Study on Root Hydraulic Lift of Drought-Tolerant and Drought-Sensitive Potato Cultivars (Solanum tuberosum L.)

Author:

Yao Panfeng1ORCID,Li Yajie2,Ali Kazim3ORCID,Zhang Chunli4,Qin Tianyuan14,Bi Zhenzhen14,Liu Yuhui1,Liu Zhen1,Kear Philip5ORCID,Sun Chao14,Bai Jiangping14

Affiliation:

1. State Key Laboratory of Aridland Crop Science, Gansu Agricultural University, Lanzhou 730070, China

2. Dingxi Agricultural Science Research Institute, Dingxi 743000, China

3. National Institute for Genomics and Advanced Biotechnology, National Agricultural Research Centre, Park Road, Islamabad 45500, Pakistan

4. College of Agronomy, Gansu Agricultural University, Lanzhou 730070, China

5. International Potato Center (CIP) CIP China Center for Asia Pacific (CCCAP), Beijing 102100, China

Abstract

In order to investigate the relationship between hydraulic lift and drought tolerance in potato, four cultivars differing in drought susceptibilities were selected, and a pot experiment with three different irrigation conditions was carried out in a randomized complete block design. Under irrigation conditions (WW), hydraulic lift of soil water was not observed in the upper pots. Under half-irrigation (DW) and drought (DD) conditions, the water content increased in the upper pots, along with a change in root-related traits, higher biomass, and lower proline (Pro) and malondialdehyde (MDA) concentrations observed in the drought-tolerant cultivars (Longshu NO.3 and Xindaping), whereas the drought-sensitive cultivars (Favorita and Atlantic) had contrary results. As the degree of drought stress increased, the phenomenon of hydraulic lift was inhibited completely, along with a reduction in soil water content and biomass and an increase in Pro and MDA accumulation. Genotypes of Longshu NO.3 and Xindaping exhibited higher tolerance to drought stress than Favorita and Atlantic under drought conditions. In addition, similar results were also obtained for the determination of plant height, leaf water content, root activity, and root–shoot ratio. This study revealed that there was a phenomenon of hydraulic redistribution among different potato cultivars, along with hydraulic lift strongly associated with the root growth, biomass allocation, and other physiological traits that potentially confer drought resistance.

Funder

Research Program Sponsored by the State Key Laboratory of Aridland Crop Science of China

Scientific Research Startup Funds for Openly-recruited Doctors of Gansu Agricultural University

China Agriculture Potato Research System of MOF and MARA

Publisher

MDPI AG

Subject

Agronomy and Crop Science

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