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在 Cd 胁迫条件下,芦苇通过代谢适应在其茎中积累淀粉。

Common reed accumulates starch in its stem by metabolic adaptation under Cd stress conditions.

机构信息

Department of Applied Biology and Chemistry, Tokyo University of Agriculture Setagaya-ku, Japan.

Department of Biological Production, Akita Prefectural University Akita City, Japan.

出版信息

Front Plant Sci. 2015 Mar 10;6:138. doi: 10.3389/fpls.2015.00138. eCollection 2015.

Abstract

In a previous study, we reported that the common reed accumulates water-soluble Cd complexed with an α-glucan-like molecule, and that the synthesis of this molecule is induced in the stem of the common reed under Cd stress. We studied the metabolic background to ensure α-glucan accumulation under the Cd stress conditions that generally inhibit photosynthesis. We found that the common reed maintained an adequate CO2 assimilation rate, tended to allocate more assimilated (11)C to the stem, and accumulated starch granules in its stem under Cd stress conditions. AGPase activity, which is the rate-limiting enzyme for starch synthesis, increased in the stem of common reed grown in the presence of Cd. Starch accumulation in the stem of common reed was not obvious under other excess metal conditions. Common reed may preferentially allocate assimilated carbon as the carbon source for the formation of Cd and α-glucan complexes in its stem followed by prevention of Cd transfer to leaves acting as the photosynthetic organ. These responses may allow the common reed to grow even under severe Cd stress conditions.

摘要

在之前的一项研究中,我们报告说,芦苇积累了与α-葡聚糖样分子结合的水溶性 Cd,并且这种分子的合成是在 Cd 胁迫下芦苇的茎中诱导的。我们研究了代谢背景,以确保在通常抑制光合作用的 Cd 胁迫条件下α-葡聚糖的积累。我们发现,在 Cd 胁迫条件下,芦苇能够维持足够的 CO2 同化率,倾向于将更多的同化(11)C分配到茎中,并在茎中积累淀粉粒。AGPase 活性是淀粉合成的限速酶,在 Cd 存在下生长的芦苇的茎中增加。在其他过量金属条件下,芦苇茎中的淀粉积累并不明显。芦苇可能优先将同化的碳作为其茎中 Cd 和α-葡聚糖复合物形成的碳源进行分配,然后防止 Cd 转移到作为光合作用器官的叶片中。这些反应可能使芦苇即使在严重的 Cd 胁迫条件下也能生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f36/4354308/d66dc89ae1c9/fpls-06-00138-g0001.jpg

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