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不同生育期马铃薯根系构型及生理指标对干旱胁迫的响应

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[目的]明确马铃薯各生育期根系对干旱胁迫的响应特征,初步解析根系的抗旱机制,为干旱胁迫下马铃薯的科学管理提供理论依据.[方法]以'冀张薯12号'马铃薯为材料,采用室内盆栽对比试验,设置重度干旱(土壤相对含水量45%)和正常浇水(土壤相对含水量75%)处理,在4个生育期观测马铃薯生长、根系构型和根系生理指标.[结果]干旱胁迫组马铃薯的株高、茎粗、总根长、根总表面积和根总体积在整个生育期都显著低于对照组;干旱胁迫组单株产量、单株结薯数和淀粉含量显著低于对照组,还原糖含量显著高于对照组;干旱胁迫组根系活力、MDA含量、脯氨酸含量、可溶性糖含量显著高于对照组,并随着干旱时间的延长呈上升趋势;干旱胁迫组根系SOD、POD活性在后期也显著高于对照组,且SOD活性在前期响应较慢,POD活性则响应较快.[结论]马铃薯生长、根系发育和产量受到干旱胁迫显著抑制,其根系的抗氧化酶活性、渗透调节物质含量均能迅速做出响应,缓解干旱胁迫带来的伤害,表现出一定的抗旱性.
Responses of potato root architecture and physiological indexes to drought stress at different growth stages
[Objective]The present study aimed to elucidate the response of the potato root system to drought stress at different developmental stages.Additionally,the study sought to identify the underlying mechanisms that confer drought resistance in potato root system.This study will provide a theoretical foundation for potato production under drought stress.[Methods]Using'Jizhang Potato No.12'as the material,an indoor potting experimental design was adopted to study potato growth indexes,root confor-mation,and root physiological indexes at different reproductive periods under two treatments of severe drought[relative soil moisture content(45±5)%]and normal watering[relative soil moisture content(75±5)%].[Results]The plant height,stem diameter,total root length,total root surface area,and total root volume of the potato were found to be significantly lower than those of the control throughout the re-productive period under drought stress.Single plant yield,number of potatoes per plant and starch content were significantly lower in the drought stressed group than the control,and reducing sugar was significant-ly higher in the drought stressed group than the control.The roots of potatoes subjected to drought stress exhibited heightened vigor,MDA,proline,and soluble sugar levels compared to the control,with these values increasing as the duration of drought prolonged.Additionally,the SOD and POD activity levels in these roots were higher than the control,with SOD displaying a delayed response during the early stages and POD activity demonstrating a rapid surge during the tuber formation phase.[Conclusion]The growth,development and yield of potatoes were found to be impeded by drought stress.The antioxidant enzyme system and osmoregulatory substances within the potato root system exhibited a rapid response to drought stress,enabling the plant to cope with the damage caused by drought stress and demonstrating a certain degree of drought resistance.

Solanum tuberosum L.drought stressroot architectureosmoregulatory substancesan-tioxidant enzyme

李佳欣、张天赐、任晓月、李思璇、陈彦云

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宁夏大学生命科学学院,银川 750021

马铃薯 干旱胁迫 根系构型 渗透调节物质 抗氧化酶

2024

西北植物学报
西北农林科技大学,陕西省植物学会

西北植物学报

CSTPCD北大核心
影响因子:1.031
ISSN:1000-4025
年,卷(期):2024.44(12)