首页> 外文期刊>Acta Physiologiae Plantarum >Light effect on carotenoids production and expression of carotenogenesis genes in citrus callus of four genotypes
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Light effect on carotenoids production and expression of carotenogenesis genes in citrus callus of four genotypes

机译:轻度影响四种基因型柑橘愈伤组织中类胡萝卜素的产生和类胡萝卜素生成基因的表达

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Due to their theoretically identical genetic background, citrus callus and other plant tissues may share some mechanisms in the regulation of carotenogenesis. Thus, in order to gain further information on light regulation of carotenoids biosynthesis in citrus, the carotenoids and expression profiles of carotenogenesis in calluses of four citrus genotypes treated with light or dark were investigated. As a response to white light, results showed that carotenoids biosynthesis in callus of Red Marsh grapefruit (Citrus paradisi Macf.) was hampered, whereas callus of Tarocco blood orange (C. sinensis (L.) Osbeck) was sensitive to light by accumulating over 55% more carotenoids on average. Among the detected carotenoids, the biosynthesis of carotenes seemed to be more sensitive than that of xanthophylls. Expression profiles of eight carotenogenesis genes encoding phytoene synthase (PSY), phytoene desaturase (PDS), ζ-carotene desaturase (ZDS), carotenoids isomerase (CRTISO) etc. were investigated. Results revealed that PSY was up regulated in calluses of two sweet oranges, and down regulated in callus of Murcott tangor (C. reticulata × C. sinensis). Biochemical data in the three genotypes emphasized the PSY as a rate-limiting gene in the carotenogenesis. However, in the callus of Red Marsh grapefruit, PDS and ZDS might be the rate-limiting genes, and their transcripts were apparently inhibited by light, led to significant decreases in contents of β-carotene and total carotenoids irrelevant to transcription levels of PSY. Expression of CRTISO was light-induced, especially in the callus of Murcott tangor, and increased by nearly 12-fold. In conclusion, light regulates the expression of several carotenogenesis genes in citrus callus, but may not necessarily result in significant changes in carotenoids production.
机译:由于其理论上相同的遗传背景,柑橘愈伤组织和其他植物组织可能在调节类胡萝卜素生成方面共享某些机制。因此,为了获得有关柑橘中类胡萝卜素生物合成的光调节的进一步信息,研究了四种用浅色或深色处理的柑橘基因型老茧中的类胡萝卜素和类胡萝卜素的表达谱。作为对白光的响应,结果表明,红色沼泽葡萄柚(Citrus paradisi Macf。)的愈伤组织中类胡萝卜素的生物合成受到阻碍,而塔罗科血橙(C. sinensis(L.)Osbeck)的愈伤组织通过累积过量而对光敏感。类胡萝卜素平均增加55%。在检测到的类胡萝卜素中,胡萝卜素的生物合成似乎比叶黄素更敏感。研究了八种类胡萝卜素生成基因的表达谱,这些基因编码八氢番茄红素合酶(PSY),八氢番茄红素去饱和酶(PDS),ζ-胡萝卜素脱氢酶(ZDS),类胡萝卜素异构酶(CRTISO)等。结果显示,PSY在两个甜橙的愈伤组织中上调,而在Murcott tangor(C。reticulata×C. sinensis)的愈伤组织中下调。三种基因型的生化数据都强调PSY是类胡萝卜素生成中的限速基因。然而,在Red Marsh葡萄柚的愈伤组织中,PDS和ZDS可能是限速基因,它们的转录物显然受到光的抑制,导致β-胡萝卜素和总类胡萝卜素的含量显着降低,与PSY的转录水平无关。 CRTISO的表达是光诱导的,尤其是在Murcott tangor的愈伤组织中,并增加了近12倍。总之,光调节柑橘愈伤组织中几个类胡萝卜素生成基因的表达,但未必会导致类胡萝卜素产量的显着变化。

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