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Co-Expression of Soybean Glycinins A1aB1b and A3B4 Enhances Their Accumulation Levels in Transgenic Rice Seed

机译:大豆大豆球蛋白A1aB1b和A3B4的共表达提高了其在转基因水稻种子中的积累水平

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摘要

The soybean major storage protein glycinin is encoded by five genes, which are divided into two subfamilies. Expression of A3B4 glycinin in transgenic rice seed reached about 1.5% of total seed protein, even if expressed under the control of strong endosperm-specific promoters. In contrast, expression of A1aB1b glycinin reached about 4% of total seed protein. Co-expression of the two proteins doubled accumulation levels of both A1aB1b and A3B4 glycinins. This increase can be largely accounted for by their aggregation with rice glutelins, self-assembly and inter-glycinin interactions, resulting in the enrichment of globulin and glutelin fractions and a concomitant reduction of the prolamin fraction. Immunoelectron microscopy indicated that the synthesized A1aB1b glycinin was predominantly deposited in protein body-II (PB-II) storage vacuoles, whereas A3B4 glycinin is targeted to both PB-II and endoplasmic reticulum (ER)-derived protein body-I (PB-I) storage structures. Co-expression with A1aB1b facilitated targeting of A3B4 glycinin into PB-II by sequestration with A1aB1b, resulting in an increase in the accumulation of A3B4 glycinin.
机译:大豆主要贮藏蛋白大豆球蛋白由五个基因编码,分为两个亚家族。即使在强胚乳特异性启动子的控制下表达,A3B4大豆球蛋白在转基因水稻种子中的表达也达到种子蛋白总量的1.5%。相反,A1aB1b大豆球蛋白的表达达到种子蛋白总量的4%。两种蛋白质的共表达使A1aB1b和A3B4大豆球蛋白的积累水平加倍。这种增加在很大程度上可以归因于它们与水稻谷蛋白的聚集,自组装和大豆球蛋白之间的相互作用,从而导致球蛋白和谷蛋白组分的富集以及谷醇溶蛋白组分的减少。免疫电子显微镜检查表明,合成的A1aB1b大豆球蛋白主要沉积在蛋白质体II(PB-II)储存液泡中,而A3B4大豆球蛋白同时靶向PB-II和内质网(ER)衍生的蛋白质体I(PB-I )存储结构。通过与A1aB1b螯合,与A1aB1b共表达有助于将A3B4大豆球蛋白靶向到PB-II中,从而导致A3B4大豆球蛋白的积累增加。

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