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大麦糊粉层中α-淀粉酶 mRNA 积累的调节。

Regulation of the accumulation of mRNA for alpha-amylase in barley aleurone.

机构信息

Department of Botany, University of California, Berkeley, California 94720.

出版信息

Plant Physiol. 1986 Mar;80(3):672-5. doi: 10.1104/pp.80.3.672.

Abstract

The effect of gibberellic acid and Ca(2+) on the accumulation of alpha-amylase mRNAs in aleurone layers of barley (Hordeum vulgare L. cv Himalaya) was studied using cDNA clones containing sequences of mRNAs for the high and low isoelectric point (pI) alpha-amylases. There is no significant hybridization between the two alpha-amylase cDNA clones under the hybridization and washing conditions employed. These clones were therefore used to monitor levels of mRNAs for high and low pI alpha-amylases. It is shown that although the synthesis of the high pI alpha-amylase proteins depends on the presence of Ca(2+) in the incubation medium, the accumulation of mRNA for this group occurs to the same degree in the presence or the absence of Ca(2+). The accumulation of low pI alpha-amylase mRNA is also not affected by the presence or absence of Ca(2+) in the incubation medium. These results establish gibberellic acid, not Ca(2+), as the principal regulator of alpha-amylase mRNA accumulation in barley aleurone, while Ca(2+) controls high pI alpha-amylase synthesis at a later step in the biosynthetic pathway.

摘要

使用包含高和低等电点(pI)α-淀粉酶 mRNA 序列的 cDNA 克隆,研究了赤霉素和 Ca(2+)对大麦(Hordeum vulgare L. cv Himalaya)糊粉层中α-淀粉酶 mRNAs 积累的影响。在采用的杂交和洗涤条件下,这两种α-淀粉酶 cDNA 克隆之间没有明显的杂交。因此,这些克隆被用来监测高和低 pI α-淀粉酶的 mRNA 水平。结果表明,尽管高 pI α-淀粉酶蛋白的合成依赖于孵育培养基中 Ca(2+)的存在,但在存在或不存在 Ca(2+)的情况下,该组 mRNA 的积累程度相同。低 pI α-淀粉酶 mRNA 的积累也不受孵育培养基中 Ca(2+)的存在或不存在的影响。这些结果表明,赤霉素而不是 Ca(2+)是大麦糊粉层中α-淀粉酶 mRNA 积累的主要调节剂,而 Ca(2+)在生物合成途径的后期控制高 pI α-淀粉酶的合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2333/1075181/b44c7e31164c/plntphys00598-0071-a.jpg

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