首页> 外文OA文献 >Rubisco catalytic properties of wild and domesticated relatives provide scope for improving wheat photosynthesis
【2h】

Rubisco catalytic properties of wild and domesticated relatives provide scope for improving wheat photosynthesis

机译:Rubisco野生和家养近缘种的催化特性为改善小麦的光合作用提供了空间

摘要

Rubisco is a major target for improving crop photosynthesis and yield, yet natural diversity in catalytic properties of this enzyme is poorly understood. Rubisco from 25 genotypes of the Triticeae tribe, including wild relatives of bread wheat (Triticum aestivum), were surveyed to identify superior enzymes for improving photosynthesis in this crop. In vitro Rubisco carboxylation velocity (V c), Michaelis-Menten constants for CO2 (K c) and O2 (K o) and specificity factor (S c/o) were measured at 25 and 35 °C. V c and K c correlated positively, while V c and S c/o were inversely related. Rubisco large subunit genes (rbcL) were sequenced, and predicted corresponding amino acid differences analysed in relation to the corresponding catalytic properties. The effect of replacing native wheat Rubisco with counterparts from closely related species was analysed by modelling the response of photosynthesis to varying CO2 concentrations. The model predicted that two Rubisco enzymes would increase photosynthetic performance at 25 °C while only one of these also increased photosynthesis at 35 °C. Thus, under otherwise identical conditions, catalytic variation in the Rubiscos analysed is predicted to improve photosynthetic rates at physiological CO2 concentrations. Naturally occurring Rubiscos with superior properties amongst the Triticeae tribe can be exploited to improve wheat photosynthesis and crop productivity.
机译:Rubisco是改善作物光合作用和产量的主要目标,但对该酶催化特性的自然多样性了解甚少。调查了来自小麦属25个基因型的Rubisco,包括面包小麦的野生近缘种(Triticum aestivum),以确定改善该作物光合作用的优良酶。在25和35°C下测量了体外Rubisco羧化速度(V c),CO2和K2的Michaelis-Menten常数(K o)和特异性因子(S c / o)。 V c和K c呈正相关,而V c和S c / o呈负相关。 Rubisco大亚基基因(rbcL)进行了测序,并预测了与相应的催化性能相关的预测的相应氨基酸差异。通过对光合作用对变化的CO2浓度的响应进行建模,分析了用密切相关物种的对应品种替代天然小麦Rubisco的效果。该模型预测,两种Rubisco酶在25°C时将提高光合作用性能,而其中只有一种在35°C时也会提高光合作用。因此,在其他条件相同的情况下,预计在所分析的Rubiscos中的催化变化将提高生理性CO2浓度下的光合速率。可以在小麦属部落中利用天然存在的具有优良特性的Rubiscos来改善小麦的光合作用和提高作物的生产力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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