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Estresse salino e silício exógeno influenciam características fisiológicas e anat?micas de fisális cultivada in vitro

机译:盐胁迫和外源硅影响体外培养的酸浆的生理和解剖特征

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Salt stress is one of several major abiotic stresses that affect plant growth and development, and there are many evidences that silicon can ameliorate the injuries caused by high salinity. This study presents the results of an assay concerning: (1) the effect of in vitro NaCl-induced salt stress in cape gooseberry plants and (2) the possible mitigating effect of silicon in saline conditions. For that, nodal segments were inoculated in Murashige and Skoog (MS) medium under salinity (0.5 and 1.0% NaCl) with different silicic acid concentrations (0, 0.5 and 1.0g L -1 ). Phytotechnical characteristics, photosynthetic pigments content, and leaf anatomy were evaluated after 30 days. Shoot length, root length, number of leaves and buds, fresh and dry weight, pigment content, stomatal density and leaf blade thickness were drastically reduced by increased salt level. The supply of silicon (1.0g L -1 ) has successfully mitigated the effect of salinity at 0.5% NaCl for chlorophyll, carotenoids, stomatal density and leaf blade thickness. When salt stress was about 1.0%, Si was not effective anymore. In conclusion, we affirmed that, in in vitro conditions, salt stress is harmful for cape gooseberry plants and the addition of silicon showed effective in mitigating the saline effects of some features.
机译:盐胁迫是影响植物生长和发育的几种主要非生物胁迫之一,并且有许多证据表明硅可以减轻高盐度造成的伤害。这项研究提出了有关以下方面的测定结果:(1)氯化钠诱导的离体盐碱对醋栗海角植物的体外盐胁迫的影响,以及(2)在盐分条件下硅的缓解作用。为此,将节段接种在Murashige和Skoog(MS)培养基中的盐度(0.5和1.0%NaCl)下,使用不同的硅酸浓度(0、0.5和1.0g L -1)。 30天后评估植物技术特征,光合色素含量和叶片解剖结构。盐分升高,可大大降低枝条长,根长,叶和芽的数量,鲜重和干重,色素含量,气孔密度和叶片厚度。硅(1.0 g L -1)的供应已成功缓解了0.5%NaCl盐度对叶绿素,类胡萝卜素,气孔密度和叶片厚度的影响。当盐胁迫约为1.0%时,Si不再有效。总之,我们确认,在体外条件下,盐胁迫对灯笼果植物有害,并且添加硅已显示出可以减轻某些特性的盐分影响。

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