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首页> 外文期刊>Sociedade Brasileira da Ciencia das Plantas Daninhas >The Role of Free Proline and Soluble Carbohydrates in Water Gypsum Stress on Some Gypsophyte and Gypsovag Plants
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The Role of Free Proline and Soluble Carbohydrates in Water Gypsum Stress on Some Gypsophyte and Gypsovag Plants

机译:自由脯氨酸和可溶性碳水化合物在水石膏胁迫下的作用,对一些石膏和石膏植物

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The aim of this study is to identify the roles of free proline and soluble carbohydrates in water gypsum stress. This study is the first such study on gypsophyte and gypsovag plants. For this purpose, free proline and soluble carbohydrate contents in gypsophyteand gypsovag plants have been analyzed. It is known that proline increases under stress conditions and it is a nitrogen-containing compound with protective properties contributing to durability understress. Soluble carbohydrates accumulating under stress conditions, on the other hand, take on the protective task of regulating cell osmotic density. In gypsophytes, free proline is proportionally high (Ch/Pr:1.5 to 9.3) and the amount of soluble carbohydrates is low. In gypsovag individuals growing on gypsum, proline is proportionally low (Ch/Pr:25.5 to 9.2), but soluble carbohydrates are high. It is found that in gypsovag individuals growing on mediums other than gypsum, the amount of proline increases (Ch/Pr:11.6 to 8.5), but the proportion of soluble carbohydrate decreases. Accordingly, while gypsophytes adapt themselves to high proline amounts in response to water gypsum stress and gypsovags develop resistance to water gypsum stress with high amounts of soluble carbohydrates, it is observed that the Ch/Pr ratio in non-gypsum soils decreases.
机译:本研究的目的是鉴定自由脯氨酸和可溶性碳水化合物在水石膏应激中的作用。本研究是第一次在石膏和GYPSOVAG植物进行此类研究。为此目的,已经分析了可自由的脯氨酸和可溶性碳水化合物含量在石膏型石膏植物中。众所周知,脯氨酸在胁迫条件下增加,并且是一种含氮化合物,具有有助于耐久性的保护性。另一方面,在应力条件下积聚的可溶性碳水化合物,采用调节细胞渗透密度的保护任务。在石膏状物质中,游离脯氨酸比例为高(CH / Pr:1.​​5至9.3),可溶性碳水化合物的量低。在Gypsovag中生长在石膏上的个体中,脯氨酸比例低(CH / Pr:25.5至9.2),但可溶的碳水化合物很高。发现,在Gypsovag中,在Gypsum以外的培养基上生长,脯氨酸的量增加(CH / Pr:11.6至8.5),但可溶性碳水化合物的比例降低。因此,在响应于水石膏应激和Gypsovags对水石膏应激和Gypsovags具有大量可溶性碳水化合物产生水石膏应激的影响,因此观察到非石膏土壤中的CH / Pr比率降低。

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