首页> 外文期刊>Plant Biotechnology Journal >Down‐regulation of Glucan, Water‐Dikinase activity in wheat endosperm increases vegetative biomass and yield
【24h】

Down‐regulation of Glucan, Water‐Dikinase activity in wheat endosperm increases vegetative biomass and yield

机译:葡聚糖的下调,小麦胚乳中的水 - 直蛋白酶活性增加营养生物量和产量

获取原文
           

摘要

A novel mechanism for increasing vegetative biomass and grain yield has been identified in wheat (Triticum aestivum). RNAi-mediated down-regulation of Glucan, Water-Dikinase (GWD), the primary enzyme required for starch phosphorylation, under the control of an endosperm-specific promoter, resulted in a decrease in starch phosphate content and an increase in grain size. Unexpectedly, consistent increases in vegetative biomass and grain yield were observed in subsequent generations. In lines where GWD expression was decreased, germination rate was slightly reduced. However, significant increases in vegetative growth from the two leaf stage were observed. In glasshouse pot trials, down-regulation of GWD led to a 29% increase in grain yield while in glasshouse tub trials simulating field row spacing and canopy development, GWD down-regulation resulted in a grain yield increase of 26%. The enhanced yield resulted from a combination of increases in seed weight, tiller number, spikelets per head and seed number per spike. In field trials, all vegetative phenotypes were reproduced with the exception of increased tiller number. The expression of the transgene and suppression of endogenous GWD RNA levels were demonstrated to be grain specific. In addition to the direct effects of GWD down-regulation, an increased level of -amylase activity was present in the aleurone layer during grain maturation. These findings provide a potentially important novel mechanism to increase biomass and grain yield in crop improvement programmes.
机译:在小麦(Triticum aestivum)中鉴定了增加营养生物质和籽粒产量的新机制。 RNAi介导的葡聚糖,水直蛋白酶(GWD),淀粉磷酸化所需的初级酶的下调导致淀粉磷酸含量降低,粒度增加。意外地,在随后的几代中观察到营养生物量和谷物产量的一致增加。在降低GWD表达的线中,略微减少萌发率。然而,观察到两种叶室阶段的营养生长的显着增加。在Glasshouse Pot试验中,GWD的下调导致粮食产量增加29%,而在玻璃浴室试验中,模拟田径间距和树冠开发,GWD下调导致谷物产量增加26%。增强的产量是由于种子重量,耕作数,每穗种子数和种子数量的增加的组合产生。在现场试验中,除了增加的分蘖数外,所有植物表型均被复制。转基因和抑制内源性GWD RNA水平的表达被证明是晶粒特异性。除了GWD下调的直接效果之外,在谷物成熟期间,在阿仑酮层中存在增加的-Myl酶活性水平。这些发现提供了一种潜在重要的新机制,可以增加作物改善计划中的生物质和粮食产量。

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