藏红花(Crocus sativus L.)花被体外类伪胡萝卜素表达研究不同土壤下EC

Mandana Mirbakhsh, Zahra Zahed, S. Mashayekhi, Monire Jafari
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引用次数: 3

摘要

藏红花是鸢尾科鳄鱼亚科三倍体不育植物,柱头呈红色。藏红花素、微番红花素和番红花素是三种主要的类胡萝卜素衍生物,它们决定了藏红花的颜色、味道和特定的香气。藏红花是人工采摘的,用作香料、染料或药用。包括藏红花在内的大多数地植物的自然繁殖率相对较低。红花的体外繁殖技术已被应用于红花的微繁繁殖。为了解这一选择的有效性,研究类伪胡萝卜素生物合成/积累的分子基础,采用RT-PCR方法对MS培养基培养的花被外植体进行了柱头发育过程中玉米黄质裂解双加氧酶(CsZCD)基因的表达水平以及土壤EC对其表达的影响。本研究于2011-2013年在伊朗德黑兰Alzahra大学植物分子与生理实验室进行。从Ghaen市采集的球茎花蕾未成熟花被外植体中收集愈伤组织上的柱头状结构(SLSs),并与(torbate - Haidariye、Mardabad和shahoud市)进行比较,研究不同土壤EC对CsZCD表达的影响。结果表明,CsZCD基因在盐度最高的沙棘培养样品花被中发育完全的红色sls中高度表达。本研究探讨了土壤EC与第二代谢物调控的密切关系。总的来说,这些结果将为了解麻柱头发育的分子基础以及麻柱头发育的其他方面铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of In Vitro Apocarotenoid Expression in Perianth of Saffron (Crocus sativus L.) Under Different Soil EC
Crocus sativus is a triploid sterile plant with red stigmas belonging to family of Iridaceae, and sub family Crocoideae. Crocin, picrocrocin, and safranal are three major carotenoid derivatives that are responsible for color, taste and specific aroma of Crocus. Saffron flowers are harvested manually and used as spice, dye or medicinal applications. The natural propagation rate of most geophytes including saffron is relatively low. An in vitro multiplication technique like micropropagation has been used for the propagation of saffron. To understand the efficiency of this alternative and study the molecular basis of apocarotenoid biosynthesis/accumulation, the RT-PCR method was performed on perianth explants that were cultured on MS medium to observe the level of expression of zeaxanthin cleavage dioxygenase (CsZCD) gene during stigma development, and also the impact of soil EC on its expression. The present study was conducted at Plant molecular and physiology Lab, Alzahra University, Tehran, Iran during 2011-2013. Stigma-like structures (SLSs) on calli were collected from immature perianth explants from floral buds of corms that were collected from Ghaen city, and compared to (Torbat-e Haidariye, Mardabad and Shahroud cities) for investigating the impact of different soil EC on CsZCD expression. The results indicated that CsZCD gene was highly expressed in fully developed red SLSs in perianth of cultured samples of Shahroud with the highest salinity. In this research, a close relationship between soil EC and second metabolites regulation is studied. Overall, these results will pave the way for understanding the molecular basis of apocarotenoid biosynthesis and other aspects of stigma development in C. sativus.
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