| 1. | The physiological effects of calcium on ethylene biosynthesis and signal transduction in plants 钙在植物乙烯生成及信号传递中的生理作用 |
| 2. | Changes of - l - arabinofuranosidase activity and relevant factors of ethylene biosynthesis during peach ripening and softening 阿拉伯呋喃糖苷酶活性和乙烯合成相关因子的变化 |
| 3. | Effects of acetylsalicylic acid on the postharvest senescence process and ethylene biosynthesis of yulu peach fruit 乙酰水杨酸对采后玉露桃果实成熟衰老进程和乙烯生物合成的影响 |
| 4. | Effect of calcium and calmodulin on the expression of genes in ethylene biosynthesis and ethylene signal transduction 钙与钙调素对番茄果实乙烯生物合成和信号转导基因表达的调控 |
| 5. | Studies have been made on the effect of low ethylene and low pressure treatment on post - harvested ethylene biosynthesis of " huoshi " persimmon fruit under the condition of 10 1 摘要在10 1的条件下,研究了低乙烯减压处理对火柿采后乙烯生物合成的影响。 |
| 6. | Because ethylene is tightly relative to flower senescence and fruit ripening , it is very important in business to inhibite ethylene biosynthesis to delay senescence 由于乙烯与植物的花、果的成熟和衰老有密切关系,控制乙烯的生物合成就可延缓其衰老,因而有重要的商业价值。 |
| 7. | Acc synthase is the rate - limiting enzyme of ethylene biosynthesis , and the rate of ethylene biosynthesis is tightly controlled by the activeness of acc synthase in plants Acc合酶( acs )是高等植物乙烯生物合成途径中的限速酶,它在植物组织内的活性大小往往决定着乙烯产生的速率。 |
| 8. | Abstract : in recent years , great progress has been made in the research field of plant hormone ethylene . this review focuses on the advances in the molecular biological research areas of ethylene biosynthesis pathway , ethylene signal transduction pathway and the mechanism of ethylene responese 文摘:本文对植物激素乙烯的生物合成、乙烯传号信导途径、乙烯反应作用机制等方面的分子生物学进行了评述。 |
| 9. | ( 2 ) compared with wild - type torenia fournier , antisense acc synthase gene transformated plants of torenia fournieri had the following changes : the rate of ethylene biosynthesis dramatically decreased in the plants . cholrophyll content in the leaves is 1 . 15 times of that of the wild - type torenia fournier leaves . the transformed plants had more flowers ( 2 )反义acs转基因蓝猪耳与野生型的蓝猪耳相比较,乙烯的生成速率显著下降:叶片叶绿素的含量提高,是野生型的1 . 15倍;花开的更多,花的寿命增加一天;单个果实的种子的数量和重量均有所增加;叶片多胺的含量显著高于野生型的蓝猪耳;植株对氧化胁迫、酸胁迫、干旱胁迫的抗性均有增加。 |