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首页> 外文期刊>Plant and Soil >Interactive effects of phosphorus supply and light intensity on glucosinolates in pakchoi (Brassica campestris L. ssp. chinensis var. communis)
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Interactive effects of phosphorus supply and light intensity on glucosinolates in pakchoi (Brassica campestris L. ssp. chinensis var. communis)

机译:磷供应和光强度对小菜芥子油苷的相互作用的影响(Brassica campestris L. ssp。chinensis var。communis)

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摘要

The influences of phosphorus (P) supply levels (1.00 and 0.01 mM) and different light intensities (normal and 60% shading) on plant growth and glucosinolate (GS) concentrations were investigated in pakchoi (Brassica campestris L. ssp. chinesis (L.) Makino var. communis Tsen et Lee) plants grown in nutrient solution. Low light intensity significantly decreased the shoot and root growth, particularly under P sufficiency. P deficiency significantly decreased the shoot growth under normal light intensity, but did not significantly affect the root growth irrespective of the light intensity. The root/shoot ratio was increased by P deficiency and high light intensity. P deficiency largely increased the concentration of total GSs under normal light intensity by 164%, but this effect was not significant under low light intensity. However, the effects of P supply level and light intensity on seven individual GSs and three classes of GSs (aliphatic, aromatic and indolyl GSs) were quite different. The concentrations of gluconapin, glucobrassicanapin, glucobrassicin, neoglucobrassicin, 4-methoxyglucobrassicin and gluconasturtiin were increased by P deficiency, especially under normal light intensity resulting in increases of 122%, 497%, 352%, 115% and 225%, respectively. Low light intensity decreased the concentrations of gluconapin, glucobrassicanapin, glucobrassicin and neoglucobrassicin under P deficiency condition, and increased the concentrations of glucobrassicin and 4-methoxyglucobrassicin and neoglucobrassicin under P sufficiency condition. The ratios of aliphatic, aromatic and indolyl GSs to total GSs were not significantly affected by P supply level under low light intensity. However, under normal light intensity, P deficiency increased the ratio of aliphatic GSs to total GSs from 58% to 67%, at the expense of aromatic ones, and did not affect the ratio of indolyl GSs to total GSs. Altered concentrations of free amino acids (GS precursors) could not be related to changes of individual GSs. The concentration of sulfur in pakchoi shoots was not significantly affected by different P levels and light intensities. The results indicate a role of P and light, and their interaction, on the concentrations and profiles of GSs in the shoots of pakchoi plants. However, the physiological and molecular mechanisms underlying this response await further investigation.
机译:研究了小白菜(Brassica campestris L.ssp。chinesis)的磷(P)供应水平(1.00和0.01 mM)和不同的光照强度(正常和60%遮光)对植物生长和芥子油苷(GS)浓度的影响。在营养液中生长的Makino var。communis Tsen等。弱光显着降低了枝条和根的生长,特别是在磷充足的情况下。缺磷显着降低了正常光照强度下的枝条生长,但无论光照强度如何,均未显着影响根系生长。缺磷和高光强度增加了根/茎比。磷缺乏使正常光照强度下总GS的浓度大大增加了164%,但在低光照强度下这种作用并不明显。但是,磷供应水平和光强度对七个单独的GS和三类GS(脂肪族,芳香族和吲哚类GS)的影响是完全不同的。缺磷会增加葡糖苷,葡糖葡糖胺,葡糖溴素,新葡糖素,4-甲氧基葡糖胺和葡糖松香素的浓度,特别是在正常光照强度下,分别增加122%,497%,352%,115%和225%。低光照强度在磷缺乏条件下降低了葡糖苷,葡糖嘧啶,葡糖苷和新葡糖胺的浓度,在磷充足条件下增加了葡糖苷和4-甲氧基葡糖苷和新葡糖胺的浓度。在弱光条件下,磷的供应水平对脂族,芳族和吲哚基GSs与总GSs的比例没有显着影响。然而,在正常的光照强度下,磷缺乏会使脂肪族GS占总GS的比例从58%增至67%,但以芳香族化合物为代价,并且不影响吲哚基GS占总GS的比例。游离氨基酸(GS前体)浓度的变化与单个GS的变化无关。不同磷水平和光照强度对小菜枝中硫的浓度没有显着影响。结果表明,磷和光及其相互作用对小白菜幼苗中GSs的浓度和分布的影响。然而,这种反应的生理和分子机制有待进一步研究。

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