Abstract Background Substance transport in higher land plants is mediated by vascular bundles, consisting of phloem and xylem strands that interconnect all plant organs. While the phloem mainly allocates photoassimilates, the role of the xylem is the transport of water and inorganic nutrients from roots to all aerial plant parts. Only recently it was noticed that in addition to mineral salts, xylem sap contains organic nutrients and even proteins. Although these proteins might have important impact on the performance of above-ground organs, only a few of them have been identified so far and their physiological functions are still unclear. Results We used root-pressure xylem exudate, collected from cut Brassica napus stems, to extract total ...
In higher plants, two vascular tissues, phloem and xylem, are responsible for the transport of water...
Brassica alboglabra (Chinese kale) is a vegetable extensively grown in Thailand, which has high nutr...
In higher plants, two vascular tissues, phloem and xylem, are responsible for the transport of water...
Background: Substance transport in higher land plants is mediated by vascular bundles, consisting of...
Background: Substance transport in higher land plants is mediated by vascular bundles, consisting of...
International audienceBrassica napus L. is an important crop plant, characterised by high nitrogen (...
International audienceBrassica napus L. is an important crop plant, characterised by high nitrogen (...
The main physiological roles of phloem and xylem in higher plants involve the transport of water, nu...
The main physiological roles of phloem and xylem in higher plants involve the transport of water, nu...
International audienceBrassica napus L. is an important crop plant, characterised by high nitrogen (...
Background: The transport of sugars, hormones, amino acids, proteins, sugar alcohols, and other orga...
12 Pags.- 4 Figs.- 4 Tabls. This article is part of a Special Issue entitled: Plant Proteomics — A ...
Seed oil bodies are intracellular particles to store lipids as food reserves in oleaginous plants. D...
Seed oil bodies are intracellular particles to store lipids as food reserves in oleaginous plants. D...
Analysis of the xylem sap proteome of Brassica oleracea reveals a high content in secreted protein
In higher plants, two vascular tissues, phloem and xylem, are responsible for the transport of water...
Brassica alboglabra (Chinese kale) is a vegetable extensively grown in Thailand, which has high nutr...
In higher plants, two vascular tissues, phloem and xylem, are responsible for the transport of water...
Background: Substance transport in higher land plants is mediated by vascular bundles, consisting of...
Background: Substance transport in higher land plants is mediated by vascular bundles, consisting of...
International audienceBrassica napus L. is an important crop plant, characterised by high nitrogen (...
International audienceBrassica napus L. is an important crop plant, characterised by high nitrogen (...
The main physiological roles of phloem and xylem in higher plants involve the transport of water, nu...
The main physiological roles of phloem and xylem in higher plants involve the transport of water, nu...
International audienceBrassica napus L. is an important crop plant, characterised by high nitrogen (...
Background: The transport of sugars, hormones, amino acids, proteins, sugar alcohols, and other orga...
12 Pags.- 4 Figs.- 4 Tabls. This article is part of a Special Issue entitled: Plant Proteomics — A ...
Seed oil bodies are intracellular particles to store lipids as food reserves in oleaginous plants. D...
Seed oil bodies are intracellular particles to store lipids as food reserves in oleaginous plants. D...
Analysis of the xylem sap proteome of Brassica oleracea reveals a high content in secreted protein
In higher plants, two vascular tissues, phloem and xylem, are responsible for the transport of water...
Brassica alboglabra (Chinese kale) is a vegetable extensively grown in Thailand, which has high nutr...
In higher plants, two vascular tissues, phloem and xylem, are responsible for the transport of water...