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根系生长素通过调节小麦昼夜耗水可能参与耐旱性。

Potential involvement of root auxins in drought tolerance by modulating nocturnal and daytime water use in wheat.

机构信息

Department of Agronomy and Plant Genetics, Upper Buford Circle, University of Minnesota, St. Paul, MN, USA.

Earth and Life Institute, Université Catholique de Louvain, Louvain-la-Neuve, Belgium.

出版信息

Ann Bot. 2019 Nov 27;124(6):969-978. doi: 10.1093/aob/mcz023.

Abstract

BACKGROUND AND AIMS

The ability of wheat genotypes to save water by reducing their transpiration rate (TR) at times of the day with high vapour pressure deficit (VPD) has been linked to increasing yields in terminal drought environments. Further, recent evidence shows that reducing nocturnal transpiration (TRN) could amplify water saving. Previous research indicates that such traits involve a root-based hydraulic limitation, but the contribution of hormones, particularly auxin and abscisic acid (ABA), has not been explored to explain the shoot-root link. In this investigation, based on physiological, genetic and molecular evidence gathered on a mapping population, we hypothesized that root auxin accumulation regulates whole-plant water use during both times of the day.

METHODS

Eight double-haploid lines were selected from a mapping population descending from two parents with contrasting water-saving strategies and root hydraulic properties. These spanned the entire range of slopes of TR responses to VPD and TRN encountered in the population. We examined daytime/night-time auxin and ABA contents in the roots and the leaves in relation to hydraulic traits that included whole-plant TR, plant hydraulic conductance (KPlant), slopes of TR responses to VPD and leaf-level anatomical traits.

KEY RESULTS

Root auxin levels were consistently genotype-dependent in this group irrespective of experiments and times of the day. Daytime root auxin concentrations were found to be strongly and negatively correlated with daytime TR, KPlant and the slope of TR response to VPD. Night-time root auxin levels significantly and negatively correlated with TRN. In addition, daytime and night-time leaf auxin and ABA concentrations did not correlate with any of the examined traits.

CONCLUSIONS

The above results indicate that accumulation of auxin in the root system reduces daytime and night-time water use and modulates plant hydraulic properties to enable the expression of water-saving traits that have been associated with enhanced yields under drought.

摘要

背景与目的

在高蒸气压亏缺(VPD)时段降低蒸腾速率(TR)的小麦基因型具有节水能力,这与在终末期干旱环境中提高产量有关。此外,最近的证据表明,减少夜间蒸腾(TRN)可以放大节水效果。先前的研究表明,这些特性涉及基于根系的水力限制,但尚未探索激素(特别是生长素和脱落酸(ABA))的贡献,以解释地上-地下部分的联系。在这项研究中,基于在一个作图群体上收集的生理、遗传和分子证据,我们假设根系生长素积累调节全天的植株水分利用。

方法

从具有节水策略和根系水力特性不同的两个亲本的作图群体中选择了 8 个双单倍体系。这些系跨越了群体中遇到的 TR 对 VPD 和 TRN 的响应斜率的整个范围。我们研究了根系和叶片中的白天/夜间生长素和 ABA 含量与包括全株 TR、植物水力导度(KPlant)、TR 对 VPD 的响应斜率和叶片水平解剖特征在内的水力特性之间的关系。

主要结果

在该群体中,无论实验和白天时间如何,根系生长素水平始终取决于基因型。发现白天根系生长素浓度与白天 TR、KPlant 和 TR 对 VPD 的响应斜率呈强烈负相关。夜间根系生长素水平与 TRN 呈显著负相关。此外,白天和夜间叶片生长素和 ABA 浓度与所研究的任何性状均无相关性。

结论

上述结果表明,根系生长素的积累降低了白天和夜间的水分利用,并调节了植物的水力特性,使与干旱条件下产量提高相关的节水特性得以表达。

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