Soil Management Affects Expression of Genes Involved in Carbon and Nitrogen Metabolism in Maize

被引:2
|
作者
Roach, Erika [1 ]
Duiker, Sjoerd W. [2 ]
Chopra, Surinder [2 ]
机构
[1] 3419 W Lassen St, Boise, ID USA
[2] Penn State Univ, Dept Plant Sci, 408 ASI Bldg, University Pk, PA 16802 USA
关键词
SIGNAL-TRANSDUCTION PATHWAY; NO-TILL; GLUTAMINE-SYNTHETASE; CROP RESIDUES; NITRATE; ASSIMILATION; YIELD; CORN; AGRICULTURE; SENESCENCE;
D O I
10.2135/cropsci2015.08.0488
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Agronomic practices affect plant growth, development, and productivity through modifications of plant physiological processes. The effect of cover crop (hairy vetch [Vicia villosa Roth subsp. villosa]), no-tillage, and N fertilizer side-dressing on plant and soil health and expression of maize (Zea mays L.) genes was measured throughout the growing season. Expression of ACS, GS2, ICDH, NiR, and PEPC genes involved in C and N metabolism was determined. No-tillage led to a greener and better hydrated maize crop at V6, greater soil moisture at V6 and silking, and greater plant height throughout the season. Cover crop resulted in higher leaf N at V6, greener crop throughout the season, and taller plants at silking and grain fill. There were signs of N deficiency in no-tillage from silking onward, which was reflected in decreased greenness at silking and reduced soil nitrate at grain fill. Expression of GS2, NiR, and PEPC was stimulated by tillage later in the season, possibly as a result of greater soil N availability or greater gene expression because fewer leaves remained on these plants. Grain yields were unaffected by tillage but increased by cover crop. It appeared that low-moisture stress in no-tillage led to greater plant vigor, but this did not translate into increased yield because of N stress. This study highlights the need to have a better understanding of global gene expression by soil management practices, which can help select and introgress specific genes for greater exploitation of the genetic potential of maize especially when grown under no-tillage.
引用
收藏
页码:1841 / 1856
页数:16
相关论文
共 50 条
  • [1] Soil fertilization affects the abundance and distribution of carbon and nitrogen cycling genes in the maize rhizosphere
    Matthew Chekwube Enebe
    Olubukola Oluranti Babalola
    AMB Express, 11
  • [2] Soil fertilization affects the abundance and distribution of carbon and nitrogen cycling genes in the maize rhizosphere
    Enebe, Matthew Chekwube
    Babalola, Olubukola Oluranti
    AMB EXPRESS, 2021, 11 (01)
  • [3] Expression map for genes involved in nitrogen and carbon metabolism in alfalfa root nodules
    Trepp, GB
    Temple, SJ
    Bucciarelli, B
    Shi, LF
    Vance, CP
    MOLECULAR PLANT-MICROBE INTERACTIONS, 1999, 12 (06) : 526 - 535
  • [4] Expression of genes related to nitrogen metabolism in maize grown under organic and inorganic nitrogen supplies
    Guo, Song
    Sun, Wen-yan
    Gu, Ri-liang
    Zhao, Bing-qiang
    Yuan, Li-xing
    Mi, Guo-hua
    SOIL SCIENCE AND PLANT NUTRITION, 2015, 61 (02) : 275 - 280
  • [5] Root expression of nitrogen metabolism genes reflects soil nitrogen cycling in an organic agroecosystem
    Bowles, Timothy M.
    Raab, Philipp A.
    Jackson, Louise E.
    PLANT AND SOIL, 2015, 392 (1-2) : 175 - 189
  • [6] Root expression of nitrogen metabolism genes reflects soil nitrogen cycling in an organic agroecosystem
    Timothy M. Bowles
    Philipp A. Raab
    Louise E. Jackson
    Plant and Soil, 2015, 392 : 175 - 189
  • [7] Effect of post-silking drought stress on the expression profiles of genes involved in carbon and nitrogen metabolism during leaf senescence in maize (Zea mays L.)
    Yang, Miao
    Geng, Mengyao
    Shen, Pengfei
    Chen, Xiaohong
    Li, Yajun
    Wen, Xiaoxia
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2019, 135 : 304 - 309
  • [8] Dof1 and Dof2 transcription factors are associated with expression of multiple genes involved in carbon metabolism in maize
    Yanagisawa, S
    PLANT JOURNAL, 2000, 21 (03): : 281 - 288
  • [9] Glycerol kinase deletion affects expression levels of genes involved in carbohydrate and lipid metabolism.
    Rahib, L
    Dipple, KM
    JOURNAL OF INVESTIGATIVE MEDICINE, 2005, 53 (01) : S158 - S158
  • [10] Maize Source Leaf Adaptation to Nitrogen Deficiency Affects Not Only Nitrogen and Carbon Metabolism But Also Control of Phosphate Homeostasis
    Schlueter, Urte
    Mascher, Martin
    Colmsee, Christian
    Scholz, Uwe
    Braeutigam, Andrea
    Fahnenstich, Holger
    Sonnewald, Uwe
    PLANT PHYSIOLOGY, 2012, 160 (03) : 1384 - 1406