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首页> 外文期刊>Functional Plant Biology >Biomass allocation in tomato (Lycopersicon esculentum) plants grown under partial rootzone drying: enhancement of root growth
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Biomass allocation in tomato (Lycopersicon esculentum) plants grown under partial rootzone drying: enhancement of root growth

机译:在部分根区干燥下生长的番茄(Lycopersicon esculentum)植物的生物量分配:增强根系生长

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Tomato ( Lycopersicon esculentum Mill.) plants were grown in either a glasshouse (GH) or a controlled environment cabinet (CEC) to assess the effects of partial rootzone drying (PRD) on biomass allocation. Control and PRD plants received the same amounts of water. In control plants, water was equally distributed between two compartments of a split-root system. In PRD plants, only one compartment was watered while the other was allowed to dry. At the end of each drying cycle, wet and dry compartments were alternated. In the GH, total biomass did not differ between PRD and control plants after four cycles of PRD, but PRD increased root biomass by 55% as resources were partitioned away from shoot organs. In the CEC, leaf water potential did not differ between treatments at the end of either of two cycles of PRD, but stomatal conductance of PRD plants was 20% less at the end of the first cycle than at the beginning. After two cycles of PRD in the CEC, biomass did not differ between PRD and control plants, but PRD increased root biomass by 19% over the control plants. The promotion of root biomass in PRD plants was associated with the alternation of wet and dry compartments, with increased root biomass occurring in the re-watered compartment after previous exposure to soil drying. Promotion of root biomass in field-grown PRD plants may allow the root system to access resources ( water and nutrients) that would otherwise be unavailable to control plants. This may contribute to the ability of PRD plants to maintain similar leaf water potentials to conventionally irrigated plants, even when smaller irrigation volumes are supplied.
机译:番茄(Lycopersicon esculentum Mill。)植物在温室(GH)或可控环境柜(CEC)中生长,以评估部分根区干燥(PRD)对生物量分配的影响。对照工厂和珠三角工厂接受的水量相同。在对照工厂中,水被平均分配在分根系统的两个隔室之间。在珠三角植物中,只给一个隔间浇水,而另一个让其干燥。在每个干燥周期结束时,将干湿隔间交替进行。在GH中,PRD和对照植物在四个PRD循环后的总生物量没有差异,但是PRD使根生物量增加了55%,这是因为资源被从芽器官中分配出去了。在CEC中,在两个PRD周期的任何一个周期结束时,不同处理之间的叶水势没有差异,但是在第一个周期结束时,PRD植物的气孔导度比开始时低20%。在CEC中PRD经历了两个周期后,PRD和对照植物之间的生物量没有差异,但是PRD比对照植物将根生物量增加了19%。珠三角植物根系生物量的增加与干,湿隔间的交替有关,在先前暴露于土壤干燥后,再浇水的隔间内根系生物量增加。在田间种植的PRD植物中促进根系生物量可以使根系获得资源(水和养分),而这些资源原本无法控制植物。即使提供较小的灌溉量,这也可能有助于PRD植物保持与常规灌溉植物相似的叶水势。

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