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解磷阴沟肠杆菌菌株ZSB14对水稻锌转运蛋白基因表达的影响

Expression of Zinc Transporter Genes in Rice as Influenced by Zinc-Solubilizing Enterobacter cloacae Strain ZSB14.

作者信息

Krithika Selvaraj, Balachandar Dananjeyan

机构信息

Department of Agricultural Microbiology, Tamil Nadu Agricultural University Coimbatore, India.

出版信息

Front Plant Sci. 2016 Apr 6;7:446. doi: 10.3389/fpls.2016.00446. eCollection 2016.

Abstract

Zinc (Zn) deficiency in major food crops has been considered as an important factor affecting the crop production and subsequently the human health. Rice (Oryza sativa) is sensitive to Zn deficiency and thereby causes malnutrition to most of the rice-eating Asian populations. Application of zinc solubilizing bacteria (ZSB) could be a sustainable agronomic approach to increase the soil available Zn which can mitigate the yield loss and consequently the nutritional quality of rice. Understanding the molecular interactions between rice and unexplored ZSB is useful for overcoming Zn deficiency problems. In the present study, the role of zinc solubilizing bacterial strain Enterobacter cloacae strain ZSB14 on regulation of Zn-regulated transporters and iron (Fe)-regulated transporter-like protein (ZIP) genes in rice under iron sufficient and deficient conditions was assessed by quantitative real-time reverse transcription PCR. The expression patterns of OsZIP1, OsZIP4, and OsZIP5 in root and shoot of rice were altered due to the Zn availability as dictated by Zn sources and ZSB inoculation. Fe sufficiency significantly reduced the root and shoot OsZIP1 expression, but not the OsZIP4 and OsZIP5 levels. Zinc oxide in the growth medium up-regulated all the assessed ZIP genes in root and shoot of rice seedlings. When ZSB was inoculated to rice seedlings grown with insoluble zinc oxide in the growth medium, the expression of root and shoot OsZIP1, OsZIP4, and OsZIP5 was reduced. In the absence of zinc oxide, ZSB inoculation up-regulated OsZIP1 and OsZIP5 expressions. Zinc nutrition provided to the rice seedling through ZSB-bound zinc oxide solubilization was comparable to the soluble zinc sulfate application which was evident through the ZIP genes' expression and the Zn accumulation in root and shoot of rice seedlings. These results demonstrate that ZSB could play a crucial role in zinc fertilization and fortification of rice.

摘要

主要粮食作物中的锌(Zn)缺乏被认为是影响作物产量进而影响人类健康的一个重要因素。水稻(Oryza sativa)对锌缺乏敏感,从而导致大多数以大米为主食的亚洲人群营养不良。应用解锌细菌(ZSB)可能是一种可持续的农艺方法,可增加土壤有效锌含量,减轻产量损失,进而改善水稻的营养品质。了解水稻与未开发的解锌细菌之间的分子相互作用,有助于克服锌缺乏问题。在本研究中,通过定量实时逆转录PCR评估了解锌细菌阴沟肠杆菌菌株ZSB14在铁充足和缺乏条件下对水稻中锌调节转运蛋白和铁(Fe)调节转运蛋白样蛋白(ZIP)基因调控的作用。由于锌源和解锌细菌接种所决定的锌有效性,水稻根和地上部分OsZIP1、OsZIP4和OsZIP5的表达模式发生了改变。铁充足显著降低了根和地上部分OsZIP1的表达,但对OsZIP4和OsZIP5水平没有影响。生长培养基中的氧化锌上调了水稻幼苗根和地上部分所有评估的ZIP基因的表达。当将解锌细菌接种到在生长培养基中含有不溶性氧化锌的水稻幼苗上时,根和地上部分OsZIP1、OsZIP4和OsZIP5的表达降低。在没有氧化锌的情况下,接种解锌细菌上调了OsZIP1和OsZIP5的表达。通过解锌细菌结合氧化锌溶解为水稻幼苗提供锌营养,与施用可溶性硫酸锌相当,这通过ZIP基因的表达以及水稻幼苗根和地上部分的锌积累得以体现。这些结果表明,解锌细菌在水稻的锌肥施用和强化方面可能发挥关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f128/4822286/6457b47a45d1/fpls-07-00446-g001.jpg

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