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首页> 外文期刊>Russian Journal of Plant Physiology >Sucrose utilization via invertase and sucrose synthase with respect to accumulation of cellulose and callose synthesis in wheat roots under oxygen deficiency
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Sucrose utilization via invertase and sucrose synthase with respect to accumulation of cellulose and callose synthesis in wheat roots under oxygen deficiency

机译:缺氧条件下通过转化酶和蔗糖合酶对小麦根中纤维素积累和call质合成的蔗糖利用

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摘要

The sucrose cleavage by sucrose synthase (SuSy) and neutral invertase was studied in wheat roots (Triticum aestivum L.) subjected to hypoxia or anoxia for 4 days. By in situ activity staining, increased SuSy activity was observed in the tip region and stele of root axes while the activity of invertase decreased. Cellulose content significantly increased in hypoxically treated roots. The cellulose deposition was correlated with regions of high SuSy activity, being mainly located in the pericycle and endodermis. Invertase activity was distributed along the root without clear difference between cortex and stele. Under root bypoxia, a significant increase in the structural carbohydrates, callose and especially cellulose, was shown. Increasing levels of soluble carbohydrates were partially used to synthesize cellulose for secondary wall thickening and callose to counteract the tissue injury following low-oxygen stress. Under strict anoxia, the roots were much more injured but sustained a high level of cellulose and callose while the soluble carbohydrates almost disappeared.
机译:在缺氧或缺氧4天的小麦根(Triticum aestivum L.)中研究了蔗糖合酶(SuSy)和中性转化酶对蔗糖的裂解作用。通过原位活性染色,在根轴的尖端区域和石碑中观察到了SuSy活性的增加,而转化酶的活性却降低了。缺氧处理过的根中纤维素含量明显增加。纤维素沉积与高SuSy活性区域相关,主要位于周周和内胚层。转化酶活性沿根部分布,而皮层和石碑之间没有明显差异。在根部缺氧下,显示出结构性碳水化合物,call质,尤其是纤维素的显着增加。可溶性碳水化合物水平的提高被部分用于合成纤维素,从而使壁增厚,并and以抵消低氧胁迫后的组织损伤。在严格的缺氧条件下,根受到的伤害更大,但纤维素和call的含量却很高,而可溶性碳水化合物几乎消失了。

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