首页> 美国卫生研究院文献>Journal of Nematology >Osmolyte Allocation in Response to Tylenchulus semipenetrans Infection Stem Girdling and Root Pruning in Citrus
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Osmolyte Allocation in Response to Tylenchulus semipenetrans Infection Stem Girdling and Root Pruning in Citrus

机译:渗透气分配响应Tylenchulus semipenetrans感染茎环带和柑橘的根修剪。

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摘要

Previous studies indicated that Tylenchulus semipenetrans infection reduced concentrations of inorganic osmolytes, (Na⁺, Cl⁻, K⁺), in roots, along with leaf K⁺ in citrus. However, infection increased leaf Na⁺ and Cl⁻, along with carbohydrates in roots. Pruning of roots also increased carbohydrates in intact roots, whereas shoot pruning increased carbohydrates in shoots. Carbohydrates are translocated as reducing sugars, which collectively form organic osmolytes. Because changes in concentrations of osmolytes regulate osmotic potential in plant cells, we hypothesize that increasing concentrations of organic osmolytes in an organ displaces inorganic osmolytes. We measured the osmotic potentials of young citrus trees under nematode infection, stem girdling, and root pruning at two salinity levels. All treatments reduced leaf osmotic potentials at four sampling times. At harvest, 16 days after pruning and girdling treatments, organs with higher carbohydrates had lower inorganic osmolytes and vice versa, regardless of the treatment. Pruning simulated effects of nematode infection, whereas girdling reduced the effects of nematodes. Results suggested that high organic osmolytes in roots displace inorganic osmolytes, thereby avoiding very low osmotic potentials.
机译:先前的研究表明,Tylenchulus semipenetrans感染会降低根部的无机渗透物(Na⁺,Cl⁻,K⁺)以及柑橘中的叶⁺。但是,感染增加了叶片中Na 3和Cl 3以及根中的碳水化合物。修剪根部还会增加完整根中的碳水化合物,而修剪茎部则会增加嫩芽中的碳水化合物。碳水化合物作为还原糖易位,它们共同形成有机渗透物。因为渗透压浓度的变化调节了植物细胞中的渗透潜能,我们假设器官中有机渗透压浓度的增加会取代无机渗透压。我们在两个盐度水平下测量了线虫感染,茎环剥皮和根修剪下年轻柑橘树的渗透潜力。所有处理均在四个采样时间降低了叶片的渗透势。在收获时,修剪和剥落处理后的第16天,无论采用何种处理方式,碳水化合物含量较高的器官的无机渗透压较低,反之亦然。修剪模拟了线虫感染的效果,而环剥减少了线虫的效果。结果表明,根部中的高有机渗透物取代了无机渗透物,从而避免了非常低的渗透势。

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