TOWARDS THE RELIABLE PREDICTION OF TIME TO FLOWERING IN 6 ANNUAL CROPS .3. COWPEA VIGNA-UNGUICULATA

被引:25
作者
ELLIS, RH
LAWN, RJ
SUMMERFIELD, RJ
QI, A
ROBERTS, EH
CHAY, PM
BROUWER, JB
ROSE, JL
YEATES, SJ
机构
[1] CSIRO,DAVIES LAB,TOWNSVILLE,QLD 4814,AUSTRALIA
[2] VICTORIAN INST DRYLAND AGR,HORSHAM,VIC 3401,AUSTRALIA
[3] QUEENSLAND DEPT PRIMARY IND,WARWICK,QLD 4370,AUSTRALIA
[4] DEPT PRIMARY IND & FISHERIES,KATHERINE,NT 0851,AUSTRALIA
[5] CSIRO,DIV TROP CROPS & PASTURES,CUNNINGHAM LAB,ST LUCIA,QLD 4067,AUSTRALIA
关键词
D O I
10.1017/S0014479700023814
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Six genotypes of cowpea (Vigna unguiculata) of diverse origin were sown on various dates at five locations in Australia in order to provide a range of photothermal environments. Times from sowing to first flowering (f) ranged between 36 d and 145 d; pre-flowering temperature and photoperiod means varied from 15.7-degrees to 29.2-degrees-C and from 11.6 to 15.5 h d-1. In five genotypes there was no effect of photoperiod on rate of progress towards flowering (1/f), but the relation between 1/f and mean temperature was always positive. The base temperatures (at which 1/f = 0) varied between 8.1-degrees and 10.4-degrees-C. The rankings of parameter estimates among four photoperiod-insensitive genotypes common to this study and earlier research in controlled environments were almost identical, and there was generally good agreement between field observations and predictions from controlled environments once hourly' temperatures were used to describe the natural environment. When cowpea plants were exposed to temperatures below 3-degrees-C, flowering was delayed beyond expected values, presumably as a result of chilling damage. In one genotype, rate of progress towards flowering was affected by both temperature and photoperiod, and relations between 1/f and the photothermal environment were described by a two-plane linear model of similar form to that determined in an earlier controlled environment study. These latest findings support the utility of such linear models for the prediction of crop phenology in the field and for the genetic characterization of photothermal flowering response in annual crops.
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页码:17 / 29
页数:13
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