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ENGINEERING CRASSULACEAN ACID METABOLISM (CAM) PATHWAYS IN PLANTS

机译:植物的工程硫酸代谢途径(CAM)

摘要

Disclosed herein are method of altering CAM pathways in plants. In some examples, a disclosed method includes overexpressing one or more genes encoding one or more enzymes that carry out the basic biochemical sequence of nocturnal CO2 fixation (carboxylation) into C4 acids (malate), store C4 acids in the vacuole of the plant, and/or then decarboxylate and refix the released CO2 by C3 photosynthesis during the subsequent day in a plant cell, thereby altering CAM in the plant cell. Also disclosed herein are isolated polynucleotide sequences, transformation vectors, transgenic plant cells, plant part, and plants. The disclosed methods and compositions can be used to improve the water-use efficiency and drought tolerance and durability of plants, such as in plants in arid environments, and also enhance the ability of plants to perform.
机译:本文公开了改变植物中CAM途径的方法。在一些实例中,公开的方法包括将编码一种或多种将夜间CO 2 固定(羧化)的基本生化序列的酶的一种或多种酶过表达至C 4 酸(苹果酸),将C 4 酸储存在植物的液泡中,和/或然后通过C 3 2 第二天在植物细胞中进行光合作用,从而改变植物细胞中的CAM。本文还公开了分离的多核苷酸序列,转化载体,转基因植物细胞,植物部分和植物。所公开的方法和组合物可以用于改善植物的水分利用效率,干旱耐受性和耐久性,例如在干旱环境中的植物中,并且还可以增强植物的生长能力。

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