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首页> 外文期刊>Frontiers in Plant Science >Adaptation of Foxtail Millet ( Setaria italica L.) to Abiotic Stresses: A Special Perspective of Responses to Nitrogen and Phosphate Limitations
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Adaptation of Foxtail Millet ( Setaria italica L.) to Abiotic Stresses: A Special Perspective of Responses to Nitrogen and Phosphate Limitations

机译:对非生物胁迫的福克斯小米(<斜视>斜视近距离 L.)的适应性:对氮和磷酸盐限制的反应的特殊视角

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Amongst various environmental constraints, abiotic stresses are increasing the risk of food insecurity worldwide by limiting crop production and disturbing the geographical distribution of food crops. Millets are known to possess unique features of resilience to adverse environments, especially infertile soil conditions, although the underlying mechanisms are yet to be determined. The small diploid genome, short stature, excellent seed production, C _(4) photosynthesis, and short life cycle of foxtail millet make it a very promising model crop for studying nutrient stress responses. Known to be a drought-tolerant crop, it responds to low nitrogen and low phosphate by respective reduction and enhancement of its root system. This special response is quite different from that shown by maize and some other cereals. In contrast to having a smaller root system under low nitrogen, foxtail millet enhances biomass accumulation, facilitating root thickening, presumably for nutrient translocation. The low phosphate response of foxtail millet links to the internal nitrogen status, which tends to act as a signal regulating the expression of nitrogen transporters and hence indicates its inherent connection with nitrogen nutrition. Altogether, the low nitrogen and low phosphate responses of foxtail millet can act as a basis to further determine the underlying molecular mechanisms. Here, we will highlight the abiotic stress responses of foxtail millet with a key note on its low nitrogen and low phosphate adaptive responses in comparison to other crops.
机译:在各种环境限制中,非生物应力通过限制作物生产和扰乱食物作物的地理分布,增加全世界粮食不安全的风险。众所周知,少将具有对不利环境的独特特征,尤其是不孕的土壤条件,尽管尚未确定潜在的机制。小二倍体基因组,矮小的身材,优异的种子生产,C _(4)光合作用,福克尾部的短生活循环使其成为研究营养应激反应的非常有前途的模型作物。已知是耐旱性作物,通过各自的减少和增强其根系来响应低氮和低磷酸盐。这种特殊响应与玉米和其他一些谷物所示的特殊响应完全不同。相反,在低氮气下具有较小的根系,FOXTAIL Millet增强了生物质积累,促进了根增厚,可能是为了营养易位。狐尾小米链接到内氮现状的低磷酸盐响应,这倾向于用作调节氮转运蛋白表达的信号,因此表明其与氮营养的固有连接。完全,氟铜小米的低氮和低磷酸盐反应可以作为进一步确定潜在的分子机制的基础。在这里,我们将突出福精小米的非生物应力反应,与其低氮和低磷酸盐适应性反应相比之下。

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