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硼氮互作对甘蓝型油菜生长、氮素吸收和籽粒产量的影响 被引量:2
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作者 王友强 赵哲 +3 位作者 汪社亮 叶祥盛 刘清云 徐芳森 《华中农业大学学报》 CAS CSCD 北大核心 2022年第2期38-47,共10页
为探究甘蓝型油菜硼氮交互作用的增产效应及其生理机制,通过水培试验和大田小区试验相结合的手段,分析了硼氮交互效应对油菜生长、氮素吸收利用、氮代谢酶活性以及籽粒产量的影响。结果表明:在苗期,硼缺乏显著抑制了不同氮供应水平下油... 为探究甘蓝型油菜硼氮交互作用的增产效应及其生理机制,通过水培试验和大田小区试验相结合的手段,分析了硼氮交互效应对油菜生长、氮素吸收利用、氮代谢酶活性以及籽粒产量的影响。结果表明:在苗期,硼缺乏显著抑制了不同氮供应水平下油菜根系生长发育;与低氮或低硼处理相比,硼氮平衡供给显著提高了氮素吸收及其相关基因的表达水平,改善了氮素同化过程中硝酸还原酶和谷氨酰胺合成酶活性;在田间试验中,硼和氮肥施用均显著提高了油菜产量,但硼肥施用效果与土壤氮素水平紧密相关,在正常氮(180 kg/hm^(2))供应水平下硼肥施用效果要优于低氮(60 kg/hm^(2))条件,而高硼(18 kg/hm^(2))配高氮(240 kg/hm^(2))限制了产量的进一步增加;适宜的硼氮配施显著改善了氮素收获指数,促进氮素向籽粒中的分配;无论是水培苗期还是大田全生育期,硼氮配施对油菜生长发育都存在显著的交互效应,在本研究的大田条件下,油菜适宜氮肥推荐用量为180~240 kg/hm^(2),同时搭配4.5~9 kg/hm^(2)的硼砂施用量,可以最大限度地提高油菜增产潜力。 展开更多
关键词 油菜 互作 精准施肥 氮代谢酶活 养分综合管理 平衡施肥 绿色高效
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Effects of elevated ozone and nitrogen addition on leaf nitrogen metabolism in poplar 被引量:2
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作者 Bo Shang Zhaozhong Feng +2 位作者 Jinlong Peng Yansen Xu Elena Paoletti 《Journal of Plant Ecology》 SCIE CSCD 2021年第3期555-568,共14页
Aims Ozone(O_(3))pollution and nitrogen(N)deposition/fertilization often simultaneously affect plant growth.However,research of their interactive effects on leaf N metabolism is still scarce.We investigated their inte... Aims Ozone(O_(3))pollution and nitrogen(N)deposition/fertilization often simultaneously affect plant growth.However,research of their interactive effects on leaf N metabolism is still scarce.We investigated their interactive effects,aiming to better understand plant N metabolism processes and biogeochemical cycles under high 03 pollution and N deposition/fertilization.Methods Poplar saplings were exposed to two O_(3)levels(NF,non-filtered ambient air;NF60,NF+60 ppb O_(3))and four N treatments(NO,no N added;N50,NO+50 kg N ha^(-1)yr^(-1);N100,NO+100 kg N ha^(-1)yr^(-1);N200,NO+200 kg N ha^(-1)yr^(-1)in open-top chambers for 95 days.The indicators related to leaf N metabolism were analyzed,including the activities of N-metabolizing enzymes and the contents of total N,NO_(3)^(-)-N,NH_(4)^(+)-N,total amino acid(TAA)and total soluble protein(TSP)in the leaves.Important Findings NF60 stimulated the activities of nitrate reductase(NR)by 47.2%at August relative to NF,and stimulated glutamine synthetase(GS)by 57.3%when averaged across all N treatments and sampling times.In contrast,O_(3)did not significantly affect TSP and even reduced TAA content in August.Relative to NO,N200 significantly increased light-saturated rate of CO_(2)assimilation(Asat)by 24%,and increased total N content by 70.3%and 43.3%in August and September,respectively,while it reduced photosynthetic N-use efficiency by 26.1%in August.These results suggest that the increase in Asat and total N content are uncoupled,and that the surplus N is not used to optimize the capacity for carbon assimilation under high N treatment.Simultaneously,high N treatment significantly promoted leaf N metabolism by increasing NO_(3)^(-)-N contents,NH_(4)^(+)-N contents,TAA contents and the activities of NR and GS.There was no significant interaction between O_(3)and N for all variables. 展开更多
关键词 enzyme activity nitrogen addition nitrogen metabolism OZONE POPLAR
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