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Re-creation of a Key Step in the Evolutionary Switch from C-3 to C-4 Leaf Anatomy

机译:从C-3到C-4叶解剖学的进化开关中重新创建一个关键步骤

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The C-4 photosynthetic pathway accounts for similar to 25% of primary productivity on the planet despite being used by only 3% of species. Because C-4 plants are higher yielding than C-3 plants, efforts are under-way to introduce the C-4 pathway into the C-3 crop rice. This is an ambitious endeavor; however, the C-4 pathway evolved from C-3 on multiple independent occasions over the last 30 million years, and steps along the trajectory are evident in extant species. One approach toward engineering C-4 rice is to recapitulate this trajectory, one of the first steps of which was a change in leaf anatomy. The transition from C-3 to so-called "proto-Kranz'' anatomy requires an increase in organelle volume in sheath cells surrounding leaf veins. Here we induced chloroplast and mitochondrial development in rice vascular sheath cells through constitutive expression of maize GOLDEN2-LIKE genes. Increased organelle volume was accompanied by the accumulation of photosynthetic enzymes and by increased intercellular connections. This suite of traits reflects that seen in "proto-Kranz'' species, and, as such, a key step toward engineering C-4 rice has been achieved.
机译:尽管仅3%的物种使用,C-4光合途径占地球上初级生产率的25%。因为C-4植物的产量高于C-3植物,所以努力将C-4途径引入C-3作物水稻。这是一个雄心勃勃的努力;然而,在过去3000万年的多个独立场合,C-4途径从C-3演变,并且沿着轨迹的步骤在现存的物种中是显而易见的。工程C-4米的一种方法是重新承载这种轨迹,其中第一步之一是叶解剖学的变化。从C-3到所谓的“proto-kranz”解剖学的转变需要增加叶静脉的鞘细胞中细胞器体积。在这里,我们通过玉米Golden2的组成型表达诱导水稻血管鞘细胞中的叶绿体和线粒体发育基因。增加的细胞石体积伴随着光合酶的积累以及增加的细胞间连接。这套特征反映了“Proto-Kranz”物种中看到的,因此,迈向工程C-4米的关键步骤已经实现了。

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