Root Phenotyping for Drought Tolerance: A Review

Author:

Wasaya AllahORCID,Zhang Xiying,Fang Qin,Yan Zongzheng

Abstract

Plant roots play a significant role in plant growth by exploiting soil resources via the uptake of water and nutrients. Root traits such as fine root diameter, specific root length, specific root area, root angle, and root length density are considered useful traits for improving plant productivity under drought conditions. Therefore, understanding interactions between roots and their surrounding soil environment is important, which can be improved through root phenotyping. With the advancement in technologies, many tools have been developed for root phenotyping. Canopy temperature depression (CTD) has been considered a good technique for field phenotyping of crops under drought and is used to estimate crop yield as well as root traits in relation to drought tolerance. Both laboratory and field-based methods for phenotyping root traits have been developed including soil sampling, mini-rhizotron, rhizotrons, thermography and non-soil techniques. Recently, a non-invasive approach of X-ray computed tomography (CT) has provided a break-through to study the root architecture in three dimensions (3-D). This review summarizes methods for root phenotyping. On the basis of this review, it can be concluded that root traits are useful characters to be included in future breeding programs and for selecting better cultivars to increase crop yield under water-limited environments.

Funder

Chinese Academy of Sciences

Publisher

MDPI AG

Subject

Agronomy and Crop Science

Reference182 articles.

1. Breeding for Yield Potential and Stress Adaptation in Cereals

2. Drought stress in plants: An overview;Farooq,2012

3. Drought Stress in Wheat during Flowering and Grain-filling Periods

4. Variability of Root Traits in Spring Wheat Germplasm

5. Natural Disaster Hotspots: A Global Risk Analysis;Dilley,2005

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