首页> 外文期刊>Acta Horticulturae >Analysis of growth physiology and phytochemical content of Eruca and Diplotaxis cultivars under different light and temperature regimes.
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Analysis of growth physiology and phytochemical content of Eruca and Diplotaxis cultivars under different light and temperature regimes.

机译:不同光照和温度条件下Eruca和Diplotaxis品种的生长生理和植物化学成分分析。

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摘要

Rocket is a leafy brassicaceous salad crop that encompasses two major genera ( Diplotaxis and Eruca) and many different cultivars. Rocket is a rich source of antioxidants and glucosinolates, many of which are produced as secondary products by the plant in response to stress. In this paper we examined the impact of temperature and light stress on several different cultivars of wild and salad rocket. Growth habit of the plants varied in response to stress and with different genotypes, reflecting the wide geographical distribution of the plant and the different environments to which the genera have naturally adapted. Preharvest environmental stress and genotype also had an impact on how well the cultivar was able to resist postharvest senescence, indicating that breeding or selection of senescence-resistant genotypes will be possible in the future. The abundance of key phytonutrients such as carotenoids and glucosinolates are also under genetic control. As genetic resources improve for rocket it will therefore be possible to develop a molecular breeding programme specifically targeted at improving stress resistance and nutritional levels of plant secondary products. Concomitantly, it has been shown in this paper that controlled levels of abiotic stress can potentially improve the levels of chlorophyll, carotenoids and antioxidant activity in this leafy vegetable. CT III International Symposium on Human Health Effects of Fruits and Vegetables - FAVHEALTH 2009, Avignon, France.
机译:火箭是一种叶状的黄铜科沙拉作物,涵盖两个主要属(Diplotaxis和Eruca)和许多不同的品种。火箭富含抗氧化剂和芥子油苷,其中许多是植物在逆境中产生的副产品。在本文中,我们研究了温度和光照对野生和色拉火箭几种不同品种的影响。植物的生长习性根据胁迫和不同的基因型而变化,反映出植物的广泛地理分布和属自然适应的不同环境。收获前的环境压力和基因型也对品种抗拒收获后衰老的能力产生影响,这表明将来可能会育种或选择抗衰老的基因型。丰富的关键植物营养素,如类胡萝卜素和芥子油苷也处于遗传控制之下。随着火箭的遗传资源的改善,因此有可能制定专门针对提高植物次级产品的抗逆性和营养水平的分子育种计划。同时,本文表明,控制非生物胁迫的水平可以潜在地改善这种多叶蔬菜中的叶绿素,类胡萝卜素和抗氧化活性。 CT III水果和蔬菜对人类健康的影响国际研讨会-FAVHEALTH 2009,法国阿维尼翁。

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