> Particle‐induced X‐ray emission was used to investigate mineral accumulation during different developmental stages of direct org'/> <fc xmlns='http://www.wiley.com/namespaces/wiley'>PIXE</fc>PIXE ‐based detection of elemental accumulation during direct organogenesis in <fi xmlns='http://www.wiley.com/namespaces/wiley'>Blepharispermum subsessile</fi>Blepharispermum subsessile <fc xmlns='http://www.wiley.com/namespaces/wiley'>DC</fc>DC .: An endangered medicinal plant of Odisha, India
首页> 外文期刊>X-Ray Spectrometry: An International Journal >PIXEPIXE ‐based detection of elemental accumulation during direct organogenesis in Blepharispermum subsessileBlepharispermum subsessile DCDC .: An endangered medicinal plant of Odisha, India
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PIXEPIXE ‐based detection of elemental accumulation during direct organogenesis in Blepharispermum subsessileBlepharispermum subsessile DCDC .: An endangered medicinal plant of Odisha, India

机译: Pixe Pexe在 blepharispermum亚宫 blepharispermum subsesler dc dc。:印度奥迪沙的濒危药用植物

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> Particle‐induced X‐ray emission was used to investigate mineral accumulation during different developmental stages of direct organogenesis from cotyledon explants of Blepharispermum subsessile beginning from shoot bud initiation and formation to in vitro regenerated roots. Mineral uptake and accumulation appeared selective and varied between different stages of shoot bud initiation and formation (Stage?1), proliferation of leafy shoots (Stage?2), and in vitro regenerated roots (Stage?3). The concentrations of 2 macro elements, K and Ca, were found in higher quantity during proliferation of shoot buds to leafy shoots stage suggesting their role in cell division, bud formation, and multiplication of the plant. Most of the micronutrients such as Mn, Fe, Ni, Cu, and Zn were found to be accumulated in higher quantities in in vitro regenerated roots, as they provide the plant with a larger surface area and hence a greater potential for mineral uptake. The results of particle‐induced X‐ray emission test suggest that the information on the accumulation of elements during developmental stages in vitro could be useful for formulating a media for the induction of high‐frequency regeneration of in this important endangered medicinal plant species for its ex situ conservation.
机译: >粒子诱导的X射线发射用于调查在胞苷的不同发育阶段的矿物积累期间 Blepharispermum植被的外植物从芽芽开始和形成在体外再生根部。矿物吸收和积累出现选择性,在不同阶段的芽芽开始和形成(阶段α1)之间的不同阶段,叶状芽(阶段2)和体外再生根(第3阶段?3)之间的不同阶段之间变化。 2种宏观元素,K和Ca的浓度在芽芽的芽阶段的增殖期间发现了较高的芽芽阶段,表明它们在细胞分裂,芽形成和植物繁殖中的作用。发现大多数微量营养素如Mn,Fe,Ni,Cu和Zn在体外再生根中累积,因为它们为植物提供了更大的表面积,因此为矿物吸收的潜力较大。粒子诱导的X射线排放试验结果表明,体外发育阶段内元素积累的信息可用于配制培养介质,用于诱导这一重要的濒危药用植物物种的高频再生前原位保护。

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