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首页> 外文期刊>Plant Physiology and Biochemistry >The involvement of expansins in responses to phosphorus availability in wheat, and its potentials in improving phosphorus efficiency of plants
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The involvement of expansins in responses to phosphorus availability in wheat, and its potentials in improving phosphorus efficiency of plants

机译:弹性蛋白参与小麦对磷素有效性的反应及其在提高植物磷素利用率方面的潜力

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Phosphorus (P) is a critical macronutrient required for numerous functions in plants and is one of the limiting factors for plant growth. Phosphate availability has a strong effect on root system architecture. Expansins are encoded by a superfamily of genes that are organized into four families, and growing evidence has demonstrated that expansins are involved in almost all aspects of plant development, especially root development. In the current study, we demonstrate that expansins may be involved in increasing phosphorus availability by regulating the growth and development of plant roots. Multiple expansins (five a- and nine b-expansin genes) were up- or down-regulated in response to phosphorus and showed different expression patterns in wheat. Meanwhile, the expression level of TaEXPB23 was upregulated at excess-P condition, suggesting the involvement of TaEXPB23 in phosphorus adaptability. Overexpression of the TaEXPB23 resulted in improved phenotypes, particularly improved root system architecture, as indicated by the increased number of lateral roots in transgenic tobacco plants under excess-P and low-P conditions. Thus, these transgenic plants maintained better photosynthetic gas exchange ability than the control under both P-sufficient and P-deficient conditions.
机译:磷(P)是植物多种功能所必需的重要常量营养素,并且是植物生长的限制因素之一。磷酸盐的可用性对根系统体系结构有很大影响。扩展蛋白由组织成四个家族的基因超家族编码,并且越来越多的证据表明,扩展蛋白几乎参与植物发育的所有方面,尤其是根的发育。在当前的研究中,我们证明了扩展酶可能通过调节植物根系的生长和发育而参与增加磷的利用率。响应于磷,多种弹性蛋白(5个a-和9个b-弹性蛋白基因)被上调或下调,并在小麦中表现出不同的表达方式。同时,在过量P条件下TaEXPB23的表达水平上调,表明TaEXPB23参与了磷的适应性。 TaEXPB23的过表达导致表型的改善,特别是根系体系的改善,这在过量磷和低磷条件下转基因烟草植物中侧根数量的增加表明了这一点。因此,这些转基因植物在磷充足和磷缺乏条件下均保持了比对照更好的光合气体交换能力。

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