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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Proline metabolism in cherry tomato exocarp in relation to temperature and solar radiation.
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Proline metabolism in cherry tomato exocarp in relation to temperature and solar radiation.

机译:樱桃番茄外果皮中脯氨酸的代谢与温度和太阳辐射的关系。

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Given the importance of proline and its metabolism in resistance to abiotic stress, the objective of this work was to study the influence of temperature and solar radiation on proline metabolism in the exocarp fraction of cherry tomato fruits. Solanum lycopersicum cv. Naomi plants were grown in an experimental greenhouse. Three fruit samples were taken over the entire production period. The first sampling was at the beginning of harvest [85 d after transplanting (DAT)], the second at mid-harvest (160 DAT), and the third at the end of harvest (229 DAT). Temperature and solar radiation values peaked during the third sampling, which coincided with an increase in lipid peroxidation (lipoxygenase activity) and malondialdehyde content, indicating the presence of oxidative stress during this period. However, yield values did not vary during the production cycle of cherry tomatoes. An increase in proline content was found at 229 DAT, with two enzymes responsible for proline synthesis: Delta 1-pyrroline-5-carboxylate synthetase (P5CS) and ornithine- delta -aminotransferase (OAT). In contrast to previous work, proline dehydrogenase (PDH), which degrades proline, also increased its activity during this period. Under these conditions, the accumulation of proline, and proline degradation by PDH, could be considered to be a mechanism for resistance to stress by eliminating O< sub>2 and forming H+ ions. This would limit any major formation of reactive oxygen species (ROS), and thus cell necrosis, reducing losses in productivity.
机译:鉴于脯氨酸及其代谢对于抵抗非生物胁迫的重要性,这项工作的目的是研究温度和太阳辐射对樱桃番茄果实外果皮部分脯氨酸代谢的影响。番茄茄Naomi植物在实验温室中生长。在整个生产过程中采集了三个水果样品。第一次采样是在收获开始时[移植后85 d(DAT)],第二次是在收获中期(160 DAT),第三次是在收获结束时(229 DAT)。温度和太阳辐射值在第三次采样期间达到峰值,这与脂质过氧化(脂加氧酶活性)和丙二醛含量的增加相吻合,表明在此期间存在氧化应激。但是,在樱桃番茄的生产周期中,产量值没有变化。在229 DAT发现脯氨酸含量增加,其中有两种酶负责脯氨酸的合成:δ1-吡咯啉-5-羧酸酯合成酶(P5CS)和鸟氨酸-δ-氨基转移酶(OAT)。与以前的工作相反,脯氨酸脱氢酶(PDH)可以降解脯氨酸,在此期间也可以提高其活性。在这些条件下,脯氨酸的积累和PDH降解脯氨酸被认为是通过消除O 2 和形成H +离子而产生的抗逆性机制。这将限制活性氧(ROS)的任何主要形成,从而限制细胞坏死,从而降低生产率的损失。

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