首页 | 本学科首页   官方微博 | 高级检索  
     

牡丹对不同强度和频度去叶的补偿性生长响应
引用本文:赵威,周大彪,刘改秀. 牡丹对不同强度和频度去叶的补偿性生长响应[J]. 安徽农业科学, 2008, 36(27)
作者姓名:赵威  周大彪  刘改秀
作者单位:1. 河南科技大学农学院,河南洛阳,471003
2. 中国洛阳国家牡丹基因库,河南洛阳,471006
基金项目:河南科技大学校科研和教改项目,SRTP项目
摘    要:[目的]找出有利于牡丹补偿性生长的最佳条件。[方法]对牡丹进行不同强度和频度去叶处理,观察幼苗去叶后的地上干物质积累量、更新芽数、茎叶比及剩余叶片叶绿素浓度的变化。[结果]20 d/次的去叶频度、40%~60%去叶强度时,牡丹的累积生物量最大;10d/次的去叶频度、60%~80%去叶强度时,更新芽数目最多;轻中度去叶(20%~60%),茎叶比显著低于对照;20 d/次去叶频度、40%~60%去叶强度时,剩余叶片的叶绿素浓度显著高于对照。[结论]适当的去叶强度(60%)和较低的去叶频度(20 d/次)最有利于牡丹的生长和再生,表现为超补偿性生长。

关 键 词:牡丹  去叶强度  去叶频度  补偿性生长

Compensory Grow Responses to Defoliation of Peony under Different Intensity and Frequency Conditions
ZHAO Wei et al. Compensory Grow Responses to Defoliation of Peony under Different Intensity and Frequency Conditions[J]. Journal of Anhui Agricultural Sciences, 2008, 36(27)
Authors:ZHAO Wei et al
Abstract:[Objective]It was aimed to find optimum condition for compensatory growth of peony.[Method]The different defoliation intensity and frequencies of penoy were conducted to observe accumulative aboveground dry matter,regeneration bud number,stem-leaf ration and chlorophyll concentration change in residual leaves.[Result]When the defoliation was conducted every 20 d once and defoliaton frequency was from 40%-60%,the accumulative biomass was biggest while when When the defoliation was conducted every 10d once and defoliation frequency was from 60%-80% the regeneration bud number was most.The stem-leaf ratio of mild and moderate defoliation(20%-60%) was lower than that of control group.When the defoliation was conducted every 20 d once and defoliation frequency was from 40%-60%,the chlorophyll concentration in residual leaves was obviously higher than that of control group.[Conclusion]The proper defoliation intensity(60%) and lower defoliation frequency(defoliation was conducted every 20 d) were most favorable for growth and regeneration of peony which was compensatory growth.
Keywords:Peony  Defoliation intensity  Defoliation frequency  Compensatory growth
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号