• ISSN 1008-505X
  • CN 11-3996/S

氮素水平對(duì)芥藍(lán)生長(zhǎng)及芥子油苷含量的影響

Effect of nitrogen level on growth and glucosinolates content of Chinese kale

  • 摘要: 采用溶液培養(yǎng)方法,研究了不同供氮水平對(duì)芥藍(lán)生物量及抗癌次生代謝物芥子油苷含量的影響。結(jié)果表明,氮素水平從N100 mg/L到常規(guī)營(yíng)養(yǎng)液的 N 200 mg/L范圍內(nèi),芥藍(lán)地上部、根部及菜苔鮮重均隨供N水平的提高而顯著增加,但菜苔總芥子油苷含量卻隨供N水平提高而顯著降低;當(dāng)N素水平提高到N 300~400 mg/L時(shí),芥藍(lán)生物量不再顯著增加;而菜苔總芥子油苷含量相對(duì)于N 150和200 mg/L處理卻顯著增加。由于脂肪族和吲哚族芥子油苷分別來(lái)源于不同的氨基酸,兩者的含量隨供N水平的變化趨勢(shì)不同。脂肪族芥子油苷含量以N 100 mg/L處理最高,是常規(guī)供N (200 mg/L)處理的1.2倍,吲哚族芥子油苷以400 mg/L處理最高,是常規(guī)供N處理的1.5倍。顯然,在常規(guī)營(yíng)養(yǎng)液的供N水平下,可以獲得理想的芥藍(lán)生物產(chǎn)量;但適當(dāng)提高供N水平,在保證高產(chǎn)的同時(shí)可顯著提高芥藍(lán)菜苔的芥子油苷含量,有利于提高其抗癌品質(zhì)。

     

    Abstract: A hydroponic experiment was conducted to investigate the effect of different N levels on the growth and anti-cancer glucosinolates content of Chinese kale (Brassica alboglabra). Results indicated that as N level increased from the lowest level of N 100 mg/L to the conventional level of N 200 mg/L, fresh weights of shoot, root and bolting stem increased, while the total glucosinolates content of bolting stem decreased significantly. When N level ranged between N 300 to 400 mg/L, the biomass of Chinese kale was not significantly increased compared with the conventional N level, while the total glucosinolates content was sharply increased contrasted to the two lower N levels of 150 and 200 mg/L, respectively. The different effects of N level on the contents of aliphatic and indolyl glucosinolate were found due to their different original amino acids. The highest content of aliphatic glucosinolates was observed at the N level of 100 mg/L, which was 20 percent higher than that under the conventional N level. While the highest content of indolyl glucosinolates was detected at the N level of 400 mg/L, which was 50 percent higher than that under the conventional N level. In conclusion, N level not only significantly affected the biomass of Chinese kale but also sharply influenced the content of glucosinolates. Although the conventional N level could supply Chinese kale enough nutrition to get high biomass product, relatively higher N level was expected to increase the content of anti-cancer glucosinolates.

     

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