首页> 美国卫生研究院文献>The Plant Cell >Formation and Deposition of Amylose in the Potato Tuber Starch Granule Are Affected by the Reduction of Granule-Bound Starch Synthase Gene Expression.
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Formation and Deposition of Amylose in the Potato Tuber Starch Granule Are Affected by the Reduction of Granule-Bound Starch Synthase Gene Expression.

机译:马铃薯块茎淀粉颗粒中直链淀粉的形成和沉积受到颗粒结合淀粉合酶基因表达的降低的影响。

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摘要

The synthesis of amylose in amyloplasts is catalyzed by granule-bound starch synthase (GBSS). GBSS gene expression was inhibited via antisense RNA in Agrobacterium rhizogenes-transformed potato plants. Analysis of starch production and starch granule composition in transgenic tubers revealed that reduction of GBSS activity always resulted in a reduction of the production of amylose. Field experiments, performed over a 2-year period, showed that stable inhibition of GBSS gene expression can be obtained. Microscopic evaluation of iodine-stained starch granules was shown to be a sensitive system for qualitative and quantitative examination of amylose formation in starch granules of transgenic potato tubers. In plants showing inhibition of GBSS gene expression, the reduced amylose content in tuber starch was not a consequence of a lower amylose content throughout the entire starch granule. Starch granules of transgenic tubers were found to contain amylose at a percentage similar to wild-type starch in a core of varying size at the hilum of each granule. This indicated that reduced GBSS gene expression results in amylose formation in a restricted zone of the granules. The size of this zone is suggested to be dependent on the GBSS protein level. During development of the granules, the available GBSS protein is thought to become limiting, resulting in the formation of starch that lacks amylose. RNA gel blot analysis of tuber tissue showed that inhibition of GBSS gene expression resulted in a reduced GBSS mRNA level but did not affect the expression level of other starch synthesizing enzymes. Antisense RNA could only be detected in leaf tissue of the transgenic plants.
机译:淀粉结合淀粉合成酶(GBSS)催化淀粉质中直链淀粉的合成。在发根农杆菌转化的马铃薯植株中,GBSS基因表达被反义RNA抑制。对转基因块茎中淀粉产量和淀粉颗粒组成的分析表明,GBSS活性的降低总是导致直链淀粉产量的降低。历时2年的现场实验表明,可以稳定地抑制GBSS基因的表达。碘染色淀粉颗粒的显微镜评估显示是定性和定量检查转基因马铃薯块茎淀粉颗粒中直链淀粉形成的灵敏系统。在显示出对GBSS基因表达有抑制作用的植物中,块茎淀粉中直链淀粉含量降低并不是整个淀粉颗粒中直链淀粉含量降低的结果。发现转基因块茎的淀粉颗粒含有直链淀粉的百分率与野生型淀粉相似,直链淀粉在每个颗粒的肺门处的大小各异。这表明减少的GBSS基因表达导致在颗粒的限制区内形成直链淀粉。建议该区域的大小取决于GBSS蛋白水平。在颗粒的发育过程中,可用的GBSS蛋白被认为是限制性的,导致形成缺乏直链淀粉的淀粉。块茎组织的RNA凝胶印迹分析表明,抑制GBSS基因表达可导致GBSS mRNA水平降低,但不影响其他淀粉合成酶的表达水平。反义RNA只能在转基因植物的叶片组织中检测到。

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