一些埃及十字花科特有种的系统发育验证

Shaimaa Abd Elhady, A. Sharaf, A. Salam, Khaled Abd El Atey, A. A. Shady
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引用次数: 0

摘要

人类活动引起的全球变暖是干旱半干旱地区生物多样性面临的一个重要威胁。埃及预计将在未来几十年经历急剧的降雨量减少和温度升高,导致许多植物物种的地理分配。具有多种经济价值的地方植物受到气候变化前景的强烈影响,将逐渐导致我国丰富的植物遗传资源的丧失。由于对埃及十字花科的研究很少,由于在药物和化妆品成分中包含许多活性化合物(例如硫代葡萄糖苷),除了含有大量抗氧化剂外,还具有经济和医学上的重要性,这些化合物还具有抑制微生物生长和治疗风湿性疾病的作用。对这一科的鉴定仍有一定的疑点,研究人员主要依靠形态学特征进行鉴定。为了在全球范围内维持这种埃及植物家族财富的遗传模式,根据其经过认证的遗传背景对它们进行表征是非常重要的。本文利用两个质体编码基因对16种埃及芸苔科植物进行了系统发育分析;核酮糖-1,5二磷酸羧化酶加氧酶(rbcL-a)和成熟酶K (matK)。这两个标记的最大似然度与芸苔科参考序列一致,存在于质体上,被认为是高度保守的生物标记。总之,我们已经生成了一个基于分子水平的健壮的系统发育树,该树验证了埃及植物物种,并在形态鉴定上可靠地区分了它们。本研究被认为是埃及芸苔科物种鉴定的第一阶段,随后是为药理学和医学领域服务的生化研究。
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Phylogeny Validation for Some Egyptian Brassicaceae Endemic Species
A crucial menace for the biodiversity in arid and semi-arid territories is the global warming arising from anthropogenic activity. Egypt is expected to undergo an acute rainfall decrease and temperature boost in the next few decades, leading to many plant species' geographical allocation. Endemic plants of pleiotropic economic importance are strongly affected by climate change prospects, which will gradually result in losing our plant wealth genetic resources. Due to few studies on the Egyptian Brassicaceae family which has an economically and medicinally importance due to the presence of many active compounds that are included, in the pharmaceutical and cosmetic components (e.g., glucosinolates) besides having a large amount of antioxidant which inhibit the growth of microbes and also treat rheumatic diseases. The identification of this family still kind of fishy as researchers mostly relies on the morphological characters. To globally sustain this Egyptian plant family wealth's genetic pattern, it is substantial to characterize them based on their authenticated genetic background. Here we present a phylogenetic analysis of 16 species of the Egyptian Brassicaceae family using two plastid coding genes; Ribulose-1,5bisphosphate carboxylase oxygenase (rbcL-a) and maturase K (matK). The maximum likelihood of the two markers for our samples was concordant with the Brassicaceae's references-sequences, which exist on plastid are considered highly conserved biomarkers. In conclusion, we have generated a robust phylogeny tree based on the molecular level that validates the Egyptian plant species and reliably differentiates them on morphological identification. This study is considered the first phase of Egyptian Brassicaceae family species authentication followed by biochemical studies serving the pharmacological and medicinal fields.
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