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不同浓度硝酸盐对玉米自交系苗期生长发育的影响 被引量:1

Effects of Different Nitrate Concentrations on Maize Inbred Line Growth and Development
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摘要 本研究以玉米骨干自交系18-599为材料,采用改良霍格兰氏营养液配方,去除铵离子,不同浓度硝酸盐作为限制因子,处理发芽后去胚乳的玉米幼苗。21 d后,测定根条数、根干重、茎叶干重、叶面积以及叶绿素含量等玉米生长发育指标,利用SPSS13.0进行统计分析。结果表明,根条数、根干重与硝酸盐浓度呈极显著负相关,相关系数分别为-0.926和-0.934;回归分析显示玉米骨干自交系18-599苗期生长发育的最佳NO3-浓度为9.6 mol/L,促进根系生长,促进茎叶生长、提高叶面积指数和叶绿素含量,有利于光合作用,积累产量形成所需的大量物质从而促进后期玉米的高产和稳产。 In this paper, taken the maize inbred line of 18-599 as tested materials, the improved Hoaglands' nutritive medium without NH4+ was used to treat 18-599 seedlings without endosperm with different concentrations of nitrate which were replaced weekly as the only limiting factors. After 21 days, the maize growth and development traits of root numbers and dry weight, stem-leaf dry weight, leaf area, chlorophyll contents and so on were investigated, and the relations and interaction between them were analyzed with SPSS13.0 statistical software. The results showed that root numbers and dry weight were very significantly negative correlation with nitrate concentrations, and the coefficients were -0. 926 and -0. 934, respectively. Regression analysis indicated that the optimal NO3- concentration for maize inbred line of 18-599 seedling growth was 9.6 mol/L, which could promote the roots, stem-leaf growth,increase chlorophyll content, improve the corn seedling photosynthesis, and accumulate material so as to get high yield of corn.
出处 《西南农业学报》 CSCD 北大核心 2012年第3期945-949,共5页 Southwest China Journal of Agricultural Sciences
关键词 硝酸盐 浓度 玉米 生长发育 Nitrate Concentration Maize Growth and development
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  • 1Ramos C. Effect of agricultural practices on the nitrogen losses in the environment [ J]. Nutrient Cycling in Agroecosystems, 1995,43 ( 1 ) : 183 - 189.
  • 2郑祖平,黄玉碧,田孟良,谭振波.不同供氮水平下玉米株型相关性状的QTLs定位和上位性效应分析[J].玉米科学,2007,15(2):14-18. 被引量:19
  • 3Charles R Frink, Paul E Waggoner, Jesse H Ausubel. Nitrogen fer- tilizer: Retrospect and prospect [J]. PNAS, 1999, 96(4) :1175 - 1180.
  • 4London J G. Nitrogen study fertilizes fears of pollution [ J]. Nature, 2005, 433:791.
  • 5Michael Beman J, Kevin R Arrigo, Pamela A Matson. Agricultural runoff" fuels large ph),toplankton blooms in vulnerable areas of the o- cean [J].Nature, 2005, 434:211 -214.
  • 6STULEN, M PEREZ-SOBA, L J DE KOK,et al. Impact of gaseous nitrogen deposition on plant functioning[ J]. New Phytologist, 2008, 139( 1 ) :61 -70.
  • 7Yan X, P W, H Q L, et al. Plant Nutriomics in China: An Over- view [J]. Annals of Botany, 2006,98:473 -482.
  • 8刘明钟 张洪源 等.施肥对小麦籽粒营养品质和产量的影响[J].江苏农业学报,1987,3(3):31-37.
  • 9Loudet O, Chaillou S, Merigout P. Quantitative Trait Loci Analysis of Nitrogen Use Efficiency in Arabidopsis [ J ]. Plant Physiology, 2003, 131:345 - 358.
  • 10XINGMING LIAN, YONGZHONG XING, HUA YAN, et al. QTLs for low nitrogen tolerance at seedling stage identified using a recom- binant inbred line population derived from an elite rice hybrid[ J]. Theoretical and Applied Genetics, 2005, 112( 1 ) :85 -96.

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  • 1郭亚芬,米国华,陈范骏,张福锁.硝酸盐供应对玉米侧根生长的影响[J].植物生理与分子生物学学报,2005,31(1):90-96. 被引量:37
  • 2郭亚芬,米国华,陈范骏,张福锁.局部供应硝酸盐诱导玉米侧根生长的基因型差异[J].植物营养与肥料学报,2005,11(2):155-159. 被引量:22
  • 3Lynch J. Root architecture and plant productivity[J]. PlantPhysiol., 1995, 109(1) : 7-13.
  • 4Drew M C. Nutrient supply and the growth of the seminal root system in barley. I. The effect of nitrate concentration on the growth of axes and laterals [J]. J. Exp. Bot., 1973, 24(6) : 1189-1202.
  • 5Eghball B, Maranville J W. Root development and nitrogen influx of corn genotypes grown under combined drought and nitrogen stresses [J]. Agron. J., 1993, 85( 1): 47-152.
  • 6Scheible W R, Lauerer M, Schulze E D, et al.. Accumulation of nitrate in the shoot acts as a signal to regulate shoot-root allocation in tobacco [J]. Plant J., 1997, 11(4) : 671-691.
  • 7Stitt M, Feil R. Lateral root frequency decreases when nitrate accumulates in tobacco transformants with low nitrate reductase activity : consequences for the regulation of biomass partitioning between shoots and rootl [J]. Plant Soil, 1999, 215(2) : 143 -153.
  • 8Zhang H, Jennings A, Barlow P W, et al.. Dual pathways for regulation of root branching by nitrate [ J ]. Proc. Natl. Acad. Sci. USA, 1999, 96( 11): 6529-6534.
  • 9Wang Y, Mi G H, Chen F J, et al.. Response of root morphology to nitrate supply and its contribution to nitrogen uptake in maize [J]. J. Plant Nutr., 2004, 27( 12): 2189 -2202.
  • 10Heidi T, Heuberger, Jennifer G, et al.. Contribution of N uptake and morphological root characteristic to N efficiency in tropical maize cultivars [ A ]. In: Overcoming Stresses in Crop Production: 2 [ C ]. Deutscher Tropentag: Pests and Abiotic Stresses, 2000, 1-9.

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