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根系结构可塑性和叶片气体交换参数对维持缺水条件下瓠瓜的响应至关重要。

Plasticity of the Root System Architecture and Leaf Gas Exchange Parameters Are Important for Maintaining Bottle Gourd Responses under Water Deficit.

作者信息

Zacarias Rafael Dinoclaudio, Arriagada Osvin, Toro Guillermo, Mashilo Jacob, Mora-Poblete Freddy, Contreras-Soto Rodrigo Iván

机构信息

Institute of Biological Science, University of Talca, Talca 3460000, Chile.

Departamento de Ciencias Vegetales, Facultad de Agronomía e Ingeniería Forestal, Pontificia Universidad Católica de Chile, Santiago 306-22, Chile.

出版信息

Plants (Basel). 2020 Dec 3;9(12):1697. doi: 10.3390/plants9121697.

Abstract

The evaluation of root system architecture (RSA) development and the physiological responses of crop plants grown under water-limited conditions are of great importance. The purpose of this study was to examine the short-term variation of the morphological and physiological plasticity of genotypes under water deficit, evaluating the changes in the relationship between the root system architecture and leaf physiological responses. Bottle gourd genotypes were grown in rhizoboxes under well-watered and water deficit conditions. Significant genotype-water regime interactions were observed for several RSA traits and physiological parameters. Biplot analyses confirmed that the drought-tolerant genotypes (BG-48 and GC) showed a high net CO assimilation rate, stomatal conductance, transpiration rates with a smaller length, and a reduced root length density of second-order lateral roots, whereas the genotypes BG-67 and Osorno were identified as drought-sensitive and showed greater values for average root length and the density of second-order lateral roots. Consequently, a reduced length and density of lateral roots in bottle gourd should constitute a response to water deficit. The root traits studied here can be used to evaluate bottle gourd performance under novel water management strategies and as criteria for breeding selection.

摘要

评估根系结构(RSA)发育以及在水分受限条件下生长的作物的生理反应非常重要。本研究的目的是研究水分亏缺条件下基因型的形态和生理可塑性的短期变化,评估根系结构与叶片生理反应之间关系的变化。葫芦基因型在根箱中于水分充足和水分亏缺条件下生长。观察到几种RSA性状和生理参数存在显著的基因型-水分状况相互作用。双标图分析证实,耐旱基因型(BG-48和GC)表现出较高的净CO同化率、气孔导度、蒸腾速率,且根长度较小,二级侧根的根长密度降低,而基因型BG-67和奥索诺被确定为对干旱敏感,平均根长度和二级侧根密度的值更大。因此,葫芦侧根长度和密度的降低应是对水分亏缺的一种反应。这里研究的根系性状可用于评估葫芦在新型水分管理策略下的表现,并作为育种选择的标准。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b6b/7761539/5ca083dc264f/plants-09-01697-g001.jpg

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