首页> 外文期刊>Plant Growth Regulation >The effect of water stress on the activities of key regulatory enzymes of the sucrose to starch pathway in wheat
【24h】

The effect of water stress on the activities of key regulatory enzymes of the sucrose to starch pathway in wheat

机译:水分胁迫对小麦蔗糖淀粉通道关键调控酶活性的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Developmental changes in the starch and sucrose content of grains andthe activities of enzymes of starch synthesis in wheat were studied under waterstress conditions. Water stress caused a marked reduction in the sucrose andstarch content of the grains. Sucrose synthase (SS) and UDP-glucosepyrophosphorylase (UDP-Gppase), showed higher catalytic activity and moreresistance to water stress compared with amyloplastic enzymes. ADP-glucosepyrophosphorylase (ADP-Gppase) activity was reduced to a low level under bothin situ and osmotic stress conditions in which grainsfailed to accumulate dry matter in vivo. Granule-boundstarch synthase (GBSS) also responded rapidly to in situwater stress treatments as did ADP-Gppase. Reduction in GBSS activity at thetime of growth cessation in situ was less than that ofADP-Gppase and the enzyme did not respond to severe osmotic stress. Solublestarch synthase (SSS) was the enzyme most sensitive to water stress in that itresponded earlier, and to a greater extent, than the other enzymes. However,under severe dehydration conditions, leading to cessation of growth, thedeclinein SSS activity was less than that for ADP-Gppase. SSS showed the lowestin vitro activity followed by GBSS. These results suggestthat SSS is the site of response to water stress by which the rate of graingrowth can be affected, whereas growth cessation is due mainly to theinactivation of ADP-Gppase.
机译:研究了水分胁迫条件下小麦籽粒淀粉和蔗糖含量的变化及其淀粉合成酶的活性。水分胁迫导致谷物中蔗糖和淀粉含量显着降低。与淀粉酶相比,蔗糖合酶(SS)和UDP-葡萄糖焦磷酸化酶(UDP-Gppase)具有更高的催化活性和更强的抗水分胁迫能力。在谷物不能在体内积累干物质的原位和渗透胁迫条件下,ADP-葡萄糖焦磷酸磷酸化酶(ADP-Gppase)活性均降低至较低水平。与ADP-Gppase一样,颗粒结合淀粉合酶(GBSS)对原位水胁迫处理也反应迅速。原位生长停止时GBSS活性的降低小于ADP-Gppase的降低,并且该酶对严重的渗透压没有反应。可溶性淀粉合酶(SSS)是对水分胁迫最敏感的酶,因为它比其他酶更早地响应并在更大程度上响应。但是,在严重的脱水条件下,导致生长停止,SSS的下降幅度小于ADP-Gppase。 SSS的体外活性最低,其次是GBSS。这些结果表明,SSS是对水分胁迫的响应位点,通过该位点可以影响生长速率,而生长停止主要是由于ADP-Gppase的失活。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号