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首页> 外文期刊>The Plant Cell >Setaria viridis: A Model for C-4 Photosynthesis
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Setaria viridis: A Model for C-4 Photosynthesis

机译:狗尾草:C-4光合作用的模型

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摘要

C-4 photosynthesis drives productivity in several major food crops and bioenergy grasses, including maize (Zea mays), sugarcane (Saccharum officinarum), sorghum (Sorghum bicolor), Miscanthus x giganteus, and switchgrass (Panicum virgatum). Gains in productivity associated with C-4 photosynthesis include improved water and nitrogen use efficiencies. Thus, engineering C-4 traits into C-3 crops is an attractive target for crop improvement. However, the lack of a small, rapid cycling genetic model system to study C-4 photosynthesis has limited progress in dissecting the regulatory networks underlying the C-4 syndrome. Setaria viridis is a member of the Panicoideae clade and is a close relative of several major feed, fuel, and bioenergy grasses. It is a true diploid with a relatively small genome of similar to 510 Mb. Its short stature, simple growth requirements, and rapid life cycle will greatly facilitate genetic studies of the C-4 grasses. Importantly, S. viridis uses an NADP-malic enzyme subtype C-4 photosynthetic system to fix carbon and therefore is a potentially powerful model system for dissecting C-4 photosynthesis. Here, we summarize some of the recent advances that promise greatly to accelerate the use of S. viridis as a genetic system. These include our recent successful efforts at regenerating plants from seed callus, establishing a transient transformation system, and developing stable transformation.
机译:C-4光合作用提高了几种主要粮食作物和生物能源草的生产力,包括玉米(Zea mays),甘蔗(Saccharum officinarum),高粱(Sorghum bicolor),芒草x giganteus和柳枝,(Panicum virgatum)。与C-4光合作用相关的生产率提高包括提高的水和氮利用效率。因此,将C-4性状工程化为C-3作物是作物改良的诱人目标。但是,缺乏研究C-4光合作用的小型快速循环遗传模型系统,限制了剖析C-4综合症基础的调控网络的进展。 Setaria viridis是Panicoideae进化枝的成员,是几种主要饲料,燃料和生物能源草的近亲。它是真正的二倍体,具有相对较小的基因组,类似于510 Mb。它的矮小,简单的生长要求和快速的生命周期将极大地促进C-4草的遗传研究。重要的是,S。viridis使用NADP-苹果酸酶亚型C-4光合作用系统来固定碳,因此是剖析C-4光合作用的潜在强大模型系统。在这里,我们总结了最近的一些进展,这些进展有望极大地加快将绿色链球菌用作遗传系统的速度。这些包括我们最近在从种子愈伤组织再生植物,建立瞬时转化系统和发展稳定转化方面所做的成功努力。

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