首页> 美国卫生研究院文献>Plant Physiology >Differential Exudation of Polypeptides by Roots of Aluminum-Resistant and Aluminum-Sensitive Cultivars of Triticum aestivum L. in Response to Aluminum Stress.
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Differential Exudation of Polypeptides by Roots of Aluminum-Resistant and Aluminum-Sensitive Cultivars of Triticum aestivum L. in Response to Aluminum Stress.

机译:小麦对铝胁迫的耐铝和铝敏感品种根系差异分泌多肽。

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摘要

Cultivars of Triticum aestivum differing in resistance to Al were grown under aseptic conditions in the presence and absence of Al and polypeptides present in root exudates were collected, concentrated, and analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Upon exposure to 100 and 200 [mu]M Al, root elongation in Al-sensitive cultivars was reduced by 30 and 65%, respectively, whereas root elongation in resistant cultivars was reduced by only 15 and 30%. Accumulation of polypeptides in the growth medium increased with time for 96 to 120 h, with little additional accumulation thereafter. This pattern of exudation was virtually unaffected by exposure to 100 [mu]M Al in the Al-resistant cultivars Atlas 66 and Maringa, whereas total accumulation was reduced in sensitive cultivars. Changes in exudation were consistent with alterations in root elongation. Al-induced or Al-enhanced polypeptide bands were detected in Atlas 66 and Maringa after 72 h of exposure to Al. Increased accumulation of 12-, 22-, and 33-kD bands was observed at 75 [mu]M Al in Atlas 66 and 12-, 23-, and 43.5-kD bands started to appear at 50 [mu]M Al in Maringa. In the Al-sensitive cultivars Roblin and Katepwa, no significant effect on polypeptide profiles was observed at values up to 100 [mu]M Al. When root exudates were separated by ultrafiltration and the Al content was measured in both high molecular mass (HMM; >10 kD) and ultrafiltrate (<10 kD) fractions, approximately 2 times more Al was detected in HMM fractions from Al-resistant cultivars than from Al-sensitive cultivars. Dialysis of HMM fractions against water did not release this bound Al;digestion with protease released between 62 and 73% of total Al, with twice as much released from exudates of Al-resistant than of Al-sensitive cultivars. When plants were grown in the presence of 0 to 200 [mu]M Al, saturation of the Al-binding capacity of HMM exudates occurred at 50 [mu]M Al in Al-sensitive cultivars. Saturation was not achieved in resistant cultivars. Differences in exudation of total polypeptides in response to Al stress, enhanced accumulation of specific polypeptides, and the greater association of Al with HMM fractions from Al-resistant cultivars suggest that root exudate polypeptides may play a role in plant response to Al.
机译:在有铝和无铝的条件下,在无菌条件下培养出对铝的抗性不同的普通小麦品种,并收集,浓缩并通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析根分泌物中存在的多肽。暴露于100和200μM的Al时,铝敏感品种的根伸长分别降低了30和65%,而抗性品种的根伸长仅降低了15和30%。在96至120小时内,生长培养基中多肽的积累随时间增加,此后几乎没有额外的积累。在Al抗性品种Atlas 66和Maringa中,暴露于100μMAl实际上不影响这种渗出模式,而在敏感品种中总积累减少。渗出的变化与根伸长的变化一致。暴露于Al 72小时后,在Atlas 66和Maringa中检测到Al诱导或Al增强的多肽带。在Atlas 66中,在75μMAl处观察到12 k,22 k和33 kD条带的积累增加,而在Maringa在50μMAl处出现12 k,23 k和43.5 kD条带。 。在Al敏感品种Roblin和Katepwa中,在高达100μMAl的值下未观察到对多肽谱的显着影响。当通过超滤分离根系分泌物并测量高分子量(HMM;> 10 kD)和超滤液(<10 kD)馏分中的Al含量时,从耐Al品种的HMM馏分中检测到的Al大约是Al的2倍来自对铝敏感的品种。 HMM组分对水的透析没有释放出结合的Al;用蛋白酶消化的酶释放的Al占总Al的62%至73%,与Al敏感的品种相比,从抗Al的分泌液中释放的两倍。当植物在0至200μMAl的存在下生长时,HMM渗出物的Al结合能力的饱和在Al敏感品种中在50μMAl处发生。抗性品种没有达到饱和。响应于铝胁迫,总多肽渗出的差异,特定多肽的积累增强以及铝与来自耐铝品种的HMM组分的更大关联性表明,根系渗出多肽可能在植物对铝的反应中起作用。

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