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首页> 外文期刊>Journal of Plant Nutrition >GENOTYPIC DIFFERENCES IN SPECTRAL AND PHOTOSYNTHETIC RESPONSE OF PEANUT TO IRON DEFICIENCY
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GENOTYPIC DIFFERENCES IN SPECTRAL AND PHOTOSYNTHETIC RESPONSE OF PEANUT TO IRON DEFICIENCY

机译:花生对铁缺乏的光谱和光合反应的基因型差异

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摘要

To assess the genetic variability of peanut (Arachis hypogaea L.) in tolerance to iron (Fe) deficiency, spectral and photosynthetic parameters of 12 peanut cultivars were determined. The results showed that peanut exhibit significant variations in spectral and photosynthetic parameters within cultivars in response to Fe deficiency. The 12 peanut cultivars were separated into three groups, which include (i) a Fe-deficient tolerant cultivar ('Zhenghong 3'), (ii) a Fe-deficient sensitive cultivar ('Huayu 22'), and (iii) ten intermediate cultivars. Iron deficiency caused an increase in root biomass, root/shoot ratio, structure independent pigment index and intercellular carbon dioxide (CO2) concentration, but resulted in a decrease in net photosynthetic rate (Pn), quantum yield of PS II photochemistry (F-v/F-m), effective quantum yield of PS II (Phi PS II), photochemical reflectance index, red edge point, and chlorophyll normalized difference index. Iron deficiency-induced decline in net photosynthetic rate may be resulted from the reduction of photosynthetic pigment contents and inhibition of PSII photochemistry.
机译:为了评估对铁(Fe)缺乏的耐受性(Arachis Hypogaea L.)的遗传变异,确定了12种花生品种的光合和光合参数。结果表明,花生响应Fe缺乏,花生在品种内的光谱和光合参数的显着变化。将12个花生品种分为三组,包括(i)Fe缺乏耐受性品种('zhenghong 3'),(ii)Fe缺陷型敏感品种('华宇22'),(iii)十个中间体品种。铁缺乏引起根生物量增加,根/芽比,结构独立颜料指数和细胞间二氧化碳(CO2)浓度,但导致净光合速率(PN),PS II光化学的量子产率(FV / FM)降低(FV / FM ),PS II(PHI PS II)的有效量子产率,光化学反射率指数,红色点和叶绿素标准化差异指数。由于减少光合色素含量和PSII光化学的抑制,可以导致铁缺乏率净光合速率下降。

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