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Impact of tapping and soil water status on fine root dynamics in a rubber tree plantation in Thailand

机译:自来水和土壤水分状况对泰国橡胶树细密根系动态的影响

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摘要

Fine roots (FR) play a major role in the water and nutrient uptake of plants and contribute significantly to the carbon and nutrient cycles of ecosystems through their annual production and turnover. FR growth dynamics were studied to understand the endogenous and exogenous factors driving these processes in a 14-year-old plantation of rubber trees located in eastern Thailand. FR dynamics were observed using field rhizotrons from October 2007 to October 2009. This period covered two complete dry seasons (November to March) and two complete rainy seasons (April to October), allowing us to study the effect of rainfall seasonality on FR dynamics. Rainfall and its distribution during the two successive years showed strong differences with 1500 and 950 mm in 2008 and 2009, respectively. FR production (FRP) completely stopped during the dry seasons and resumed quickly after the first rains. During the rainy seasons, FRP and the daily root elongation rate (RER) were highly variable and exhibited strong annual variations with a total FRP of 139.8 and 40.4 mm-2 and an average RER of 0.16 and 0.12 cm day-1 in 2008 and 2009, respectively. The significant positive correlations found between FRP, RER, the appearance of new roots, and rainfall at monthly intervals revealed the impact of rainfall seasonality on FR dynamics. However, the rainfall patterns failed to explain the weekly variations of FR dynamics observed particularly during the rainy seasons. At this time step, FRP, RER, and the appearance of new FR were negatively correlated to the average soil matric potential measured at a depth of between 30 and 60 cm. In addition, our study revealed a significant negative correlation between FR dynamics and the monthly production of dry rubber. Consequently, latex harvesting might disturb carbon dynamics in the whole tree, far beyond the trunk where the tapping was performed. These results exhibit the impact of climatic conditions and tapping system in the carbon budget of rubber plantations.
机译:细根(FR)在植物的水分和养分吸收中起主要作用,并通过其年产量和周转量显着促进生态系统的碳和养分循环。在泰国东部一个有14年历史的橡胶树种植园中,对FR的生长动力学进行了研究,以了解驱动这些过程的内源性和外源性因素。从2007年10月至2009年10月,使用田间根流器观测了FR动态。这一时期涵盖了两个完整的旱季(11月至3月)和两个完整的雨季(4月至10月),使我们能够研究降雨季节对FR动态的影响。连续两年的降雨量及其分布在2008年和2009年分别有1500 mm和950 mm的强烈差异。 FR生产(FRP)在干旱季节完全停止,并在第一场雨后迅速恢复。在雨季,FRP和日根伸长率(RER)高度可变,并且表现出强烈的年度变化,总FRP为139.8和40.4 mm - 2 , 2008年和2009年的平均RER分别为0.16和0.12 cm·day - 1 。 FRP,RER,新根的出现与每月间隔的降雨之间存在显着的正相关关系,揭示了降雨季节对FR动态的影响。但是,降雨模式无法解释特别是在雨季期间观察到的FR动态的每周变化。此时,FRP,RER和新FR的出现与在30至60 cm深度处测得的平均土壤基质势呈负相关。此外,我们的研究表明FR动态与干胶月产量之间存在显着负相关。因此,乳胶的收获可能会干扰整棵树的碳动态,远远超出进行割胶的树干。这些结果表明气候条件和割胶系统对橡胶园碳收支的影响。

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