木袋对大溪地酸橙光合作用性能和叶片水势的影响

IF 0.1 Q4 AGRONOMY
Eleonora Rodriguez Polanco, L. JairoGarcía, J. Orduz
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引用次数: 0

摘要

2012年,在托利马中北部的生产区,大溪地酸橙树在生产阶段逐渐死亡,这对2011年的水果产量造成了79.98%的重大损失。组织或木材的逐渐死亡导致的树木退化被归因于世界范围内被称为木袋(WP)的物理疗法的存在,因为在实验室的诊断测试中,其损伤与病原体的存在无关。WP造成的损害的存在和程度与主要与高温有关的干热气候条件有关,这种情况与该产区的情况类似。在位于佛兰德斯的利马-塔希提商业种植园进行的一项实验试验中,测定了WP对光合参数和叶片水势的影响。在该地区,对土壤的水动力特性和含水量进行了表征,并对气候条件进行了监测。我们的研究结果表明,该土壤的水动力特性、低水分有效性和气候条件有利于WP的发展。即使在健康的植物中,光合参数和叶片水势的值也低于该物种的报告值,这表明植物处于持续的水分胁迫条件下,而高平均温度可能会增加水分胁迫。WP的存在在很大程度上降低了叶片组织的光合作用效率和水势。我们假设,持续的缺水和高温会导致管胞破裂和木质部空化,破坏血管系统,导致木材或WP死亡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photosynthesis performance and leaf water potential impairments of Lime Tahiti affected by Wood pocket
The progressive death of Tahiti lime trees in productive stage was evidenced in the production region of north-central Tolima in 2012, which led to significant detriment in fruit production of 79.98% in relation to the year 2011. Tree deterioration caused by progressive death of tissue or wood was attributed to the presence of the physiopathy known worldwide as Wood pocket (WP) because its damage was not associated with the presence of a pathogen in diagnostic tests in the laboratory. The presence and level of damage caused by WP has been associated with dry warm climate conditions related mainly to high temperatures, a condition similar to that which occurs in this producing area. The effect of WP on the photosynthetic parameters and leaf water potential was determined in an experimental trial in a commercial plantation of Lima Tahiti located in Flandes. In this area, hydrodynamic properties and the moisture content of the soil were characterized, and monitoring of climate conditions was also carried out. Our results indicated that the hydrodynamic properties, low availability of water in this soil and climatic conditions are favorable for the development of WP. The values in photosynthetic parameters and leaf water potential even in healthy plants are lower than those reported for this species, indicating that the plants are in constant condition of water stress that can be increased by the high average temperature. The presence of WP decreases in greater proportion the photosynthesis efficiency and water potential in leaf tissue. We hypothesized that the constant water deficit and high temperatures cause rupture of tracheids and cavitation in the xylem deteriorating the vascular system causing the death of wood or WP.
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Temas Agrarios
Temas Agrarios AGRONOMY-
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