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Effects of calcium nutrition and atmospheric carbon dioxide, oxygen, and ethylene on the growth and quality of mungbean (Vigna radiata (L.) Wilczek) sprouts

机译:钙营养和大气中的二氧化碳,氧气和乙烯对绿豆(Vigna radiata(L.)Wilczek)芽苗生长和品质的影响

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摘要

Hypocotyl-hook translucency of mungbean sprouts is due to calcium deficiency in the hook region of the hypocotyl. The disorder was not associated with any pathogenic organism, and the addition of calcium to the irrigation water at concentrations of 50 or more mg calcium/liter overcame the disorder. Apparently, the supply of calcium in the seed either is not sufficient to maintain the rapid growth of sprouts in the dark, or the calcium cannot be translocated to the hypocotyl hook as rapidly as it is needed;The growth of the mungbean sprouts followed a typical sigmoid pattern, but the growth rate of each organ of the seedling is not synchronous. Growth in terms of an increase in hypocotyl diameter or fresh weight occurs at about the same time, the first 30 to 36 hours after sowing. The maximum growth in length of the hypocotyl and the root occurred at about 55 to 80 and 36 hours after sowing, respectively. The maximum respiratory rate coincided with beginning of the period of maximum growth in length of the hypocotyl;Mungbean sprouts produced ethylene (C(,2)H(,4)) endogenously. When this endogenously produced C(,2)H(,4) was allowed to accumulate in the growing environment, the sprouts exhibited the typical increase in hypocotyl diameter in response to C(,2)H(,4), Accumulation of endogenously produced carbon dioxide (CO(,2)) yielded sprouts with characteristics similar to those produced in an environment where C(,2)H(,4) is allowed to accumulate;A flow-through, controlled-atmosphere system containing 5 to 10% CO(,2) in combination with 10 to 15% oxygen with the balance as nitrogen produced sprouts similar to those grown in air containing 5.0 (mu)liter C(,2)H(,4)/liter. Mungbean sprout quality could be improved by the addition of 5.0 (mu)liter C(,2)H(,4)/liter into the air-based atmosphere in which the sprouts are growing.
机译:绿豆芽的下胚轴钩半透明性归因于下胚轴钩区域的钙缺乏。该疾病与任何病原体均不相关,并且以50毫克/升或更高的钙/升浓度向灌溉水中添加钙克服了该疾病。显然,种子中的钙供应不足以维持黑暗中豆芽的快速生长,或者钙无法按需要快速转移到下胚轴钩上;绿豆芽的生长遵循典型的方式。呈S形,但幼苗各器官的生长速度不同步。就下胚轴直径或鲜重增加而言,生长大约在同一时间发生,即播种后的最初30至36小时。下胚轴和根的最大长度增长分别发生在播种后约55至80和36小时。最大呼吸频率与下胚轴长度最大增长时期的开始相吻合;绿豆芽内生地产生乙烯(C(,2)H(,4))。当这种内生产生的C(,2)H(,4)积累在生长环境中时,芽苗响应C(,2)H(,4)表现出典型的下胚轴直径增加,内生产生的积累二氧化碳(CO(,2))产生的芽苗特征类似于在允许C(,2)H(,4)积累的环境中产生的芽;流通性,受控大气系统,含有5-10% CO(,2)与10%至15%的氧气结合,其余部分为氮,产生的芽与在空气中每升含5.0μC((2)H(,4))的芽相似。绿豆芽的质量可以通过在生长芽的空气基大气中添加5.0μLC(,2)H(,4)/ L来提高。

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  • 作者

    Ahmad, Siti Hajar;

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  • 年度 1985
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  • 原文格式 PDF
  • 正文语种 en
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