PHOTOPERIOD AND ROOT-ZONE TEMPERATURE - INTERACTING EFFECTS ON GROWTH AND MINERAL NUTRIENTS OF MAIZE

被引:19
作者
MOZAFAR, A
SCHREIBER, P
OERTLI, JJ
机构
[1] Institute of Plant Sciences, Divison of Agronomy, Swiss Federal Institute of Technology (ETH), ETH Zentrum, Zürich
关键词
MINERAL NUTRITION; PHOTOPERIOD; STRESS PHYSIOLOGY; TEMPERATURE; ZEA-MAYS L;
D O I
10.1007/BF00010545
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Factorial effects of photoperiod (6, 12 and 18 h) and root-zone temperatures (9, 15 and 21-degrees-C) on the growth and mineral nutrient concentration and partitioning in maize (Zea mays L.) were investigated. Strong interactions were observed between photoperiod and root-zone temperature on the growth and concentration of numerous mineral elements in the plant tops and roots. For example, a threefold increase in photoperiod (from 6 to 18 h) did not affect the growth of tops or roots if the root-zone temperature was 9-degrees-C but increased them each by eightfold if the root-zone temperature was 21-degrees-C. On the other hand, raising the root-zone temperature from 9 to 21-degrees-C increased the growth of tops and root each by ca. threefold when plants were grown with 6 h of light. At 18 h photoperiod, however, plant growth was increased 20- to 30-fold by the same rise in the root-zone temperature. The concentrations of different mineral elements in the roots and tops were affected quite differently by the interacting effects of photoperiod and root-zone temperature. In general, increasing the photoperiod at a given root-zone temperature decreased the concentrations of elements while increasing the root-zone temperature at a given photoperiod increased the concentrations of most elements in both roots and tops. The exceptions were K and B which reacted opposite to each other: K concentration in both tops and roots was relatively insensitive to photoperiod but very sensitive to root-zone temperature and the reverse was true for boron. The relative insensitivity of plant growth to increased day length as long as the roots are subjected to suboptimal (low) soil temperatures may have survival significance and point to the predominant role of root temperature over that of day length in the early growth of maize. A possible mechanism by which photoperiod and root-zone temperature might interactively alter the nutrient uptake by the roots is discussed.
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页码:71 / 78
页数:8
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