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根系统大小和根毛长度是拟南芥自然变异中硝酸盐获取和生物量生产的关键表型。

Root system size and root hair length are key phenes for nitrate acquisition and biomass production across natural variation in Arabidopsis.

机构信息

Crop Production and Biostimulation Laboratory, Interfacultary School of Bioengineers, Université libre de Bruxelles, B-1050 Brussels, Belgium.

Institute of Plant Science Montpellier, Université de Montpellier, CNRS, INRAE, Institut Agro, 34060 Montpellier, France.

出版信息

J Exp Bot. 2022 Jun 2;73(11):3569-3583. doi: 10.1093/jxb/erac118.

Abstract

The role of root phenes in nitrogen (N) acquisition and biomass production was evaluated in 10 contrasting natural accessions of Arabidopsis thaliana L. Seedlings were grown on vertical agar plates with two different nitrate supplies. The low N treatment increased the root to shoot biomass ratio and promoted the proliferation of lateral roots and root hairs. The cost of a larger root system did not impact shoot biomass. Greater biomass production could be achieved through increased root length or through specific root hair characteristics. A greater number of root hairs may provide a low-resistance pathway under elevated N conditions, while root hair length may enhance root zone exploration under low N conditions. The variability of N uptake and the expression levels of genes encoding nitrate transporters were measured. A positive correlation was found between root system size and high-affinity nitrate uptake, emphasizing the benefits of an exploratory root organ in N acquisition. The expression levels of NRT1.2/NPF4.6, NRT2.2, and NRT1.5/NPF7.3 negatively correlated with some root morphological traits. Such basic knowledge in Arabidopsis demonstrates the importance of root phenes to improve N acquisition and paves the way to design eudicot ideotypes.

摘要

在 10 个拟南芥(Arabidopsis thaliana L.)天然品系中评估了根表型在氮(N)获取和生物量生产中的作用。将幼苗种在具有两种不同硝酸盐供应的垂直琼脂平板上。低氮处理增加了根与茎生物量的比例,并促进了侧根和根毛的增殖。更大的根系成本不会影响茎生物量。通过增加根长或通过特定的根毛特征,可以实现更大的生物量生产。更多的根毛可能在高氮条件下提供低阻力途径,而根毛长度可能在低氮条件下增强根区的探索。测量了氮吸收的可变性和编码硝酸盐转运蛋白的基因的表达水平。发现根系大小与高亲和力硝酸盐吸收之间存在正相关,这强调了在 N 获取中探索性根系器官的好处。NRT1.2/NPF4.6、NRT2.2 和 NRT1.5/NPF7.3 的表达水平与一些根形态特征呈负相关。在拟南芥中获得的这种基础知识表明了根表型对改善氮获取的重要性,并为设计双子叶植物理想型奠定了基础。

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