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双色蜡蘑水通道蛋白JQ585595的过表达改变了外生菌根白云杉(Picea glauca)幼苗的根系水分运输特性。

Overexpression of Laccaria bicolor aquaporin JQ585595 alters root water transport properties in ectomycorrhizal white spruce (Picea glauca) seedlings.

作者信息

Xu Hao, Kemppainen Minna, El Kayal Walid, Lee Seong Hee, Pardo Alejandro G, Cooke Janice E K, Zwiazek Janusz J

机构信息

Department of Renewable Resources, University of Alberta, Edmonton, AB, T6G 2E3, Canada.

出版信息

New Phytol. 2015 Jan;205(2):757-70. doi: 10.1111/nph.13098. Epub 2014 Oct 17.

Abstract

The contribution of hyphae to water transport in ectomycorrhizal (ECM) white spruce (Picea glauca) seedlings was examined by altering expression of a major water-transporting aquaporin in Laccaria bicolor. Picea glauca was inoculated with wild-type (WT), mock transgenic or L. bicolor aquaporin JQ585595-overexpressing (OE) strains and exposed to root temperatures ranging from 5 to 20°C to examine the root water transport properties, physiological responses and plasma membrane intrinsic protein (PIP) expression in colonized plants. Mycorrhization increased shoot water potential, transpiration, net photosynthetic rates, root hydraulic conductivity and root cortical cell hydraulic conductivity in seedlings. At 20°C, OE plants had higher root hydraulic conductivity compared with WT plants and the increases were accompanied by higher expression of P. glauca PIP GQ03401_M18.1 in roots. In contrast to WT L. bicolor, the effects of OE fungi on root and root cortical cell hydraulic conductivities were abolished at 10 and 5°C in the absence of major changes in the examined transcript levels of P. glauca root PIPs. The results provide evidence for the importance of fungal aquaporins in root water transport of mycorrhizal plants. They also demonstrate links between hyphal water transport, root aquaporin expression and root water transport in ECM plants.

摘要

通过改变双色蜡蘑中一种主要的水分运输水通道蛋白的表达,研究了菌丝对外生菌根(ECM)白云杉(Picea glauca)幼苗水分运输的贡献。将白云杉接种野生型(WT)、模拟转基因或双色蜡蘑水通道蛋白JQ585595过表达(OE)菌株,并使其根系温度在5至20°C范围内变化,以研究定殖植物的根系水分运输特性、生理反应和质膜内在蛋白(PIP)表达。菌根化提高了幼苗的地上部水势、蒸腾作用、净光合速率、根系水力导度和根皮层细胞水力导度。在20°C时,OE植株的根系水力导度高于WT植株,且这种增加伴随着白云杉PIP GQ03401_M18.1在根系中更高的表达。与WT双色蜡蘑不同,在10°C和5°C时,OE真菌对根系和根皮层细胞水力导度的影响消失,而白云杉根系PIPs的检测转录水平没有发生重大变化。这些结果证明了真菌水通道蛋白在菌根植物根系水分运输中的重要性。它们还揭示了菌丝水分运输、根水通道蛋白表达和ECM植物根系水分运输之间的联系。

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