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[基于亚磷酸及其脱氢酶建立植物磷素利用与杂草控制系统]

[Establishment of a plant phosphorus utilization and weed control system based on phosphite and its dehydrogenase].

作者信息

Yu Guizhen, Yuan Hang, Luo Zhu, Liu Yanjuan, Liu Xian, Gao Yanxiu, Gong Ming, Zou Zhurong

机构信息

Engineering Research Center of Sustainable Development and Utilization of Biomass Energy, Ministry of Education, School of Life Sciences, Yunnan Normal University, Kunming 650500, Yunnan, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2019 Feb 25;35(2):327-336. doi: 10.13345/j.cjb.180158.

Abstract

Nowadays, available phosphorus (P) deficiency in soil and weed resistance to herbicides have emerged as two severe limiting factors for sustainable agriculture. Therefore, it is of urgent needs to improve plant absorption/utilization ability of the soil P, seek phosphate (Pi)-alternative P fertilizers, and develop new forms of weed control systems. Phosphite (Phi), as a P resource of relatively high amount only less than Pi in Earth, can be converted to utilizable Pi uniquely in some bacterial species by oxidization via its specific dehydrogenase (PTDH), but inhibits plant growth and development. This implies that Phi might rather become a suitable P fertilizer for plants if introducing a PTDH detoxifier from bacteria. Herein, we created the transgenic tobaccos harboring a Pseudomonas PTDH gene (PsPtx) amplified from the soil metagenome previously. RT-PCR showed that the exotic PsPtx gene could express similarly in root, stem and leaf tissues of all transgenic lines. PsPtx transgenic tobaccos could utilize Phi by oxidization as the sole Pi supply, and also outperformed wild-type tobacco with a remarkably dominant growth under Phi stress conditions. Moreover, the PsPtx gene was preliminarily evaluated with a notable quality as a potential candidate of the selection marker in plant genetic transformation. Conclusively, PsPtx and its encoded phosphite dehydrogenase might be applicable for developing a dual system of plant phosphorus utilization and weed control using Phi as P fertilizer and herbicide, and provide an effectual solution to some obstacles in the current crop transgenic studies.

摘要

如今,土壤中有效磷(P)缺乏以及杂草对除草剂的抗性已成为可持续农业的两个严重限制因素。因此,迫切需要提高植物对土壤磷的吸收/利用能力,寻找替代磷酸盐(Pi)的磷肥,并开发新的杂草控制系统形式。亚磷酸盐(Phi)作为地球上含量仅次于Pi的相对大量的磷资源,可通过其特定的脱氢酶(PTDH)氧化,在某些细菌物种中独特地转化为可利用的Pi,但会抑制植物生长发育。这意味着,如果从细菌中引入PTDH解毒剂,Phi可能会成为适合植物的磷肥。在此,我们创建了携带先前从土壤宏基因组中扩增的假单胞菌PTDH基因(PsPtx)的转基因烟草。RT-PCR表明,外来的PsPtx基因在所有转基因系的根、茎和叶组织中表达相似。PsPtx转基因烟草可以通过氧化将Phi作为唯一的Pi来源加以利用,并且在Phi胁迫条件下,其生长明显优于野生型烟草。此外,PsPtx基因作为植物遗传转化中选择标记的潜在候选基因,经过了初步评估,具有显著特性。总之,PsPtx及其编码的亚磷酸脱氢酶可能适用于开发一种双重系统,即利用Phi作为磷肥和除草剂,实现植物磷利用和杂草控制,为当前作物转基因研究中的一些障碍提供有效的解决方案。

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