以苹果(平邑甜茶)幼苗为试验材料,盆栽条件下以万寿菊植株风干粉末拌土熏蒸老苹果园土壤,为环境友好型熏蒸措施防控苹果连作障碍提供理论依据。试验设置老龄苹果园土壤对照(未作处理,CK)、覆膜(未拌入万寿菊,F)、万寿菊1.5 g kg^(-1)+覆...以苹果(平邑甜茶)幼苗为试验材料,盆栽条件下以万寿菊植株风干粉末拌土熏蒸老苹果园土壤,为环境友好型熏蒸措施防控苹果连作障碍提供理论依据。试验设置老龄苹果园土壤对照(未作处理,CK)、覆膜(未拌入万寿菊,F)、万寿菊1.5 g kg^(-1)+覆膜(1.5T+F)、万寿菊6.0 g kg^(-1)+覆膜(6.0T+F)、万寿菊15.0 g kg^(-1)+覆膜(15.0T+F)。结果表明,与对照相比,万寿菊生物熏蒸处理能显著提高连作土壤中平邑甜茶幼苗的生物量,促进根系生长,提高土壤酶活性,土壤真菌减少、细菌增多。6.0 g kg^(-1)处理的效果最明显,幼苗地上部及根系干重分别为对照的8.1倍、13.1倍,根表面积及根体积分别增加了333.0%、548.4%;脲酶、磷酸酶活性分别较对照高103.6%、77.6%,蔗糖酶活性高出200.4%,过氧化氢酶活性升高64.6%;土壤细菌/真菌比值为219.9,是对照的5.6倍;真菌多样性、均匀度和丰富度指数均降低,优势度指数增加;层出镰孢菌基因拷贝数较对照降低57.9%。主成分分析(PCA)结果显示,万寿菊生物熏蒸处理对连作土壤真菌群落多样性有显著影响,能够显著减少层出镰孢菌的数量。综上,连作土壤中添加6.0 g kg^(-1)万寿菊进行生物熏蒸可提高连作平邑甜茶幼苗生物量,改善连作土壤环境,有效缓解平邑甜茶的连作障碍。展开更多
Malus hupehensis was used as experiment materials.This experiments were conducted to explore the effects of benzoic acid on the productivity of superoxide(O2 ·),the contents of malondialdehvde(MDA)and sulfhyd...Malus hupehensis was used as experiment materials.This experiments were conducted to explore the effects of benzoic acid on the productivity of superoxide(O2 ·),the contents of malondialdehvde(MDA)and sulfhydryl group activity(—SH),antioxidant enzyme activity and mineral elements in roots of M.hupehensis seedlings.The results showed that there was no significant difference between the treatment of 5 mg·kg-1(soil)benzoic acid and CK in above parameters.With 25 mg·kg-1(soil)and 125 mg·kg-1(soil)benzoic acid treatments,O2 · and MDA contents increased in the early period and then declined;—SH content decreased during the treatment time;activities of SOD and POD increased firstly,then decreased,CAT activity decreased firstly and then slightly reversed,but lower than that of CK;SOD,POD and CAT had a similar trend,activities of roots increased under 5 mg·kg-1(soil)benzoic acid,while they were inhibited by 25 mg·kg-1(soil)and 125 mg·kg-1(soil)benzoic acid;mineral elements were decreased.Benzoic acid in low concentration promoted antioxidant enzyme activity,—SH content,and uptake of mineral elements,reduced O2 · and MDA contents.In conclusion,benzoic acid of 5 mg·kg-1(soil)had no effects on Membrance Lipid Peroxidation and Antioxidant enzymes in roots of M.hupehensis seedlings;at 25 mg·kg-1(soil)and 125 mg·kg-1(soil),benzoic acid increased Membrance Lipid Peroxidationd,decreased activity of antioxidant enzymes of roots,and damaged integrity and stability of cell membrane in M.hupehensis seedlings,meanwhile,contents of mineral elements were decreased.展开更多
【目的】采用15N、13C同位素示踪技术,通过对不同施氮量下嘎啦幼苗生长状况及氮、碳分配、利用特性等的研究,以期为苹果生产合理施肥提供依据。【方法】将2年生盆栽嘎啦幼苗进行低、中、高三个氮水平处理,同时进行15N标记。在新梢旺长...【目的】采用15N、13C同位素示踪技术,通过对不同施氮量下嘎啦幼苗生长状况及氮、碳分配、利用特性等的研究,以期为苹果生产合理施肥提供依据。【方法】将2年生盆栽嘎啦幼苗进行低、中、高三个氮水平处理,同时进行15N标记。在新梢旺长初始期、新梢旺长期、新梢缓长期分别进行整株13C标记,72小时后,整株解析为叶、梢、根三部分,进行15N、13C测定。样品全氮用凯氏定氮法测定,15N丰度用ZHT-03质谱计测定。13C丰度用DELTA V Advantage同位素比率质谱仪测定。【结果】1)中、高氮水平的施肥处理可在不同程度上提高整株及叶片干物质量和新梢长度。新梢旺长初始期和新梢缓长期嘎啦幼苗整株干物质量、新梢旺长期叶片干物质分配比率在中、高氮水平处理间差异不显著,中氮水平经济有效。新梢旺长期以后新梢长度以中氮>高氮>低氮,三者间差异性显著,中氮处理有利于新梢生长。2)在新梢旺长初始期,低氮处理植株叶片15N分配率达50%,比其他处理高出13个百分点左右,表明低氮处理更多的氮被叶片所利用,中氮和高氮处理间差异不显著,说明在本试验施氮条件下中氮供应水平已能满足氮素营养需求。3)新梢旺长期和新梢缓长期幼苗13C固定量均以中氮处理最高,新梢旺长初始期3个处理间根系13C分配率中氮>高氮>低氮,表明中氮处理有利于碳同化物在嘎啦幼苗中的分配。4)不同施氮量处理的嘎啦幼苗,15N利用率随施氮水平提高而降低,高氮处理对碳同化物分配没有显著贡献。【结论】低、中、高氮不同处理新梢缓长期碳同化物在各器官间的分配比较均衡,氮素水平不能影响碳同化物的分配。盆栽试验表明,中氮水平在保证营养供应的同时,能够促进新梢生长和树势健壮。展开更多
文摘以苹果(平邑甜茶)幼苗为试验材料,盆栽条件下以万寿菊植株风干粉末拌土熏蒸老苹果园土壤,为环境友好型熏蒸措施防控苹果连作障碍提供理论依据。试验设置老龄苹果园土壤对照(未作处理,CK)、覆膜(未拌入万寿菊,F)、万寿菊1.5 g kg^(-1)+覆膜(1.5T+F)、万寿菊6.0 g kg^(-1)+覆膜(6.0T+F)、万寿菊15.0 g kg^(-1)+覆膜(15.0T+F)。结果表明,与对照相比,万寿菊生物熏蒸处理能显著提高连作土壤中平邑甜茶幼苗的生物量,促进根系生长,提高土壤酶活性,土壤真菌减少、细菌增多。6.0 g kg^(-1)处理的效果最明显,幼苗地上部及根系干重分别为对照的8.1倍、13.1倍,根表面积及根体积分别增加了333.0%、548.4%;脲酶、磷酸酶活性分别较对照高103.6%、77.6%,蔗糖酶活性高出200.4%,过氧化氢酶活性升高64.6%;土壤细菌/真菌比值为219.9,是对照的5.6倍;真菌多样性、均匀度和丰富度指数均降低,优势度指数增加;层出镰孢菌基因拷贝数较对照降低57.9%。主成分分析(PCA)结果显示,万寿菊生物熏蒸处理对连作土壤真菌群落多样性有显著影响,能够显著减少层出镰孢菌的数量。综上,连作土壤中添加6.0 g kg^(-1)万寿菊进行生物熏蒸可提高连作平邑甜茶幼苗生物量,改善连作土壤环境,有效缓解平邑甜茶的连作障碍。
文摘Malus hupehensis was used as experiment materials.This experiments were conducted to explore the effects of benzoic acid on the productivity of superoxide(O2 ·),the contents of malondialdehvde(MDA)and sulfhydryl group activity(—SH),antioxidant enzyme activity and mineral elements in roots of M.hupehensis seedlings.The results showed that there was no significant difference between the treatment of 5 mg·kg-1(soil)benzoic acid and CK in above parameters.With 25 mg·kg-1(soil)and 125 mg·kg-1(soil)benzoic acid treatments,O2 · and MDA contents increased in the early period and then declined;—SH content decreased during the treatment time;activities of SOD and POD increased firstly,then decreased,CAT activity decreased firstly and then slightly reversed,but lower than that of CK;SOD,POD and CAT had a similar trend,activities of roots increased under 5 mg·kg-1(soil)benzoic acid,while they were inhibited by 25 mg·kg-1(soil)and 125 mg·kg-1(soil)benzoic acid;mineral elements were decreased.Benzoic acid in low concentration promoted antioxidant enzyme activity,—SH content,and uptake of mineral elements,reduced O2 · and MDA contents.In conclusion,benzoic acid of 5 mg·kg-1(soil)had no effects on Membrance Lipid Peroxidation and Antioxidant enzymes in roots of M.hupehensis seedlings;at 25 mg·kg-1(soil)and 125 mg·kg-1(soil),benzoic acid increased Membrance Lipid Peroxidationd,decreased activity of antioxidant enzymes of roots,and damaged integrity and stability of cell membrane in M.hupehensis seedlings,meanwhile,contents of mineral elements were decreased.
文摘【目的】采用15N、13C同位素示踪技术,通过对不同施氮量下嘎啦幼苗生长状况及氮、碳分配、利用特性等的研究,以期为苹果生产合理施肥提供依据。【方法】将2年生盆栽嘎啦幼苗进行低、中、高三个氮水平处理,同时进行15N标记。在新梢旺长初始期、新梢旺长期、新梢缓长期分别进行整株13C标记,72小时后,整株解析为叶、梢、根三部分,进行15N、13C测定。样品全氮用凯氏定氮法测定,15N丰度用ZHT-03质谱计测定。13C丰度用DELTA V Advantage同位素比率质谱仪测定。【结果】1)中、高氮水平的施肥处理可在不同程度上提高整株及叶片干物质量和新梢长度。新梢旺长初始期和新梢缓长期嘎啦幼苗整株干物质量、新梢旺长期叶片干物质分配比率在中、高氮水平处理间差异不显著,中氮水平经济有效。新梢旺长期以后新梢长度以中氮>高氮>低氮,三者间差异性显著,中氮处理有利于新梢生长。2)在新梢旺长初始期,低氮处理植株叶片15N分配率达50%,比其他处理高出13个百分点左右,表明低氮处理更多的氮被叶片所利用,中氮和高氮处理间差异不显著,说明在本试验施氮条件下中氮供应水平已能满足氮素营养需求。3)新梢旺长期和新梢缓长期幼苗13C固定量均以中氮处理最高,新梢旺长初始期3个处理间根系13C分配率中氮>高氮>低氮,表明中氮处理有利于碳同化物在嘎啦幼苗中的分配。4)不同施氮量处理的嘎啦幼苗,15N利用率随施氮水平提高而降低,高氮处理对碳同化物分配没有显著贡献。【结论】低、中、高氮不同处理新梢缓长期碳同化物在各器官间的分配比较均衡,氮素水平不能影响碳同化物的分配。盆栽试验表明,中氮水平在保证营养供应的同时,能够促进新梢生长和树势健壮。