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钙磷对蜈蚣草淹水胁迫响应的调控效应

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蜈蚣草(Pteris vittata)是世界上第一个被发现的砷超积累植物,是砷污染土壤植物修复的理想材料。淹水胁迫是影响蜈蚣草生长和分布的重要环境因子,限制其在高水分环境中的应用。研究蜈蚣草对淹水胁迫的响应及其调控措施具有重要的现实意义。钙(Ca)和磷(P)可提高植物对干旱、低温、盐碱等逆境胁迫的抗性,促进其生存和生长。然而,关于Ca、P对植物淹水胁迫响应及其调控效应的研究较少。本研究以蜈蚣草为对象,分析饱和持水量(相对含水率35%)和淹水胁迫(相对含水率40%)对叶片光合速率、超氧化物歧化酶(SOD)活性、细胞膜脂过氧化产物丙二醛(MDA)含量及生物量的影响,以不添加Ca、P为对照(CK),研究Ca、P对蜈蚣草淹水胁迫抗逆性的调控效应。结果表明:相较于35%含水率,40%含水率淹水胁迫使叶片光合速率降低30。8%,SOD活性降低71。7%,MDA含量提高46。4%,生物量降低77。3%,表明淹水胁迫使蜈蚣草抗氧化胁迫能力降低,使叶片光合速率和生物量均显著下降(P<0。05);淹水胁迫时,添加5~20 g·kg-1 Ca和0。1~0。2 g·kg-1 P使叶片光合速率、SOD活性和生物量较CK分别提高0。15~1。65、0。58~1。91和0。91~5。01倍,MDA含量降低14%~36。1%,表明Ca、P可缓解淹水胁迫对蜈蚣草的不利影响,且缓解作用随Ca、P添加量的升高而增强;相关性分析证实,添加Ca、P显著降低含水率与叶片光合速率、SOD活性、生物量的负相关性,及含水率与MDA的正相关性,且该趋势随Ca、P添加量的升高而增强,表明添加Ca、P使蜈蚣草对淹水胁迫的抗逆性提高。因此,Ca、P可通过提高抗氧化酶活性,增强活性氧清除能力,减轻膜脂过氧化,从而维持较高的光合活性,进而提高蜈蚣草对淹水胁迫的耐受性。
Regulation of calcium and phosphorus on the response of Pteris vittata to flooding stress
Pteris vittata is the first reported arsenic(As)hyperaccumulator,which is an ideal plant for remediation of As contaminated soils.Flooding stress is an important factor affecting the growth and geographical distribution of P.vittata,limiting its application in environment with high humidity.Therefore,it is of great importance to under-stand the response of P.vittata to flooding stress and the underlying mechanisms.Calcium(Ca)and phosphorus(P)can promote the survival and growth of plants by improving their resistance to drought,cold,salt and alkali stresses.The effects of Ca and P on plant responses to flooding stress are less studied.We analyzed photosynthetic rate,superoxide dismutase(SOD)activity,malondialdehyde(MDA)content,and biomass of P.vittata under sat-uration water retention(relative moisture content 35%)and flooding stress(relative moisture content 40%).The regulatory effects of Ca and P on P.vittata flooding stress resistance were studied with no Ca or P as a control(CK).Compared to the treatment with 35%moisture content,leaf photosynthetic rate decreased by 30.8%,SOD activity decreased by 71.7%,MDA content increased by 46.4%,and biomass decreased by 77.3%under 40%flooding stress,indicating that flooding stress reduced the resistance of P.vittata to antioxidant stress,resulting in significantly decreased leaf photosynthetic rate and biomass(P<0.05).Under flooding stress,5-20 g·kg Ca or 0.1-0.2 g·kg-1 P increased photosynthetic rate,SOD activity,and biomass by 0.15-1.65,0.58-1.91,and 0.91-5.01 times,and decreased MDA content by 14%-36.1%compared to CK.This result indicated that Ca and P addition can alleviate the adverse effects of flooding stress on P.vittata,which was enhanced with increasing Ca and P application amounts.The correlation analysis confirmed that Ca and P application reduced the negative corre-lation between moisture content and leaf photosynthetic rate,SOD activity,biomass,and the positive correlation between moisture content and MDA,which was increased with increasing Ca and P application,indicating that Ca and P can improve the resistance ability of P.vittata to flooding stress.Therefore,Ca and P application can improve the tolerance of P.vittata to flooding stress via increasing antioxidant enzymes activity,increasing scavenging active oxygen species,and reducing membrane lipid peroxidation,thereby maintaining high photosynthetic activities.

Pteris vittataflooding stresscalcium and phosphorusphotosynthetic rateenzyme activitybiomass

徐其静、毛佳璇、马露冉、杨晓莉、刘雪

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西南林业大学生态与环境学院,昆明 650224

西南林业大学环境修复与健康研究院,昆明 650224

蜈蚣草 淹水胁迫 钙磷 光合速率 酶活性 生物量

大学生创新创业训练计划大学生创新创业训练计划云南省兴滇英才支持计划青年人才专项云南省农业基础研究联合专项云南省农业基础研究联合专项云南省教育厅科研项目

2021075204320210752014YNQR-QNRC-2019-027202301BD070001-031202101BD070001-0432020J0406

2024

生态学杂志
中国生态学学会

生态学杂志

CSTPCD北大核心
影响因子:1.439
ISSN:1000-4890
年,卷(期):2024.43(5)