS and P5CR genes is required for the accurate analysis of Pro biosynthesis because Pro accumulation is more affected by the expression of P5CR genes. Furthermore, notably, during the experimental DH, the expression of OAT (ornithine-delta-aminotransferase) increased. Our results suggest that the ornithine pathway could serve as an alternative pathway in the Pro synthesis process during DH in peach.
机译:在自然冷硬(CH)和脱硬(DH)期间,在两个桃子品种(Prunus persica'Janghowon Hwangdo'和'Odoroki')的芽中确认了抗寒性,脯氨酸(Pro)含量和相关基因表达的变化,以及在实验DH期间有10个补充桃品种。具体而言,使用定量实时RT-PCR检查了P5CS(Delta(1)-吡咯啉-5-羧酸合酶)和P5CR(Delta(1)-吡咯啉-5-羧酸还原酶)的转录物积累。在整个实验期间,两个品种的芽的耐寒性显着不同。两个品种的耐寒性在2012年12月之前逐渐增加,然后在2013年4月之前降低,而从实验开始到2013年2月,其Pro含量降低,然后在春季增加。 DH期间10个桃品种的耐寒性下降,而Pro含量增加。有趣的是,在Pro途径的第一步中,编码可催化从谷氨酸(Glu)转化为谷氨酸-γ-半醛(GSA)的酶的P5CS基因的表达在两种实验中均显示与Pro含量相反的模式。相反,在Pro途径的最后一步中,编码可催化从Delta(1)-吡咯啉-5-羧化物(P5C)转化为Pro的酶的P5CR基因的表达与两种实验中的Pro含量相似。我们的结果表明,Pro积累对不同桃品种(包括10个补充桃品种)的芽中的高温有正响应,并且P5CS和P5CR基因的表达均表现出相反的模式。我们的结果表明,对Pro生物合成的准确分析需要鉴定P5CS和P5CR基因的表达,因为Pro积累受P5CR基因表达的影响更大。此外,值得注意的是,在实验DH期间,OAT(鸟氨酸-δ-氨基转移酶)的表达增加了。我们的结果表明鸟氨酸途径可以作为桃DH合成过程中Pro合成过程中的替代途径。

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