ZHANG Yajuan,YAN Fang,LI Yihua,et al.Effect of Different Nitrogen Levels on Photosynthesis Characteristics,Chlorophyll Content and Quality of Allium sativum L.‘Minlezipi’[J].Northern Horticulture,2016,40(07):31-34.[doi:10.11937/bfyy.201607008]
不同施氮水平对“民乐紫皮”大蒜光合特性与叶绿素含量及品质的影响
- Title:
- Effect of Different Nitrogen Levels on Photosynthesis Characteristics,Chlorophyll Content and Quality of Allium sativum L.‘Minlezipi’
- 文献标志码:
- A
- 摘要:
- 为了探讨不同施氮水平对大蒜光合作用及品质特征的影响,以“民乐紫皮”大蒜为试材,采用盆栽试验,研究了4种施氮水平下其光合特性参数、叶绿素含量和品质指标的变化。结果表明:在0~240 kg/hm2〖KG-*4〗施氮水平范围内,随施氮量的增加,大蒜叶片叶绿素含量、净光合速率、气孔导度、胞间CO2〖KG-*4〗浓度及蒸腾速率随施氮量的增加而升高,至施氮量240 kg/hm2〖KG-*4〗时达最高,其后降低。大蒜鳞茎品质指标大蒜素以240 kg/hm2〖KG-*4〗氮处理最高,除6 g/盆施氮处理以外分别比不施氮处理增加3.98%、4.56% 和6.82%。说明增施一定的氮肥能显著提高大蒜的光合特性和叶绿素含量,改善光合性能,最终影响到大蒜的品质。所有处理中以240 kg/hm2〖KG-*4〗对叶片净光合速率、叶绿素含量和大蒜素的效果最佳,表明240 kg/hm2〖KG-*4〗的施氮量更有助于降低大蒜的蒸腾作用,提高叶片的叶绿素含量、光合速率和水分利用效率,并获得较高的大蒜品质。
- Abstract:
- In order to investigate the effects of different nitrogen levels on photosynthesis and quality characteristics of garlic,the Allium sativum L.‘Minlezipi’ was used as test material,using of pot experiment to study under 4 kinds of nitrogen levels of photosynthetic parameters,chlorophyll content and quality indicators change.The results showed that the chlorophyll content,net photosynthetic rate(Pn),stomatal conductance(Gs),intercellular CO2 concentration (Ci) andtranspiration rate(E) were increased in nitrogen rate range of 0-240 kg/hm2.The parameters were the highest at level of 240 kg/hm2 nitrogen application and then reduced.The highest of garlic allicin was 240 kg/hm2 nitrogen supply.Except 6 g/pot N treatment,nitrogen treatment increased 3.98%,4.56% and 6.82%,respectively.It was said that adding some N fertilizer could significantly improve photosynthetic characteristics and content of chlorophyll of garlic,the photosynthetic performance improvement,and ultimately affect the quality of garlic.The 240 kg/hm2 treatment was the best on leaf net photosynthetic rate,chlorophyll content and allicin at all treatments.The 240 kg/hm2 treatment increased the chlorophyll content,photosynthetic rate andtranspiration rate,and obtain a higher of garlic quality.
参考文献/References:
[1]杨智超,李彩霞,高海宁,等.海拔对民乐紫皮大蒜植株光合特性及鳞茎品质的影响[J].甘肃农业大学学报,2014,49(2):106-111. [2]白宝璋,徐仲.植物生理学[M].北京:中国科学技术出版社,1995:65-66. [3]BOYER J S.Plant productivity and environment[J].Science,1982,218:443-448. [4]ZHANG Y J,XIE Z K,WANG Y J,et al.Effect of water stress on leaf photosynthesis,chlorophyll content and growth in oriental lily[J].Russian Journal of Plant Physiology,2011,58(5):844-850. [5]TEZARA W,MITCHELL V J,DRISCOLL S D,et al.Water stress inhibits plant photosynthesis by decreasing coupling factor and ATP [J].Nature,1999,401:914-917. [6]BARBAULT R,DOUCET M C.Mycorrhizas and seedling growth of slow-growing sclerophylls from nutrient-poor environments[J].Acta Oecol,1993,14:577-587. [7]SARDANS J,ROD F,PEUELAS J.Effects of water and a nutrient pulse supply on Rosmarinus officinalis growth,nutrient content and flowering in the field[J].Environ Exp Bot,2005,53:1-11. [8]胡明芳,田长彦,马英杰.不同水肥条件下棉花苗期的生长、养分吸收与水分利用状况[J].干旱地区农业研究,2002,20(3):35-37. [9]GALLARDO A,COVELO F.Spatial pattern and scale of leaf N and P concentration in a Quercus robur population[J].Plant Soil,2005,273:269-277. [10]吴福忠.干旱胁迫与施N 条件下白刺花(Sophora davidii)幼苗生长及其适应机制[D].成都:中国科学院成都生物研究所,2008. [11]FIFE D N,NAMBIARM E K S.Changes in the canopy and growth of Pinus radiate in response to nitrogen supply[J].Forest Ecol Manage,1997,93:137-152. [12]SANEOKA H,MOGHAIEB R E A,PREMACHANDRA G S,et al.Nitrogen nutrition and water stress effects on cell membrane stability and leaf water relations in Agrostis palustris Huds[J].Environ Exp Bot,2004,52:131-138. [13]CHAPIN F S.Integrated responses of plants to stress:A centralized system of physiological responses[J].Bio Science,1991,40:29-36. [14]ARORA A,SINGH V P,MOHAN J.Effect of nitrogen and water stress on photosynthesis and nitrogen content in wheat[J].Biol Plantarum,2001,44(1):153-155. [15]EGHBALL B,MARANVILLE J W.Root development and nitrogen in flux of corn genotypes grown under combined drought and nitrogen stresses[J].Agron J,1993,85:147-152. [16]陈昆,刘世琦,张自坤,等.钾素营养对大蒜生长、光合特性及品质的影响[J].植物营养与肥料学报,2011,17(2):506-512. [17]张文君,刘兆辉,江丽华,等.氮素对大蒜生长及养分吸收的影响[J].中国蔬菜,2006(12):20-23. [18]李雪松,崔超,陈乃存.氮肥对影响大蒜二次生长的效果试验[J].上海蔬菜,2008(4):94-95. [19]LICHTENTHALER H K.Chlorophylls and carotenoids:pigments of photosynthetic biomembranes[J].Methods Enzymol,1987,148:350-382. [20]朱薿,应惠芳.大蒜中大蒜素含量简便测定法[J].食品科技,2008(8):202-204. [21]魏猛,唐忠厚,陈晓光,等.不同氮素水平对叶菜型甘薯光合作用及生长特性的影响[J].江苏农业学报,2014,30(1):87-91. [22]许大全.光合作用气孔限制分析中的一些问题[J].植物生理学通讯,1997,33(4):241-244. [23]邹振华,党宁,王惠群,等.不同氮素水平对营养生长期南荻植株光合特性的影响[J].作物研究,2012,26(3):255-259. [24]胡单,杨永红.不同施氮对冬青稞幼苗光合色素·生物量及产量的影响[J].安徽农业科学,2011,39(24):14561-14563,14585. [25]张丽霞,张国强.大蒜素含量的测定方法研究[J].湖北农业科学,2009,48(3):713-714.
相似文献/References:
[1]吕亚慈.镀锌化工废水对大蒜根尖细胞有丝分裂的影响[J].北方园艺,2013,37(04):36.
[2]杨会芳,梁新安,常介田,等.叶面喷施硒肥对不同蔬菜硒富集及产量的影响[J].北方园艺,2014,38(11):158.
YANG Hui-fang,LIANG Xin-an,CHANG Jie-tian,et al.Effects of Foliar Spraying of Selenium Fertilizer on Selenium Enrichment of Different Vegetables and Yield[J].Northern Horticulture,2014,38(07):158.
[3]高素玲,张慎璞,琚园园,等.不同用量硫酸钙肥对石灰性土壤大蒜生长的影响[J].北方园艺,2014,38(14):10.
GAO Su-ling,ZHANG Shen-pu,JU Yuan-yuan,et al.Effect of Different Amount of Sulfuric Acid Calcium Fertilizers on Garlic Growth in Calcareous Soils[J].Northern Horticulture,2014,38(07):10.
[4]申顺先,张慎璞,邵秀丽,等.异地换种对大蒜生长和产量的影响[J].北方园艺,2014,38(04):1.
SHEN Shun-xian,ZHANG Shen-pu,SHAO Xiu-li,et al.Effect of the Foreign Location Seed Change on the Growth and Yield of Garlic[J].Northern Horticulture,2014,38(07):1.
[5]武延生.多倍体大蒜胚状体诱导条件研究初报[J].北方园艺,2013,37(11):110.
WU Yan-sheng.Study on the Induction Conditions of Polyploid Garlic Embryoid[J].Northern Horticulture,2013,37(07):110.
[6]苏艳玲,巫东堂,刘夏薇.大蒜和生姜复配液对蔬菜保鲜效果的影响[J].北方园艺,2013,37(11):122.
SU Yan-ling,WU Dong-tang,LIU Xia-wei.Research on the Fresh Effect of Vegetables Using the Compound Liquid of Galic and Ginger[J].Northern Horticulture,2013,37(07):122.
[7]王鼎慧,贾鉄金,崔成日,等.阿城地区大蒜引种栽培试验[J].北方园艺,2013,37(03):62.
WANG Ding-hui,JIA Tie-jin,CUI Cheng-ri,et al.Comparison Test on Introducing Some Garlic Varieties into Acheng Area[J].Northern Horticulture,2013,37(07):62.
[8]冉茂林,彭化贤,刘独臣,等.大蒜套种萝卜对萝卜病害及品质的影响[J].北方园艺,2012,36(17):41.
RAN Mao-Lin,PENG Hua-xian,LIU Du-chen,et al.Influence on the Disease and Quality of Radish in the Garlic Interplant Radish[J].Northern Horticulture,2012,36(07):41.
[9]刘素英.栽培措施对大蒜品质及其产量的影响[J].北方园艺,2012,36(18):35.
LIU Su-ying.Effect of the Cultivation Pattern on Garlic Yield and Quality[J].Northern Horticulture,2012,36(07):35.
[10]张荣,张洋,吴丽军,等.大蒜干物质积累与硒的吸收和分配及累积特性研究[J].北方园艺,2012,36(23):30.
ZHONG Rong,ZHONG Yang,WU Li-jun,et al.Study on Dry Matter Accumulation and Selenium’s Uptake andDistribution and Accumulation of Garlic[J].Northern Horticulture,2012,36(07):30.
备注/Memo
第一作者简介:张亚娟(1979-),女,甘肃会宁人,博士,副教授,现主要从事植物生理生态等研究工作。E-mail:yajuan418@163.com.责任作者:王勤礼(1966-),男,硕士,教授,现主要从事园艺植物育种及栽培的教学与研究工作。E-mail:wangqinli66@163.com.基金项目:甘肃省教育厅甘肃省高等学校科研资助项目(2013A-112)。