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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Differential distribution of ascorbic acid, peroxidase activity, and hydrogen peroxide along the root axis in Allium cepa L. and its possible relationship with cell growth and differentiation
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Differential distribution of ascorbic acid, peroxidase activity, and hydrogen peroxide along the root axis in Allium cepa L. and its possible relationship with cell growth and differentiation

机译:洋葱中抗坏血酸,过氧化物酶活性和过氧化氢沿根轴的差异分布及其与细胞生长和分化的可能关系

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摘要

In this paper we show an asymmetrical distribution of apoplastic and symplastic ascorbic acid content, peroxidase activities and hydrogen peroxide along the root axis in Allium cepa L. For most of these metabolites, a marked gradient from the root apex to the onion base was observed and was different for apoplastic and symplastic compartments. In total homogenates, ascorbic acid content was higher in the zones closer to the apex and decreased towards the root base. However, an opposite pattern was observed in the apoplastic fraction. Peroxidase activities with guaiacol, ferulic acid, ascorbic acid, and coniferyl alcohol were also different depending on the evaluated zone and the fraction used (apoplastic or symplastic). In general. each activity had a specific and unique pattern. Immunodetection of peroxidase proteins in Western blots using anti-horseradish peroxidase and anti-ascorbate peroxidase antibodies revealed different bands at the different zones of the root. Hydrogen peroxide was detected by electron microscopy and was Mainly found in cell walls of epidermis (or rhizodermis), meristem, and elongating cells. The number of cell walls showing hydrogen peroxide decreased dramatically towards the root base. The results suggest that the different zones of the root show specific requirements for ascorbic acid and hydrogen peroxide. Also, each fragment of the root seems to express specific peroxidase proteins. Different processes that take place at every part of the root, as cell proliferation and elongation near the root apex and gradual lignification and differentiation towards the root base are the key to explain the results. [References: 42]
机译:在本文中,我们显示了洋葱Cepa L沿根轴的质外和共生抗坏血酸含量,过氧化物酶活性和过氧化氢的不对称分布。对于大多数这些代谢物,观察到从根尖到洋葱根的明显梯度,并且质外体和共生区室不同。在全部匀浆中,抗坏血酸含量在靠近先端的区域较高,而向根基减少。然而,在质外体部分观察到相反的模式。愈创木酚,阿魏酸,抗坏血酸和松柏醇的过氧化物酶活性也有所不同,这取决于所评估的区域和所用部分(质外生或共生)。一般来说。每个活动都有特定且独特的模式。使用抗辣根过氧化物酶和抗坏血酸过氧化物酶抗体在Western印迹中对过氧化物酶蛋白进行免疫检测,发现在根的不同区域存在不同的条带。过氧化氢通过电子显微镜检测,主要存在于表皮(或根状茎),分生组织和伸长细胞的细胞壁中。显示过氧化氢的细胞壁数量朝着根基急剧减少。结果表明,根的不同区域显示出对抗坏血酸和过氧化氢的特殊要求。同样,根的每个片段似乎都表达特定的过氧化物酶蛋白。根的每个部分都发生不同的过程,如根尖附近的细胞增殖和伸长以及逐渐向根基方向木质化和分化是解释结果的关键。 [参考:42]

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