...
首页> 外文期刊>Plant Ecology >Frost hardiness in the juvenile and adult life phase of ivy (Hedera helix L.)
【24h】

Frost hardiness in the juvenile and adult life phase of ivy (Hedera helix L.)

机译:常春藤的幼年和成年期的抗寒性

获取原文
获取原文并翻译 | 示例
           

摘要

The common ivy (Hedera helix L.) remains juvenile at its northern, eastern and altitudinal distribution limits although juvenile parts are largely killed by severe frost spells. In order to explain this discrepancy we investigated the seasonal course of frost resistance in various organs of juvenile and adult parts of the same H. helix plants. Maximum frost resistance of leaves (LT50 -25 degreesC) and axis (xylem parenchyma: LT50 -29 degreesC; cambium: LT50 -35 degreesC) was quite the same in juvenile and adult parts. Thus, H. helix is able to acquire full frost resistance in its juvenile phase. However, hardening of leaves was slower and dehardening of axis was faster in juvenile parts. Leaves of juvenile parts remain 2 to 4 K less resistant than those of adult parts until attaining the maximum resistance. This explains why mainly leaves of the juvenile parts were damaged following severe frost episodes with temperatures below -20 degreesC. The occurrence of H. helix in its juvenile phase at the frost-caused distribution limits may be explained as follows: Leaves of juvenile plants may occasionally be killed by severe frosts, but regeneration from dormant eyes enables survival. Loss of leaves may impede the change to the adult phase, but even if the plants became adult frost killing of rest buds (2 to 3 K less resistant than leaves) would induce rejuvenation.
机译:常见的常春藤(常春藤)在其北部,东部和海拔分布范围内仍处于幼年状态,尽管幼年部分主要被严重的霜冻杀死。为了解释这种差异,我们调查了同一螺旋植物的幼年和成年部分不同器官的抗霜冻季节过程。在幼年和成年部分,叶片(LT50 -25摄氏度)和轴(木质部薄壁组织:LT50 -29摄氏度;形成层:LT50 -35摄氏度)的最大抗冻性基本相同。因此,螺旋线在幼年期能够获得完全的抗冻性。但是,在幼鱼部分,叶片的硬化较慢,轴的淬灭较快。幼虫的叶片比成虫的叶片抵抗力低2至4 K,直到达到最大抵抗力为止。这就解释了为什么在温度低于-20摄氏度的严重霜冻事件后,主要破坏了幼虫的叶子。可能由于霜冻造成的分布极限而在其幼年期出现螺旋螺旋菌,原因如下:幼年植物的叶片偶尔会被严重的霜冻杀死,但休眠眼的再生能够存活。失去叶子可能会阻止其转变为成年期,但是即使植物变成了成年霜,也杀死了其余芽(抗性比叶子低2至3 K)也会引起复兴。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号