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Impact of Different Substrate Moisture Levels on Lettuce Plants during Ground Based Experiment in SVET-2 Space Greenhouse

机译:SVET-2空间温室地面试验中不同基质水分水平对生菜的影响

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Plant experiments carried out in space has proved that microgravity alters conditions in the plant growth facilities especially in the root modules and thus affects plant growth and development. Microgravity changes behavior of fluids and gases in the porous media used as plant growth substrates which causes problems with the control of water supply systems and this often leads to excess water input (overmoistening) and oxygen deficiency. The pattern of fluid and gas distribution in substrate medium in microgravity could not be repeated on Earth but some processes could be imitated. Overmoistening of the substrate medium and the subsequent oxygen deficiency could be replaced with the waterlogging on Earth. Ground experiment was carried out in the laboratory prototype of SVET-2 Space Greenhouse (SVET-2 SG) to study the effect of different root-zone moisture conditions and waterlogging on growth, photosynthesis and chlorophyll content of lettuce plants (Lactuca sativa L. cv. Lolo Rossa). The increase in height and biomass was suppressed while leaf dry matter increased during the waterlogging treatment suggesting assimilates accumulation in the leaves and slow translocation to the roots. Waterlogging caused a rapid decline in net photosynthetic rate (Pn). The reduction of Pn could not be attributed only to diffusion limitations resulting from stomatal closure but also to metabolic inhibition due to accumulation of assimilates in the leaves. The chlorophyll content decreased during the waterlogging and slowly recovered after termination of the waterlogging treatment.
机译:在太空中进行的植物实验已证明,微重力会改变植物生长设施(尤其是根模块)中的条件,从而影响植物的生长发育。微重力改变了用作植物生长基质的多孔介质中的流体和气体的行为,这导致了供水系统控制方面的问题,并且这常常导致过多的水输入(过湿)和氧气不足。在地球上微重力下流体和气体在基质介质中的分布模式无法在地球上重复,但可以模仿某些过程。基质介质的过度潮湿和随后的缺氧可以用地球上的涝渍代替。在SVET-2太空温室(SVET-2 SG)的实验室原型中进行了地面试验,研究了不同根区水分条件和涝渍对生菜植物(Lactuca sativa L. cv)的生长,光合作用和叶绿素含量的影响。罗洛·罗萨()在淹水处理期间,高度和生物量的增加受到抑制,而叶片干物质增加,这表明同化物在叶片中的积累和向根部的缓慢转移。涝灾导致净光合速率(Pn)迅速下降。 Pn的降低不仅可以归因于气孔关闭导致的扩散限制,还不能归因于同化物在叶片中的积累而引起的代谢抑制。叶绿素含量在淹水期间降低,并在浸水处理终止后缓慢恢复。

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