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首页> 外文期刊>Italian Journal of Agronomy >CO_2 uptake of Opuntia ficus-indica (L) Mill, whole treesand single cladodes, in relation to plant water status and cladode age
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CO_2 uptake of Opuntia ficus-indica (L) Mill, whole treesand single cladodes, in relation to plant water status and cladode age

机译:仙人掌,整棵树和单枝的CO_2吸收与植物水分状况和枝龄的关系

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摘要

Most of net photosynthesis determinations in Opuntia ficus-indica come from measurements on individual cladodes. However, they have limitations when used to scale up to whole canopy gas exchange, because a large variability of carbon assimilation mayoccur within the canopy, due to, among others, differences in cladode age and intercepted radiation or individual cladode response to abiotic stresses. The aim of this work was to evaluate the application of open gas exchange chambers, simultaneously applied around the whole canopy, to measure net C02 uptake, continuously over a 24 h period, in single Opuntia ficus-indica (L) Mill, potted trees and in relation with their water status. Net C02 uptake was also measured for single cladodes differentiated by age. 0. ficus-indica trees continued their photosynthetic activity 60 days after the irrigation was stopped, when soil water content was lower than 5%. At this stage, current-year and 1-year-old cladodes had become flaccid but still the daily net CO2 uptake of non-irrigated trees kept the same rate than at the beginning of the experiment, while watered trees had doubled their net CO2 uptake. The highest instantaneous rates and total daily net CO2 uptake for both well-watered and non-irrigated trees occurred 60 days after the onset of the dry period, when maximal instantaneous rates were 11.1 in well-watered trees and 8.4 mol m~(-2) s~(-1) in non-irrigated trees. During the drought period, the chlorenchyma fresh weight decreased by 45% and 30%, in 1-and 2-year-old drought cladodes respectively, and marginally increased in current-year ones (+20%). Net CO2 uptake for 1-year-old and 2-year-old cladodes changed only at highest photosynthetic photon flux density and temperatures, and average seasonal net CO2 uptake of 2-year-old cladodes was 15% lower than for 1-year-old ones. Whole-tree gas exchange measurements applied for the first time to 0. ficus-indica indicated that whole cactus pear trees maintain similar net CO2 uptake, contrary to previous evidence gathered on single leaves, even after 60 days of drought. A substantial water loss in the most photosynthetically active cladodes was not sufficient to alter this response. Differences in growth accrued by wet and non-irrigated trees were due to the fact that, as the season progressed, the former were able to increase their total daily CO2 uptake and the latter were not.
机译:仙人掌印度榕的大多数净光合作用测定来自对单个枝条的测量。但是,它们在扩大规模以进行整个冠层气体交换时有局限性,因为在冠层内部可能会发生很大的碳同化变化,这是由于,尤其是共轭年龄和截获的辐射或个体对非生物胁迫的响应引起的差异。这项工作的目的是评估开放式气体交换室在整个冠层上同时应用的情况,以连续24小时测量单个仙人掌Op,盆栽树木和与他们的水状况有关。还测量了按年龄区分的单个包壳的净CO 2吸收。 0.灌溉停止后60天,当土壤含水量低于5%时,印度榕树继续保持其光合活性。在此阶段,当年和一年龄的枝条变得脆弱,但非灌溉树木的每日净二氧化碳吸收量仍保持与实验开始时相同的速率,而浇水树木的净二氧化碳吸收量则翻了一番。干旱时期开始后60天,水分充足和非灌溉树木的瞬时瞬时率和日总净CO2最高,当水分充足的树木的瞬时瞬时率最高为11.1,而8.4 mol m〜(-2 )s〜(-1)在非灌溉树木中。在干旱期间,1岁和2岁干旱小球藻的氯霉素鲜重分别下降了45%和30%,而当年的则下降了20%。 1岁和2岁小球类的净CO2吸收仅在最高光合光子通量密度和温度下发生变化,并且2岁小球类的平均季节性净CO2吸收比1年小球类低15%。旧的。首次对0. ficus-indica进行全树气体交换测量,表明整个仙人掌梨树都保持相似的净CO2吸收,这与先前在单叶上收集的证据相反,即使在干旱60天后也是如此。在光合活性最强的复合物中大量失水不足以改变这种反应。潮湿和非灌溉树木造成的生长差异是由于以下事实:随着季节的发展,前者能够增加其每天的总二氧化碳吸收量,而后者则无法。

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