首页> 外文期刊>Environmental and experimental botany >Phosphate transporters expression in rice (Oryza sativa L.) associated with arbuscular mycorrhizal fungi (AMF) colonization under different levels of arsenate stress.
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Phosphate transporters expression in rice (Oryza sativa L.) associated with arbuscular mycorrhizal fungi (AMF) colonization under different levels of arsenate stress.

机译:水稻(Oryza sativa L.)在不同水平的砷酸胁迫下与丛枝菌根真菌(AMF)定殖相关的磷酸转运蛋白表达。

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摘要

It is known that arsenate and phosphate (P) share the same transporters in plants, and arbuscular mycorrhizal fungi (AMF) influence the expressions of Pi transporters (OsPT1-13) in rice. In order to study the effects of AMF on arsenate accumulation in rice, Glomus intraradices (AH01) was inoculated to rice and treated with different levels of arsenate (0, 2 and 8 micro M). Results revealed that OsPT11 was increased whereas OsPT2 decreased (P<0.05) in mycorrhizal plants. The increased expression of OsPT11 was one of the most important factors that led to the significantly higher P concentration (P<0.05) in plant tissues, which compensated the down-regulation of OsPT2. The symbiosis of G. intraradices with rice slightly decreased (P>0.05) the arsenate concentration in plant tissues but markedly enhanced (P<0.05) plant biomass. The higher P content in mycorrhizal plants led to the higher P/As molar ratio (P<0.05) and lower As uptake ratio (P<0.05) in mycorrhizal plants treated by 2 micro M arsenate. Mycorrhizal plants under such an arsenate treatment took up less As by per unit of root dry mass. The inoculation of G. intraradices was not able to transform the inorganic As to organic As. Further studies should be conducted focusing on the transport activities of each Pi transporter using yeast or oocyte expression system to identify which Pi transporters are responsible for the accumulation of arsenate.
机译:众所周知,砷和磷酸盐(P)在植物中共享相同的转运蛋白,而丛枝菌根真菌(AMF)影响水稻中Pi转运蛋白(OsPT1-13)的表达。为了研究AMF对水稻中砷酸盐积累的影响,将Glomus intraradices(AH01)接种到水稻中并用不同水平的砷酸盐(0、2和8 micro M)处理。结果表明,在菌根植物中OsPT11增加而OsPT2减少(P <0.05)。 OsPT11表达的增加是导致植物组织中P浓度显着升高(P <0.05)的最重要因素之一,弥补了OsPT2的下调。稻根内共生菌与水稻的共生关系略有降低(P> 0.05),但植物生物量明显增加(P <0.05)。菌根植物中较高的P含量导致2μM砷酸盐处理的菌根植物中较高的P / As摩尔比(P <0.05)和较低的As吸收比(P <0.05)。在这样的砷酸盐处理下的菌根植物每单位根干质量吸收的As较少。 G. intraradices的接种不能将无机As转化成有机As。应进一步研究使用酵母或卵母细胞表达系统的每个Pi转运蛋白的转运活性,以确定哪些Pi转运蛋白引起砷的积累。

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