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Comparative analysis of cp genome of Fagonia indica growing in desert and its implications in pattern of similarity and variations

机译:对沙漠中CP基因组CP基因组的比较分析及其在相似性和变化模式中的影响

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The chloroplasts genome encodes several key proteins that involves in the process of the photosynthesis and also in other metabolic processes important for growth and development, yield, biomass, and plant interactions with their environment. The present study aimed to sequencing of cp genome of Fagonia indica Burm.f (Zygophyllaceae), -a plant that occurs even in the hot desert condition of the inner zone of Rub′ al-Khali (the Empty Quarter) of south-central Arabia, and its comparative analyses with the representative of the sequence of the different categories [viz. (a) with the other member of the family Zygophyllaceae, and with the representatives from: (b) different clade of the angiosperms, (c) flowering plants occurs in different major habitats, (d) different groups of plants, (e) different group of plants having range of biomass, (f) C3 and C4 plants, and (g) the representative from very common, rare and major high yielding crop of the world] to unravel the genetic pattern of similarity and variations. The comparison of F. indica genome in different categories showed strong evidence and further support for the conservative pattern of chloroplast genome, the coding and non-coding region remains conserved even in phylogenetically distant eukaryotic clades, and might not have the sole roles in organism′s yield, rarity or abundance and biomass, and in encountering the stress. Nevertheless, the result could be useful for molecular phylogenetic and molecular ecological and molecular mechanism of photosynthesis.
机译:叶绿体基因组编码若干关键蛋白质,涉及光合作用的过程,以及在其他代谢过程中对于生长和发育,产量,生物量和植物与其环境的相互作用很重要。本研究旨在测序小葡萄蛋白毛毛板的CP基因组(Zygophyllaceae), - 即使在阿拉伯南省中部摩擦内部的炎热沙漠条件下也发生的植物其比较分析不同类别的序列的代表[viz。 (a)与家庭Zygophyllaceae的其他成员,并与代表:(b)不同的Angiosperms疏浚植物,(c)开花植物发生在不同的主要栖息地,(d)不同的植物组,(e)不同具有生物量,(F)C3和C4植物系列的植物组,以及(G)来自世界的非常常见,罕见和主要的高产作物的代表]解开相似性和变化的遗传模式。在不同类别中的F.Pinka基因组的比较显示出强大的证据,并进一步支持叶绿体基因组的保守模式,即使在系统源性遥远的真核生物切割中,编码和非编码区仍然是保守的,并且可能在生物体中没有唯一的作用S产量,稀有度或丰度和生物量,以及遇到压力。然而,结果可用于分子系统发育和光合作用的分子生态学和分子机制。

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