8份苹果种质资源的抗旱性评价OA北大核心CSTPCD
Evaluation of drought resistance of eight apple germplasm resources
[目的]研究8份苹果种质资源的抗旱性,为苹果种质资源的利用及抗性育种提供参考.[方法]以1年生P5、L51、L37、LC36、L7、LC54、ZN18和C31为试验材料,选取富平楸子和新疆野苹果作为对照,进行自然干旱胁迫处理,通过测定净光合速率(Pn)、抗氧化酶系统和脯氨酸(PRO)含量等相关指标,利用隶属函数法分析各苹果种质资源的抗旱性.[结果]在自然干旱胁迫后,各苹果种质资源叶片出现不同程度萎蔫,LC54的叶片萎蔫最为严重,LC36的叶片萎蔫程度最小;在干旱胁迫第9天,各种质资源的Pn和叶绿素含量显著降低,丙二醛(MDA)含量、PRO含量、脱落酸(ABA)含量、过氧化氢(H2O2)含量和超氧阴离子(O2-)含量显著增高,超氧化物歧化酶(SOD)和过氧化物酶(POD)的活性也显著增强.[结论]各苹果种质资源的抗旱性依次为:LC36>L7>富平楸子>新疆野苹果>L51>C31>P5>ZN18>L37>LC54.
[Objective]Drought is one of the main factors restricting agricultural production,which would cause a large scale yield reduction.The Loess Plateau is the largest apple producing area in Chi-na.However,the Loess Plateau is faced with perennial drought and water shortage,and most of the ap-ple planting areas are located in mountainous areas short of irrigation conditions.Drought and water shortage are the main limiting factors for the development of apple industry in the Loess Plateau of Chi-na.Therefore,it is of great significance to breed rootstocks and varieties with strong drought resistance.In the previous study,8 apple germplasm resources with utilization value were found in our laboratory.This study evaluated their drought resistance in order to provide reference for the utilization and resis-tance breeding.[Methods]In this study,P5(Malus asiatica),L51(M.robusta),L37(M.hybrid'Dwarf Tree'),LC36(M.hybrid'Cranberry'),L7(M.soulardii),LC54(M.domestica'Oekonomierat Echter-meyer'),ZN18(M.domestica,Sciros×Scifresh)and C31(M.domestica'Trail')were used as experi-mental materials,and M.prunifolia and M.sieversii were used as controls.In the spring of 2022,the bud grafting method was used to graft them on the M.hupehensis Rehd.When the height of all test ma-terials reached 70-80 cm,the plants with the same height were selected for experiment.The treatment group was watered thoroughly the day before the treatment and stopped watering until the 9th day of the treatment.The control group was watered normally every day,and the soil relative water content was maintained at 75%-85%.From the 0th day of treatment,the net photosynthetic rate,chlorophyll content,relative water content and relative conductivity of leaves were measured every other day.Com-pletely mature leaves were collected from 7-15 leaves below the top of the stem,wrapped in the tin foil paper,immediately frozen in liquid nitrogen,and stored at-80℃ for the determination of the malondi-aldehyde content,hydrogen peroxide content,superoxide anion(O2-)content,antioxidant enzyme activi-ty,proline,ABA content and the expression of the synthesis-related genes of each apple germplasm re-source.The drought resistance of each apple germplasm resource was evaluated by membership func-tion method.[Results](1)After natural drought stress,the leaves of the apple germplasm resources wilted to varying degrees.The leaves of LC54 wilted most seriously,and the leaves of LC36 wilted most lightly.After drought treatment,the leaf relative water content of each apple germplasm resource decreased significantly,and the leaf relative water content of LC54 decreased most apparently.(2)After drought treatment,the relative conductivity,MDA content and proline content of the leaves of the apple germplasm resources increased significantly.On the 9th day of the drought stress,the net photosynthet-ic rate and chlorophyll content of various germplasm resources decreased significantly.(3)The O2-con-tent of the apple germplasm resources increased significantly after drought stress,and the increase range of the O2-content of the apple germplasm resources was between 84.31%and 197.97%.The con-tent of H2O2 was lower on the 0th day of drought stress,and significantly increased on the 9th day of the drought stress.(4)The ABA content of the apple germplasm resources increased significantly after the drought stress.The gene expression of the MdNCED1 and MdNCED3 remained at a low level on the 0th day of the drought treatment,and increased significantly on the 9th day of the drought treatment,which was consistent with the change of the ABA content in the leaves.(5)The comprehensive net pho-tosynthetic rate,chlorophyll content,leaf relative water content,relative conductivity,malondialdehyde content,hydrogen peroxide content,superoxide anion(O2-)content,superoxide dismutase(SOD)activi-ty,peroxidase(POD)activity,proline,ABA content,a total of 11 indicators,were used to calculate the average membership function value of each apple germplasm resource.The results showed that the aver-age membership function value of LC36 was the largest,indicating that the relative change degree of each index of LC36 was the smallest under the drought stress,and the drought resistance was the stron-gest among the 8 apple germplasm resources.The average membership function value of LC54 was the smallest,indicating that its drought resistance was the weakest.[Conclusion]The results of this study showed that under the drought stress,the net photosynthetic rate of plants decreased,the membrane in-tegrity was destroyed,and the contents of ABA and proline increased significantly.However,due to the different resistance of the apple germplasm resources to drought,the changes of each index before and after the drought stress were also different.According to the membership function value,we concluded that the drought resistance of each apple germplasm resource is:LC36>L7>M.prunifolia>M.siever-sii>L51>C31>P5>ZN18>L37>LC54.The drought resistance of LC36 and L7 germplasm resourc-es is greater than that of M.prunifolia and M.sieversii,while the drought resistance of other resources is lower than that of M.prunifolia and M.sieversii.Therefore,LC36 and L7 are important resources for improvement of the drought resistance of apple.
魏江彤;马孝颖;李雪雯;张志军;李超;马锋旺
西北农林科技大学园艺学院·作物抗逆与高效生产全国重点实验室·陕西省苹果重点实验室,陕西杨凌 712100
园艺学与植物营养学
苹果种质资源抗旱评价隶属函数
AppleGermplasm resourcesDrought resistance evaluationMembership function
《果树学报》 2024 (004)
569-578 / 10
国家苹果产业技术体系项目(CARS-27)
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