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Methods of analysing the response of germination to constanttemperature are extended to alternating temperatures. The analysisis illustrated for seeds of pearl millet (Pennisetum typhoidesS. & H.) germinated on a thermal gradient plate in pairsof alternating temperatures ranging from 15?C to 47?C. Alternatingtemperatures had a small but systematic effect on germinationrate such that below 42 ?C, alternations in temperature hadno effect on the maximum fraction of seeds which germinatedin the population, but increases in temperature amplitude fromzero to ?8 ?C caused a small but systematic increase in therate of germination.  相似文献   
2.
The germination of pearl millet (Pennisetum typhoides S. &H.) seeds was investigated at constant temperatures between12 ?C and 47 ?C on a thermal gradient plate. The rate of germination increased linearly with temperaturefrom a base Tb to a sharply defined optimum To beyond whichthe rate decreased linearly with temperature, reaching zeroat Tm. The linearity of the response both above and below Toallowed time and temperature to be combined in a thermal timeat which a specified fraction of the seeds germinated. Withinthe population Tb and Tm were constant.  相似文献   
3.
Seeds of pearl millet were germinated on wet filter paper attemperatures up to 50 ?C. In one experiment, the temperaturewas held at 50 ?C during imbibition and was then lowered to32 ?C or 25 ?C. Germination rate and the maximum fraction ofseeds germinating (Gm) both decreased as the time of exposureto 50 ?C increased. In contrast, exposure to 50 ?C after imbibitionfor 8 h slowed germination but did not significantly reduceGm. When the ‘high’ temperature imposed after imbibitionwas reduced from 50 ?C to 45 ?C, there was a small reductionin the rate of germination but not in Gm. The responses haveimplications for the optimum time of sowing in the tropics whenmaximum daytime soil temperature at the depth of sowing is inthe range of 45–50 ?C. Key words: Pennisetum typhoides, Temperature, Germination  相似文献   
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