首页> 外文会议>Annual Meeting of The Florida State Horticultural Society >Leaf Net CO_2 Assimilation and Electrolyte Leakage and Alcohol Dehydrogenase Activity in Roots of Mamey Sapote (Pouteria sapota) Trees as Affected by Root Zone Oxygen Content
【24h】

Leaf Net CO_2 Assimilation and Electrolyte Leakage and Alcohol Dehydrogenase Activity in Roots of Mamey Sapote (Pouteria sapota) Trees as Affected by Root Zone Oxygen Content

机译:由根区氧含量影响的MAMEY SAPOTE(Pouteria SAPOTA)树根的叶网净CO_2同化与电解质泄漏和醇脱氢酶活性

获取原文

摘要

Net CO_2 assimilation (A) ofleaves and root electrolyte leakage (EL) and alcohol dehydrogenase enzyme (activity) (ADH) in roots of mamey sapote (Pouteria sapota) trees were assessed in response to different oxygen concentrations in the root zone. In separate experiments, ‘Pantin’ and ‘Magana’ scions on mamey sapote seedling rootstocks were grown hydroponically with an oxygen concentration of 7-8 mg O_2L~(-1) H_2O in the root zone maintained by bubbling air into the hydroponic medium (aerated treatment) or with an oxygen concentration of 0-1 mg O/L~(-1) H_2O maintained by purging O_2 from a hydroponic medium with N_2 gas (O_2-purged treatment). Net CO_2 assimilation of ‘Magana’ leaves from the O_2-purged treatment declined over time and was ator near zero 8 days after treatment (DAT). Net CO_2 assimilation of ‘Pantin’ leaves in the aerated treatment was higher than that of leaves in the O_2-purged treatment at 2-6 DAT only. Electrolyte leakage from roots was significantly greater in the O_2-purged treatment than in the aerated treatment. Two days after treatments, root ADH activity in both cultivars tended to be consistently higher in the O_2-purged than aerated treatment. The ADH activity of mamey sapote roots appears to be up-regulated as a result of root-zone hypoxia. However, increased ADH activity alone is apparently not sufficient to limit low soil oxygen stress of mamey sapote trees as evidenced by decreased A of leaves and increased EL from roots of trees exposed to low oxygen content in the root zone.
机译:响应于根区的不同氧浓度,评估净的CO_2同化(A)和Root电解质泄漏(EL)和醇脱氢酶(活性)(ADH)中的根系(Pouteria Sapota)树的根部。在单独的实验中,在通过将空气冒泡到水培介质(Aeroped)的根部区域中,在MAMEY SAPOTE幼苗砧木上的“裤子”和“Magana”的氧浓度下呈水培养为7-8mg O_2L〜(-1)H_2O的氧浓度治疗)或具有0-1mg O / L〜(-1)H_2O的氧浓度,通过用N_2气体(O_2吹扫处理)从水液介质中吹扫O_2来维持。 “Magana”叶片的净罪与O_2-LIM纯净的治疗的同化率随着时间的推移而下降,治疗后8天附近零8天内塔。净CO_2在曝气治疗中的“夹层”叶片的同化叶片仅高于2-6个DAT的O_2吹扫处理中的叶片。 O_2吹扫的处理中,根部的电解质泄漏显着大于在充气处理中的处理。治疗后两天,两种品种的根教ADH活性往往在o_2瓶中持续更高,而不是曝气的处理。由于根区缺氧,Mamey Sapote Roots的ADH活动似乎是上调的。然而,单独的增加的ADH活性显然不足以限制所需塞加特树木的低土壤氧胁迫,如叶片的降低,并且从根区暴露于低氧含量的树木根部的根部增加。

著录项

相似文献

  • 外文文献
  • 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