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首页> 外文期刊>Plant Biotechnology Journal >Overexpression of serine acetyltransferase in maize leaves increases seed?¢????specific methionine?¢????rich zeins
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Overexpression of serine acetyltransferase in maize leaves increases seed?¢????specific methionine?¢????rich zeins

机译:玉米叶片中丝氨酸乙酰基转移酶的过量表达增加了种子的蛋氨酸含量。

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Maize kernels do not contain enough of the essential sulphur?¢????amino acid methionine (Met) to serve as a complete diet for animals, even though maize has the genetic capacity to store Met in kernels. Prior studies indicated that the availability of the sulphur (S)?¢????amino acids may limit their incorporation into seed storage proteins. Serine acetyltransferase (SAT) is a key control point for S?¢????assimilation leading to Cys and Met biosynthesis, and SAT overexpression is known to enhance S?¢????assimilation without negative impact on plant growth. Therefore, we overexpressed Arabidopsis thaliana AtSAT1 in maize under control of the leaf bundle sheath cell?¢????specific rbcS1 promoter to determine the impact on seed storage protein expression. The transgenic events exhibited up to 12?¢????fold higher SAT activity without negative impact on growth. S?¢????assimilation was increased in the leaves of SAT overexpressing plants, followed by higher levels of storage protein mRNA and storage proteins, particularly the 10?¢????kDa ???′?¢????zein, during endosperm development. This zein is known to impact the level of Met stored in kernels. The elite event with the highest expression of AtSAT1 showed 1.40?¢????fold increase in kernel Met. When fed to chickens, transgenic AtSAT1 kernels significantly increased growth rate compared with the parent maize line. The result demonstrates the efficacy of increasing maize nutritional value by SAT overexpression without apparent yield loss. Maternal overexpression of SAT in vegetative tissues was necessary for high?¢????Met zein accumulation. Moreover, SAT overcomes the shortage of S?¢????amino acids that limits the expression and accumulation of high?¢????Met zeins during kernel development.
机译:尽管玉米具有将Met储存在玉米粒中的遗传能力,但玉米玉米粒中所含的必需硫基氨基酸蛋氨酸(Met)含量不足,无法作为动物的完整饲料。先前的研究表明,硫(S)3-氨基酸的可用性可能限制它们掺入种子贮藏蛋白中。丝氨酸乙酰转移酶(SAT)是导致Cys和Met生物合成的S ????同化的关键控制点,众所周知,SAT的过表达可以增强S ????同化,而对植物生长没有负面影响。因此,我们在叶束鞘细胞特异的rbcS1启动子的控制下在玉米中过表达拟南芥AtSAT1,以确定对种子贮藏蛋白表达的影响。转基因事件表现出高达12倍高的SAT活性,而对生长没有负面影响。 SAT过表达植物叶片中的Sα-β同化作用增加,随后是较高水平的贮藏蛋白mRNA和贮藏蛋白,尤其是10α-β-kDaβ-α-β-α。玉米醇溶蛋白,在胚乳发育过程中。已知这种玉米蛋白会影响内核中存储的Met含量。具有最高表达的AtSAT1的精英事件显示出内核Met增加了1.40倍。与亲本玉米品系相比,当以鸡为食时,转基因AtSAT1谷粒显着提高了生长速率。该结果证明了通过SAT过表达增加玉米营养价值而没有明显的产量损失的功效。母体营养组织中SAT的过表达对于高玉米醇溶蛋白的积累是必要的。此外,SAT克服了S 4-8氨基酸短缺的问题,后者限制了在玉米芯发育过程中高表达的玉米醇溶蛋白的表达和积累。

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