目的在细胞学和分子生物学水平上探讨红升丹提毒祛腐作用机理。
OBJECTIVE To investigate into the mechanism of Hongshengdan in removing toxin and slough at the level of cytology and molecular biology.
结果表明,光照影响各满江红品系的生长速率与抗霉腐病能力,随着光照强度减弱,各品系的生长速率和抗霉腐病能力都下降。
The results showed that illumination affected the growth rate and resistance of Azolla against black rot disease, both of which were lower under weak light (Tables 1,2).
结果表明,光照影响各满江红品系的生长速率与抗霉腐病能力,随着光照强度减弱,各品系的生长速率和抗霉腐病能力都下降。
The results showed that illumination affected the growth rate and resistance of Azolla against black rot disease, both of which were lower under weak light (Tables 1,2).
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