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Arbuscular mycorrhizae modify winter wheat root morphology and alleviate phosphorus deficit stress

机译:丛枝菌根修改冬小麦根形态,缓解磷缺陷压力

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摘要

Arbuscular mycorrhizal (AM) root colonization is known to have beneficial effects on plant growth especially under phosphorus (P) deficit conditions. The objectives of present study were: (i) to quantify changes in early wheat root development of AM-inoculated (AMI) and AM-free (AMF) roots under limited P availability; (ii) to assess possible mitigating effect of AM inoculation on photochemical efficiency under P deficit stress. AMI (inoculated with Rhizophagus irregularis) and AMF wheat plants were grown for 20 days in low (1 mu mol/L) and high (50 mu mol/L) P treatments. AM inoculation affected root morphology and shoot P concentration in low P treatment. AM inoculation alleviated reduction of the total root length in low P treatment, mainly due to an increase of fine roots length (& 0.5 mm). Contrastingly, shoot dry weight was reduced by AM inoculation in low P treatment. P deficiency decreased photochemical efficiency of wheat plants. However, due to increased sink capacity and facilitated nutrient concentrations AM inoculation alleviates phosphorus deficit stress and increased photochemical efficiency.
机译:已知丛枝菌根(AM)根殖民化对植物生长具有有益影响,尤其是在磷(P)缺陷条件下。本研究的目的是:(i)在有限的P可用性下量化am-接种(AMI)和免疫(AMF)根的早期小麦根系发育的变化; (ii)评估在P缺陷应力下接受照相效率的可能减轻效果。 AMI(接种具有根瘤菌不规则)和AMF小麦植物的低(1μmol/ L)和高(50μmol/ L)P处理生长20天。在低P治疗中接种受影响的根形态和芽P浓度。接种缓解降低了低p处理中的总根长度,主要是由于细根长度的增加(& 0.5mm)。比较地,在低P处理中接种,减少了芽干重。 P缺乏降低了小麦植物的光化学效率。然而,由于下沉容量增加和促进的营养浓度,AM接种缓解磷缺陷应力并增加光化学效率。

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