Department of Botany, Tel-Aviv University, Tel-Aviv, Israel and the Volcani Institute of Agricultural Research, Bet-Dagan, Israel.
Plant Physiol. 1972 Sep;50(3):378-81. doi: 10.1104/pp.50.3.378.
The relationship between ethylene and growth was investigated in Ficus sycomorus L. A marked increase in ethylene emanation preceeded all the phases of rapid growth and ripening of the syconium.Gashing of fig during the 16th to 22nd day of syconium development induced a 50-fold increase in the rate of ethylene emanation within the 1st hour, and a 2- to 3-fold increase in diameter and weight, followed by ripening within 3 days. Application of ethylene, Ethephon, and auxins caused the same effects as wounding. Since the auxin and Ethephon induced ethylene emanation, it is concluded that ethylene is mainly responsible for the marked morphological changes caused by gashing. The stage of slow growth of this fruit is characterized by slow emanation of ethylene, low sensitivity to exogenous ethylene, and no morphological responses to gashing.
我们研究了乙烯与番荔枝生长的关系。乙烯的排放明显增加,先于番荔枝迅速生长和成熟的所有阶段。在第 16 至 22 天的番荔枝发育期间,对无花果树进行切割,导致第 1 小时内乙烯排放率增加 50 倍,直径和重量增加 2-3 倍,随后在 3 天内成熟。乙烯、乙烯利和植物生长素的应用产生了与切割相同的效果。由于生长素和乙烯利诱导乙烯排放,因此可以得出结论,乙烯主要负责由切割引起的明显形态变化。这种果实的缓慢生长阶段的特点是乙烯排放缓慢,对外源乙烯的敏感性低,以及对切割没有形态反应。