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Arbuscular mycorrhizal fungi improve plant growth of Ricinus communis by altering photosynthetic properties and increasing pigments under drought and salt stress

机译:通过在干旱和盐胁迫下改变光合特性和增加颜料,通过改变光合特性和增加颜料来改善蓖麻植物的植物生长

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Castor bean (Ricinus communis) is one of the most important candidate crops that can be used to increase the land cover and crop yield in the arid and saline region of China. To evaluate the effects of arbuscular mycorrhizal (AM) fungi on the growth of castor bean under drought and salt stresses, a pot experiment was carried out to examine how AM fungi improve the plant growth of castor bean by affecting the leaf gas exchange, pigments, and metabolites accumulation of castor bean seedlings. The results showed that AM fungi stimulated plant growth and increased the castor bean aboveground biomass. AM fungi significantly increased the net photosynthetic rate (A), stomatal conductance (g(s)) and transpiration rate (E) of castor bean and decreased the intercellular CO2 concentration (Ci) under drought and salt stress. The contents of chlorophyll a, chlorophyll b, chlorophyll a + b and carotenoids in leaves treated by AM fungi were higher than in those without the AM fungi treatment. AM fungi notably increased the soluble protein and proline contents and decreased the malondialdehyde (MDA) content of castor bean. The results indicated that AM fungi could protect castor bean against drought and salt stresses by improving its leaf gas exchanges and photosynthetic capacity and altering its concentrations of metabolites. Our results highlight that AM fungi might be a promising bio-approach that can be used to plant castor beans in northeast and northwest China.
机译:蓖麻(Ricinus Communis)是最重要的候选作物之一,可用于增加中国干旱地区土地覆盖和作物产量。为了评估丛枝菌根(AM)真菌对干旱和盐胁迫下蓖麻籽生长的影响,进行了一种盆栽试验,以检测Curgi如何通过影响叶片气体交换,颜料来改善蓖麻籽的植物生长和代谢物积累蓖麻籽幼苗。结果表明,AM真菌刺激植物生长并增加了蓖麻籽地下生物质。 AM Fungi显着提高了蓖麻籽的净光合速率(A),气孔电导(G(S)和蒸腾速率(e),并在干旱和盐胁迫下降低细胞间CO 2浓度(CI)。湿法治疗的叶片中叶绿素A,叶绿素B,叶绿素A + B和类胡萝卜素的含量均高于AM真菌治疗的叶片。 am Fungi显着增加了可溶性蛋白质和脯氨酸含量,并降低了蓖麻籽的丙二醛(MDA)含量。结果表明,AM真菌可以通过改善其叶片气体交换和光合容量并改变其代谢物浓度来保护蓖麻豆和盐胁迫。我们的结果强调,AM Fungi可能是一个有前途的生物方法,可用于在东北和西北地区植物铸造豆。

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