STUDIES ON THE USE OF MUTAGENIC AGENTS IN PLANT BREEDING. I. THE EFFECT OF SEED MOISTURE CONTENT ON SENSITIVITY TO X RAYS IN LUPINUS ANGUSTIFOLIUS
Seeds of Lupinus angustifolius were exposed to doses of to 18.1% (fresh wt). X/sub 1/ plant damage was measured in terms of reduction in height at 110 days from sowing, delay in flowering, and reduction in mean seed yield per plant. The three measures were found to be highly correlated. Survival was not significantly affected within the range of treatments used. Radiosensitivity increased progressively with decreasing moisture contents below 11.6%, seeds with 8.1-7.6% being four to five times as sensitive as those with 11.6-16% moisture content. The latter range represented a plateau of min sensitivity. Between 18.0 and 18.1% moisture, sensitivity again increased. Flowering time was the most sensitive measure of plant damage in that it was the only one to register consistently an effect due to the lowest x-ray dose (2.5 kr). This indicates that flowering time could be the most reliable, for comparative purposes, of the indices used. In addition it has the important advantage of being quickly and accurately scored. The magnitude of the protection against x-ray damage afforded by increased seed moisture can be expressed quantitatively in terms of a dose reduction factor (DRF), i.e., the factor by which the dose tolerated by the most sensitive seeds is less than that required to cause the same level of damage in the most tolerant seeds. DRF (in the present experiments between four and five for all three indices of x-ray damage) represents the damage caused to the seeds by 5 kr at 6-7% moisture as being approximates the same as that caused by 20 kr at 11-16% seed moisture. This is similar to the factor of about four previously found for barley seedling height and survival, but differs from the value of 10 found for seedling leaf span and survival in tomato. It is possible, however, that the extremely low moisture contents obtained in tomato seeds (as low as 1.2%) contributed to the difference, and that greater DRF might have been found for barley and lupins had lower min seed moisture contents been obtained. It is proposed that in subsequent generations, a corresponding DRF be derived for mutation rates. This should show whether or not the protective effect of moisture against plant damage in the X/sub 1/ is paralleled by a similar protection against mutation. If it is not, as appears to be the case in barley, it should be possible to define a particular range of seed moisture contents at which the highest mutation rates can be obtained. (BBB)
- Research Organization:
- Univ. of Western Australia, Nedlands
- Sponsoring Organization:
- USDOE
- NSA Number:
- NSA-17-035481
- OSTI ID:
- 4658766
- Journal Information:
- Australian J. Agr. Res., Vol. Vol: 14; Other Information: Orig. Receipt Date: 31-DEC-63
- Country of Publication:
- Country unknown/Code not available
- Language:
- English
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