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新型小麦种衣剂JML对迟播冬小麦苗期生长和碳、氮代谢相关基因表达的影响 被引量:1
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作者 张小祥 肖宁 +18 位作者 张新钵 沈卫华 季红娟 李育红 潘存红 吉春明 吴政 吴云雨 蔡跃 刘建菊 余玲 陈梓春 时薇 张秀琴 刘广青 周长海 姚友礼 黄年生 李爱宏 《江苏农业学报》 CSCD 北大核心 2022年第3期625-634,共10页
为明确新型小麦种衣剂(JML)对迟播冬小麦幼苗生长及碳、氮代谢相关基因表达的影响,以扬麦23、扬麦24为试验材料,分析JML包衣处理后迟播冬小麦在种子活力、根系特征、干物质积累及碳、氮代谢相关基因表达等方面的变化特征。结果表明,JML... 为明确新型小麦种衣剂(JML)对迟播冬小麦幼苗生长及碳、氮代谢相关基因表达的影响,以扬麦23、扬麦24为试验材料,分析JML包衣处理后迟播冬小麦在种子活力、根系特征、干物质积累及碳、氮代谢相关基因表达等方面的变化特征。结果表明,JML处理后,扬麦23、扬麦24的发芽势和发芽率显著提高。茎叶与根器官中干物质积累增加,显著提高了植株氮积累量。根长、根表面积、根体积及根直径增加,与对照相比差异显著。JML处理提高了氮代谢中氮素吸收利用关键基因TaNRT1.1、TaNR、TaNIR、TaGS1、TaGS2等在幼苗植株中的表达水平,差异显著,但显著抑制了铵态氮转运蛋白基因TaAMT1.2的表达水平,促进了碳代谢中与光合作用密切相关的TaClpP、TaRBC、TaPSB基因的表达。因此,JML处理可以显著改善迟播冬小麦的种子活力,提高根系综合素质,增加苗期硝态氮的吸收转运、同化水平和叶片的碳同化能力,最终增加苗期植株干物质积累。 展开更多
关键词 冬小麦 幼苗 种子包衣剂 氮、碳代谢 基因表达
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Influences of Nitrogen Level on Carbon Metabolism of Spring Maize 被引量:5
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作者 其其格 李可 +2 位作者 李刚 李春艳 曹国军 《Agricultural Science & Technology》 CAS 2010年第4期34-36,共3页
[Objective]To study the effect of supplies of nitrogen level on spring maize leaf blade carbon metabolism.[Method]In this experiment,field trail and biochemistry analysis were used to study the effect of the diference... [Objective]To study the effect of supplies of nitrogen level on spring maize leaf blade carbon metabolism.[Method]In this experiment,field trail and biochemistry analysis were used to study the effect of the diference-nitrogen level on the content of chlorophyl and carboxylase activity of RuBP and PEP in the leaf of spring maize during main growing period.[Result]Applying proper amount of N could keep relative higher content of chlorophyl and higher activity of carboxylase of RuBP and PEP in the leaf of spring maize,insufficient or excessive(N 400 kg/hm^2) of nitrogenous fertilizer has the adverse effect.[Conclusion]In this experiment,applying 300 kg/hm^2 amount of N could keep relative higher content of chlorophyl and higher activity of carboxylase of RuBP and PEP in the leaf of spring maize during main growing period.It was important to strengthens the leaf blade photosynthesis ability,promote the yield formation and postpone the decline of leaf blade. 展开更多
关键词 Nitrogen nutrition Spring maize Carbon metabolism
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Provenance-specific ecophysiological responses to drought in Cunninghamia lanceolata
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作者 Shuang Gao Ze-Yu Cai +2 位作者 Cong-Cong Yang Jian-Xun Luo Sheng Zhang 《Journal of Plant Ecology》 SCIE CSCD 2021年第6期1060-1072,共13页
Aims Cunninghamia lanceolata is one of the most important coniferous species in southern China,but its high sensitivity to drought restricts its expansion.Understanding the intraspecific variation of physiological res... Aims Cunninghamia lanceolata is one of the most important coniferous species in southern China,but its high sensitivity to drought restricts its expansion.Understanding the intraspecific variation of physiological responses to drought can help us manage this plantation better.Methods We selected 3-year-old seedlings of C.lanceolata,which originated from the low precipitation(LP),middle precipitation(MP)and high precipitation(HP)habitats,respectively.Seedlings were grown under drought stress(20%of soil volumetric water content)for 40 days.The ecophysiological responses and adaptive strategies with different drought tolerance were investigated.Important Findings LP provenance possessed the best tolerance to drought stress,suggesting that considerably increased carbohydrates and nitrogen-containing compounds as osmotic protective materials,which were driven by fast carbon and nitrogen metabolisms.In addition,the highest peroxidase activity could effectively eliminate hydrogen peroxide in drought-stressed LP provenance.The MP provenance reserved a large amount of non-structural carbohydrates,which may act as a certain buffer for encountering drought stress.Importantly,timely closure of stomata to reduce needle transpiration when encountering a water deficiency would help them adapt to long-term drought.MP provenance adopted a conservative water-saving strategy.However,HP provenance regulated root growth(increased root/shoot ratio)and reduced penetration potential to help them absorb water.The different strategies among provenances may be related to the long-term domestication of the geographical environments.Therefore,our results underline the importance of provenance-specific responses to drought stress.It is highly significant to accelerate the selection of drought-resistant germplasms and to cultivate high-yield plantations in the future. 展开更多
关键词 Chinese fir DROUGHT PHYSIOLOGY provenance-specific ANTIOXIDANTS carbon and nitrogen metabolisms
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