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油菜籽 () 通过维持离子内环境平衡、提高抗氧化酶活性和荧光参数等光合能力,增强了对氯化钠和钠离子的耐受性。

Canola () enhances sodium chloride and sodium ion tolerance by maintaining ion homeostasis, higher antioxidant enzyme activity and photosynthetic capacity fluorescence parameters.

机构信息

College of Agriculture, Shihezi University, Shihezi, Xinjiang 832003, China.

出版信息

Funct Plant Biol. 2024 Aug;51. doi: 10.1071/FP23089.

Abstract

Under salt stress, plants are forced to take up and accumulate large amounts of sodium (Na+ ) and chloride (Cl- ). Although most studies have focused on the toxic effects of Na+ on plants, Cl- stress is also very important. This study aimed to clarify physiological mechanisms underpinning growth contrasts in canola varieties with different salt tolerance. In hydroponic experiments, 150mM Na+ , Cl- and NaCl were applied to salt-tolerant and sensitive canola varieties. Both NaCl and Na+ treatments inhibited seedling growth. NaCl caused the strongest damage to both canola varieties, and stress damage was more severe at high concentrations of Na+ than Cl- . High Cl- promoted the uptake of ions (potassium K+ , calcium Ca2+ ) and induced antioxidant defence. Salt-tolerant varieties were able to mitigate ion toxicity by maintaining lower Na+ content in the root system for a short period of time, and elevating magnesium Mg2+ content, Mg2+ /Na+ ratio, and antioxidant enzyme activity to improve photosynthetic capacity. They subsequently re-established new K+ /Na+ and Ca2+ /Na+ balances to improve their salt tolerance. High concentrations of Cl salts caused less damage to seedlings than NaCl and Na salts, and Cl- also had a positive role in inducing oxidative stress and responsive antioxidant defence in the short term.

摘要

在盐胁迫下,植物被迫吸收和积累大量的钠(Na+)和氯(Cl-)。尽管大多数研究都集中在 Na+对植物的毒性作用上,但 Cl-胁迫也非常重要。本研究旨在阐明不同耐盐性油菜品种生长差异的生理机制。在水培实验中,向耐盐和敏感油菜品种施加 150mM 的 Na+、Cl-和 NaCl。NaCl 和 Na+处理均抑制幼苗生长。NaCl 对两种油菜品种的伤害最大,且高浓度 Na+比 Cl-造成的胁迫损伤更严重。高 Cl-促进了离子(钾 K+、钙 Ca2+)的吸收,并诱导抗氧化防御。耐盐品种能够通过在短时间内维持根系中较低的 Na+含量,提高镁 Mg2+含量、Mg2+/Na+比值和抗氧化酶活性来减轻离子毒性,从而提高光合作用能力。随后,它们重新建立新的 K+/Na+和 Ca2+/Na+平衡,以提高耐盐性。高浓度的 Cl 盐对幼苗的伤害小于 NaCl 和 Na 盐,Cl-在短期内也对诱导氧化应激和响应性抗氧化防御有积极作用。

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