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生姜对铝胁迫的生理响应特性OA北大核心CSTPCD

Physiological Response Characteristics of Ginger to Aluminum Stress

中文摘要英文摘要

生姜喜酸性土壤,而铝离子(Al3+)在酸性土壤中易析出,进而对作物造成毒害.为此,本文研究了0(CK)、250、500、750、1 000 mg·kg-1等土壤Al3+水平对生姜生长及叶片生理特性的影响.结果表明,Al3+对生姜生长的影响存在剂量效应,土壤250 mg·kg-1Al3+对生姜生长有一定促进作用,随着Al3+水平的升高,生姜株高、茎粗及各器官生物量均逐渐降低,收获时750 mg·kg-1Al3+处理的植株根、茎、叶及根茎鲜质量较CK分别降低了11.00%、9.32%、6.49%和21.24%.较高浓度Al3+胁迫显著降低了叶片色素含量,抑制了叶片水气交换参数,如生姜旺盛生长期750 mg·kg-1Al3+处理的叶片叶绿素a、b及净光合速率(Pn)分别较CK降低了65.89%、11.99%和19.95%;此外,土壤Al3+胁迫还使叶片活性氧水平显著升高,而抗氧化酶活性则呈现先升高后降低的趋势.

Ginger prefers acidic soil,while aluminum ions(Al3+)are easily released in acidic soil,which can cause toxicity to crops.This study investigated the effects of soil Al3+levels at 0(CK),250,500,750,and 1 000 mg·kg-1 on ginger growth and leaf physiological characteristics.The results showed that there was a dose effect of Al3+on the growth of ginger,soil 250 mg·kg-1 Al3+had a certain promotion effect on ginger growth,but with the increase of Al3+,the plant height,stem thickness and biomass of various organs were gradually reduced,at harvest,the fresh weight of roots,stems,leaves,and rhizomes of plants treated with 750 mg·kg-1 Al3+was reduced by 11.00%,9.32%,6.49%,and 21.24%,respectively,compared with that of CK.Higher concentrations of Al3+stress significantly reduced the pigment content of leaves and inhibited leaf water-gas exchange parameters,such as during the vigorous growth period,leaf chlorophyll a,b and net photosynthetic rate(Pn)of ginger treated with 750 mg·kg-1 Al3+were reduced by 65.89%,11.99%and 19.95%,respectively,compared with that of CK.In addition,soil Al3+stress also significantly increased the level of reactive oxygen species(ROS)in leaves,while the antioxidant enzyme activity showed a trend of gradual increase first and then decrease.

王江峰;王迪;吕尧;徐坤

山东农业大学园艺科学与工程学院,山东 泰安 271018山东农业大学园艺科学与工程学院,山东 泰安 271018||农业农村部黄淮地区园艺作物生物学与种质创制重点实验室,山东 泰安 271018

园艺学与植物营养学

生姜铝胁迫光合特性活性氧代谢

Gingeraluminum stressphotosynthetic characteristicsreactive oxygen metabolism

《山东农业大学学报(自然科学版)》 2024 (006)

902-907 / 6

国家重点研发计划(2023YFD1600200);山东省农业良种工程(2023LZGCQY003)

10.3969/j.issn.1000-2324.2024.06.011

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