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氮素形态对油茶苗木生长及生理指标的影响
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  • 英文篇名:Effects of different proportion of nitrogen forms on the growth and physiological characteristics of Camellia oleifera seedlings
  • 作者:王瑞 ; 陈隆升 ; 王湘南 ; 唐炜 ; 彭映赫 ; 张震 ; 李安亮 ; 陈永忠
  • 英文作者:WANG Rui;CHEN Longsheng;WANG Xiangnan;TANG Wei;PENG Yinghe;ZHANG Zhen;LI Anliang;CHEN Yongzhong;College of Forestry, Central South University of Forestry and Technology;Hunan Academy of Forestry, National Oil-tea Camellia Engineering & Technology Research Center;
  • 关键词:油茶 ; 氮素形态 ; 氮素配比 ; 营养生长 ; 叶片生理指标
  • 英文关键词:Camellia oleifera;;nitrogen form;;nitrogen proportion;;vegetative growth;;leaf physiological index
  • 中文刊名:南京林业大学学报(自然科学版)
  • 英文刊名:Journal of Nanjing Forestry University(Natural Sciences Edition)
  • 机构:中南林业科技大学林学院;湖南省林业科学院国家油茶工程技术研究中心;
  • 出版日期:2019-05-23 14:53
  • 出版单位:南京林业大学学报(自然科学版)
  • 年:2019
  • 期:04
  • 基金:湖南省自然科学基金项目(2017JJ2145);; 湖南省科技重大专项(2018NK1030)
  • 语种:中文;
  • 页:29-35
  • 页数:7
  • CN:32-1161/S
  • ISSN:1000-2006
  • 分类号:S794.4
摘要
【目的】探究不同氮素形态对油茶苗木生长及生理指标的影响,以期找到促进油茶个体生长和有利于油茶氮代谢的氮素形态及配比。【方法】以‘湘林1号’(XL1)油茶实生苗为供试材料,采用液体浇灌的方法,观察不同形态氮素配比[(m(NO~-_3-N)∶m(NH~+_4-N)=10∶0、7∶3、5∶5、3∶7、0∶10)]对油茶幼苗生长特性及生理指标的影响。【结果】苗高增量、地径增量均随着培养液中铵态氮比例的增加呈先增加后降低的趋势,在m(NH~+_4-N)∶m(NO~-_3-N)为5∶5时达最大值;m(NH~+_4-N)∶m(NO~-_3-N)为7∶3和5∶5时,干物质量累积最大;叶片叶绿素含量、硝酸还原酶(NR)活性以及谷氨酰胺合成酶(GS)活性均在m(NH~+_4-N)∶m(NO~-_3-N)为5∶5时达到最大值;谷氨酸合酶(GOGAT)活性在m(NH~+_4-N)∶m(NO~-_3-N)为10∶0时达最大值;外源氮添加均增加了油茶叶片的全氮含量,m(NH~+_4-N)∶m(NO~-_3-N)为3∶7时,全氮含量最高。相关性分析结果表明,苗木生长、总干物质量及叶片全氮含量均与总叶绿素含量、NR活性、GS活性呈显著或极显著正相关,地径增量与GOGAT活性呈极显著正相关,总干物质量与GOGAT活性呈显著正相关。【结论】施用混合态氮素比单一形态氮素更有利于油茶苗木的生长,当m(NH~+_4-N)∶m(NO~-_3-N)为5∶5时,最利于油茶幼苗生长。
        【Objective】Camellia oleifera is a unique woody edible oil tree in China, which has great value for exportation and broad market prospects. In the rapidly developing oil tea industry, improved seedlings are vigorously demanded. The quality of seedlings directly affects the development of this industry, and fertilizers play a significant role in the growth and quality of seedlings. Therefore, it is of great importance to study the effects of nitrogen forms on the growth and physiological indexes of Camellia oleifera seedlings, which can guide management of nitrogen fertilizer for Camellia oleifera seedlings. 【Method】 The effects of different nitrogen forms [m(NO~-_3-N)∶m(NH~+_4-N)=10∶0, 7∶3, 5∶5, 3∶7, 0∶10] on growth(growth, biomass)and physiological indexes(chlorophyll content, related enzyme activity and leaf total nitrogen content) of Camellia oleifera seedlings were studied by liquid irrigation with XL1 seedlings. The nutrient solution used was the Hoagland nutrient solution, and 7 μmol/L nitrification inhibitor C_2H_4N_4 was added to all nutrient solutions to inhibit nitrification. The experiment was conducted in a completely randomized block with 3 replicates per treatment, 30 plants per replicate, and 10 times a week; 300 mL nutrient solution was used for each seedling. Total nitrogen was determined by the Kjeldahl method, and chlorophyll content was determined by the acetone-ethanol mixture method. Nitrate reductase, glutamate synthase(GOGAT) and glutamine synthase(GS) activities were determined by spectrophotometry. Data were analyzed by Excel 2003 and the SPSS 19.0 software. 【Result】 Increase in seedling height and ground diameter exhibited a volcanic trend with the increases in the ammonium nitrogen ratio of the culture solution, and reached amaximum of 9.700 cm and 1.957 mm when m(NH~+_4-N)∶m(NO~-_3-N) was 5∶5. Results indicated that the mixed nitrogen forms were more beneficial for growth of Camellia oleifera seedlings when compared with the single nitrogen forms. The greatest dry weight was achieved when m(NH~+_4-N)∶m(NO~-_3-N)were 7∶3 and 5∶5, which were higher than those of pure nitrate or pure ammonium treatments. In addition, chlorophyll a, chlorophyll b, and total chlorophyll content in leaves reached a maximum of 1.190, 0.377, and 1.567 mg/g, respectively, at a m(NH~+_4-N)∶m(NO~-_3-N)ratio of 5∶5. The largest NR activity observed was 42.883 μg/(g·h),at a m(NH~+_4-N)∶m(NO~-_3-N)ratio of 5∶5. NR activity of ammonium treatment was lower when compared with that of nitrate treatment, which indicated that NO~-_3-N promoted NR activity. In addition, GS activity reached a maximum of 62.118 μmol/(g·h) when m(NH~+_4-N)∶m(NO~-_3-N)was 5∶5.GOGAT activity was increased with increased ammonium nitrogen ratio, and the highest value was 26.983 μmol/(g·h) at a m(NH~+_4-N)∶m(NO~-_3-N)ratio of 10∶0. Addition of exogenous nitrogen increased the total nitrogen content of leaves; total nitrogen content was the highest at 11.600 g/kg when the m(NH~+_4-N)∶m(NO~-_3-N)ratio was 3∶7. Total nitrogen content under mixed fertilization was higher when compared with that under pure nitrate and ammonium treatments, and showed a trend of initial increasing and then decreasing with increased ammonium nitrogen ratio. In the single nitrogen form T1 [m(NH~+_4-N)∶m(NO~-_3-N) = 0∶10] > T5 [m(NH~+_4-N)∶m(NO~-_3-N)= 10∶0], which indicated that the nitrate nitrogen promoted accumulation of total nitrogen in leaves in the single nitrogen form. Correlation analysis showed that growth of seedlings, total dry weight and total nitrogen content of leaves were significantly or significantly positively correlated with total chlorophyll content, NR activity and GS activity; increase in ground diameter was significantly and positively correlated with GOGAT activity; total dry weight was positively correlated with GOGAT activity.【Conclusion】 The application of nitrogen in different forms was more beneficial to the growth of Camellia oleifera seedlings, and the best m(NH~+_4-N)∶m(NO~-_3-N)ratio for growth was 5∶5.
引文
[1] 陈永忠.天赐之华[M].广州:世界图书出版公司,2014.
    [2] 庄瑞林.中国油茶[M].2版.北京:中国林业出版社,2008:3-51.
    [3] 陈永忠,杨小胡,彭邵锋,等.我国油茶良种选育研究现状及发展策略[J].林业科技开发,2005,19(4):1-4.DOI:10.3969/j.issn.1000-8101.2005.04.001.CHEN Y Z,YANG X H,PENG S F,et al.Current situation and development strategies of selection and breeding on Camellia oleifera in China[J].China Forestry Science and Technology,2005,19(4):1-4.
    [4] 彭邵锋,陈永忠,马力,等.油茶标准化体系建设存在的主要问题及发展对策[J].中国农学通报,2012,28(34):131-137.DOI:10.3969/j.issn.1000-6850.2012.34.023.PENG S F,CHEN Y Z,MA L,et al.Main problems and its development countermeasures for the construction of standardization system of oil-tea[J].Chinese Agricultural Science Bulletin,2012,28(34):131-137.
    [5] 王瑞,陈永忠.我国油茶产业的发展现状及提升思路[J].林业科技开发,2015,29(4):6-10.DOI:10.13360/j.issn.1000-8101.2015.04.002.WANG R,CHEN Y Z.Present situation and promotion strategy of the development of Camellia industry in China[J].China Forestry Science and Technology,2015,29(4):6-10.
    [6] 陈永忠,罗健,王瑞,等.中国油茶产业发展的现状与前景[J].粮食科技与经济,2013,38(1):10-12.DOI:10.3969/j.issn.1007-1458.2013.01.035.CHEN Y Z,LUO J,WANG R,et al.The present situation and prospect of the development of Camellia industry in China[J].Grain Science and Technology and Economy,2013,38(1):10-12.
    [7] 彭邵锋,陈永忠,马力,等.油茶产业主要经营模式及其影响因素[J].林业科技开发,2012,26(5):1-8.DOI:10.3969/j.issn.1000-8101.2012.05.001.PENG S F,CHEN Y Z,MA L,et al.Main pattens and influencing factors of Camellia oleifera[J].China Forestry Science and Technology,2012,26(5):1-8.
    [8] 杜旭华,周贤军,彭方仁,等.茶树不同器官氨同化关键酶活性测定及比较[J].经济林研究,2008,26(2):23-28.DOI:10.3969/j.issn.1003-8981.2008.02.005.DU X H,ZHOU X J,PENG F R,et al.Determination and analysis of ammonium assimilation enzyme activities in different organs of tea plants[J].Nonwood Forest Research,2008,26(2):23-28.
    [9] 杜旭华.氮素形态对茶树生长及氮素吸收利用的影响[D].南京:南京林业大学,2009.DU X H.Research on the effect of nitrogen form on growth physiology and nitrogen absorption-utilization in four tea varieties (Camellia sinensis L.)[D].Nanjing:Nanjing Forestry University,2009.
    [10] 陈永亮,刘明河,李修岭,等.不同形态氮素配比对红松幼苗光合特性的影响[J].南京林业大学学报(自然科学版),2005,29(3):77-80.DOI:10.3969/j.issn.1000-2006.2005.03.019.CHEN Y L,LIU M H,LI X L,et al.Effects of different nitrogen forms and ratios on the photosynthetic characteristics of Pinus koraiensis seedlings[J].Journal of Nanjing Forestry University(Natural Sciences Edition),2005,29(3):77-80.
    [11] LU Y L,XU Y C,SHEN Q R,et al.Effects of different nitrogen forms on the growth and cytokinin content in xylem sap of tomato (Lycopersicon esculentum Mill.) seedlings[J].Plant and Soil,2009,315(1/2):67-77.DOI:10.1007/s11104-008-9733-y.
    [12] ZHAO X J,BI G H,HARKESS R L,et al.Effects of different NH4∶NO3 ratios on growth and nutrition uptake in Iris germanica ‘Immortality’[J].Hort Science,2016,51(8):1045-1049.DOI:10.21273/hortsci.51.8.1045.
    [13] HACHIYA T,SAKAKIBARA H.Interactions between nitrate and ammonium in their uptake,allocation,assimilation,and signaling in plants[J].Journal of Experimental Botany,2016:erw449.DOI:10.1093/jxb/erw449.
    [14] O’BRIEN J A,VEGA A,BOUGUYON E,et al.Nitrate transport,sensing,and responses in plants[J].Molecular Plant,2016,9(6):837-856.DOI:10.1016/j.molp.2016.05.004.
    [15] WEI X Y,CHEN J J,ZHANG C Y,et al.Differential gene expression in rhododendron fortunei roots colonized by an ericoid mycorrhizal fungus and increased nitrogen absorption and plant growth[J].Frontiers in Plant Science,2016,7:1594.DOI:10.3389/fpls.2016.01594.
    [16] 孙敏红,卢晓鹏,曹雄军,等.不同氮素形态培养对枳橙幼苗硝酸还原酶活性及相关基因表达的影响[J].果树学报,2017,34(4):410-417.DOI:10.13925/j.cnki.gsxb.20160314.SUN M H,LU X P,CAO X J,et al.Effect of different forms of nitrogen on the activity of nitrate reductase and expression of the relative genes in Citrus sinensis × Poncirus trifoliate[J].Journal of Fruit Science,2017,34(4):410-417.
    [17] HEBERER J A,BELOW F E.Mixed nitrogen nutrition and productivity of wheat grown in hydroponics[J].Annals of Botany,1989,63(6):643-649.DOI:10.1093/oxfordjournals.aob.a087793.
    [18] 张彦东,范志强.不同形态N素对水曲柳幼苗生长的影响[J].应用生态学报,2000,11(5):665-667.ZHANG Y D,FAN Z Q.Effect of different nitrogen forms on growth of Fraxinus mandshurica seedlings[J].Chinese Journal of Applied Ecology,2000,11(5):665-667.
    [19] 金松南,艾呈祥,姚峰君,等.氮素形态对新高梨生长和果实品质的影响[J].落叶果树,2007,39(4):1-3.DOI:10.3969/j.issn.1002-2910.2007.04.001.JIN S N,AI C X,YAO F J,et al.Effect of nitrogen forms on growth and quality of ‘Niitaka’ pear[J].Deciduous Fruits,2007,39(4):1-3.
    [20] 洪法水,方能虎,赵贵文.不同形态氮素营养对小麦光合特性的影响[J].作物学报,2000,26(1):53-58.DOI:10.3321/j.issn:0496-3490.2000.01.013.HONG F S,FANG N H,ZHAO G W.The effects of different nitrogen nutrition forms on photosynthetic characteristics in wheat leaves[J].Acta Agronomica Sinica,2000,26(1):53-58.
    [21] 高廷东.光和不同形态氮互作对小麦幼苗碳、氮同化的影响[D].泰安:山东农业大学,2003.GAO T D.The interactive effect of light and different nitrogen forms on assimilation of carbon and nitrogen in wheat seedling[D].Taian:Shandong Agricultural University,2003.
    [22] XU Y C,CHEN W,SHEN Q R.Soil organic carbon and nitrogen pools impacted by long-term tillage and fertilization practices[J].Commun Soil Sci Plan,2007,38 (3/4):347-357.DOI:10.1080/00103620601172332.
    [23] 陈永忠,彭邵锋,王湘南,等.油茶高产栽培系列技术研究:配方施肥试验[J].林业科学研究,2007,20(5):650-655.DOI:10.3321/j.issn:1001-1498.2007.05.010.CHEN Y Z,PENG S F,WANG X N,et al.Study of high yield cultivation technologies of oil-tea camellia (Camellia oleifera):formulate fertilization[J].Forest Research,2007,20(5):650-655.
    [24] 陈隆升,陈永忠,杨小胡,等.低磷胁迫对不同油茶无性系幼苗生长及养分利用效率的影响[J].南京林业大学学报(自然科学版),2014,38(3):45-49.DOI:10.3969/j.issn.1000-2006.2014.03.009.CHEN L S,CHEN Y Z,YANG X H,et al.Effects of low phosphorus stress on the growth and nutrient utilization efficiency of different Camellia oleifera clones[J].Journal of Nanjing Forestry University (Natural Science Edition),2014,38(3):45-49.
    [25] 杨柳平,魏美华.幼龄油茶配方施肥对结实率的影响[J].安徽农学通报,2011,17(5):69-70.DOI:10.3969/j.issn.1007-7731.2011.05.030.YANG L P,WEI M H.Effect of formula fertilization on seed setting rate of young Camellia oleifera[J].Anhui Agricultural Science Bulletin,2011,17(5):69-70.
    [26] 巫流民,赵学民,夏莘,等.不同基肥处理对油茶优良无性系生长和产量的影响[J].经济林研究,2013,31(4):104-107,138.DOI:10.3969/j.issn.1003-8981.2013.04.017.WU L M,ZHAO X M,XIA X,et al.Effects of different base fertilizer treatments on growth and yield of fine clones in Camellia oleifera[J].Nonwood Forest Research,2013,31(4):104-107,138.
    [27] 潘晓杰,侯红波,廖芳,等.配方施肥对油茶中幼林营养生长的影响[J].中南林学院学报,2003,23(2):82-84.DOI:10.3969/j.issn.1673-923X.2003.02.012.PAN X J,HOU H B,LIAO F,et al.Effect of formulate fertilization on the vegetative growth of young oil-tree forest[J].Journal of Central South Forestry University,2003,23(2):82-84.
    [28] 胡国珠,高伟,许怡欣,等.江西成林油茶叶片春梢末期营养诊断[J].南京林业大学学报(自然科学版),2018,42(4) :193-197.DOI :10.3969 /j.issn.1000-2006.201705003.HU G Z,GAO W,XU Y X,et al.Study on leaf nutrient of Camellia oleifera in Jiangxi Province[J].Journal of Nanjing Forestry University (Natural Sciences Edition),2018,42(4) :193-197.
    [29] WANG R,CHEN L S,CHEN J J,et al.Different nitrate and ammonium ratios affect growth and physiological characteristics of Camellia oleifera Abel.seedlings[J].Forests,2018,9(12):784.DOI:10.3390/f9120784.
    [30] 鲍士旦.土壤农化分析[M].北京:中国农业出版社,2000:264-268.
    [31] 高俊凤.植物生理学实验指导[M].北京:高等教育出版社,2006:74-77.
    [32] 王学奎.植物生理生化实验原理和技术[M].北京:高等教育出版社:2006.
    [33] MIFLIN B J,HABASH D Z.The role of glutamine synthetase and glutamate dehydrogenase in nitrogen assimilation and possibilities for improvement in the nitrogen utilization of crops[J].Journal of Experimental Botany,2002,53(370):979-987.DOI:10.1093/jexbot/53.370.979.
    [34] 王宪泽,程炳嵩,张国珍.氮素形态与作物生育的关系及其影响因子[J].山东农业大学学报,1990,21(1):93-98.WANG X Z,CHENG B S,ZHANG G Z.Relationship between nitrogen forms and plant growth and its influence factors[J].Journal of Shandong Agricultural University,1990,21(1):93-98.
    [35] BASSIRIRAD H,CALDWELL M M,BILBROUGH C.Effects of soil temperature and nitrogen status on kinetics of 15NO-3 uptake by roots of field-grown Agropyron desertorum (Fisch.ex Link) Schult[J].New Phytologist,1993,123(3):485-489.DOI:10.1111/j.1469-8137.1993.tb03760.x.
    [36] CRAMER M D,LEWIS O A M,LIPS S H.Inorganic carbon fixation and metabolism in maize roots as affected by nitrate and ammonium nutrition[J].Physiologia Plantarum,1993,89(3):632-639.DOI:10.1034/j.1399-3054.1993.890334.x.
    [37] JAMPEETONG A,BRIX H.Nitrogen nutrition of salvinia natans:effects of inorganic nitrogen form on growth,morphology,nitrate reductase activity and uptake kinetics of ammonium and nitrate[J].Aquatic Botany,2009,90(1):67-73.DOI:10.1016/j.aquabot.2008.06.005.
    [38] BLOOM J,CHAPIN S,MOONEY A.Resource limitation in plants-an economic analogy[J].Annual Review of Ecology and Systematics,1985,16(1):363-392.DOI:10.1146/annurev.es.16.110185.002051.

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