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Characterization and Molecular Interpretation of the Photosynthetic Traits of Lonicera confusa in Karst Environment

机译:岩溶环境下金银忍冬光合特性的表征与分子解释

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摘要

Lonicera confusa was a medical plant which could adapt to the Ca-rich environment in the karst area of China. The photosynthesis, relative chlorophyll content,differentially expressed genes (DEGs) and differentially expressed proteins (DEPs) of L. confusa that cultivated in calcareous and sandstone soils were investigated. The results showed that the relative chlorophyll content and net photosynthesis rate of L. confusa in calcareous soil are much higher than that planted in sandstone soil, the higher content of calcium might play a role in keeping the chloroplast from harm and showed higher photosynthesis rate. The transpiration and stomata conductance were decreased in calcareous soil, which might result from the closure of stomata. The GeneFishing and proteomic results showed that the expression of DEGs and DEPs were critical for photosynthesis and stomata closure, such as RuBisCO, photosynthetic electron transfer c and malate dehydrogenase varied in the leaves of L. confusa that cultivated in different soils. These DEGs or DEPs were further found to be directly or indirectly regulated by calcium sensor proteins. This study enriched our knowledge of the molecular mechanism of high net photosynthesis rate and lower transpiration of L. confusa that cultivated in the calcareous soil in some degree.
机译:忍冬(Lonicera confusa)是可以适应中国喀斯特地区富含钙的环境的药用植物。研究了在石灰性和砂岩土壤中种植的孔雀菌的光合作用,相对叶绿素含量,差异表达基因(DEGs)和差异表达蛋白(DEPs)。结果表明,石灰性土壤上的孔雀菌相对叶绿素含量和净光合速​​率远高于砂岩土壤,钙含量高可能起到防止叶绿体免受伤害的作用,并表现出较高的光合速率。石灰性土壤中的蒸腾作用和气孔导度降低,这可能是由于气孔关闭所致。 GeneFishing和蛋白质组学结果表明,DEGs和DEPs的表达对于光合作用和气孔关闭至关重要,例如在不同土壤中种植的孔尾叶杨叶片中的RuBisCO,光合电子传递c和苹果酸脱氢酶各不相同。进一步发现这些DEG或DEP受钙传感器蛋白直接或间接调节。这项研究丰富了我们在一定程度上在石灰性土壤上种植的孔雀菌净净光合速率高和蒸腾速率降低的分子机制的知识。

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