Javascript must be enabled to continue!
Destination-Selective Long-Distance Movement of Phloem Proteins
View through CrossRef
Abstract
The phloem macromolecular transport system plays a pivotal role in plant growth and development. However, little information is available regarding whether the long-distance trafficking of macromolecules is a controlled process or passive movement. Here, we demonstrate the destination-selective long-distance trafficking of phloem proteins. Direct introduction, into rice (Oryza sativa), of phloem proteins from pumpkin (Cucurbita maxima) was used to screen for the capacity of specific proteins to move long distance in rice sieve tubes. In our system, shoot-ward translocation appeared to be passively carried by bulk flow. By contrast, root-ward movement of the phloem RNA binding proteins 16-kD C. maxima phloem protein 1 (CmPP16-1) and CmPP16-2 was selectively controlled. When CmPP16 proteins were purified, the root-ward movement of CmPP16-1 became inefficient, suggesting the presence of pumpkin phloem factors that are responsible for determining protein destination. Gel-filtration chromatography and immunoprecipitation showed that CmPP16-1 formed a complex with other phloem sap proteins. These interacting proteins positively regulated the root-ward movement of CmPP16-1. The same proteins interacted with CmPP16-2 as well and did not positively regulate its root-ward movement. Our data demonstrate that, in addition to passive bulk flow transport, a destination-selective process is involved in long-distance movement control, and the selective movement is regulated by protein–protein interaction in the phloem sap.
Oxford University Press (OUP)
Title: Destination-Selective Long-Distance Movement of Phloem Proteins
Description:
Abstract
The phloem macromolecular transport system plays a pivotal role in plant growth and development.
However, little information is available regarding whether the long-distance trafficking of macromolecules is a controlled process or passive movement.
Here, we demonstrate the destination-selective long-distance trafficking of phloem proteins.
Direct introduction, into rice (Oryza sativa), of phloem proteins from pumpkin (Cucurbita maxima) was used to screen for the capacity of specific proteins to move long distance in rice sieve tubes.
In our system, shoot-ward translocation appeared to be passively carried by bulk flow.
By contrast, root-ward movement of the phloem RNA binding proteins 16-kD C.
maxima phloem protein 1 (CmPP16-1) and CmPP16-2 was selectively controlled.
When CmPP16 proteins were purified, the root-ward movement of CmPP16-1 became inefficient, suggesting the presence of pumpkin phloem factors that are responsible for determining protein destination.
Gel-filtration chromatography and immunoprecipitation showed that CmPP16-1 formed a complex with other phloem sap proteins.
These interacting proteins positively regulated the root-ward movement of CmPP16-1.
The same proteins interacted with CmPP16-2 as well and did not positively regulate its root-ward movement.
Our data demonstrate that, in addition to passive bulk flow transport, a destination-selective process is involved in long-distance movement control, and the selective movement is regulated by protein–protein interaction in the phloem sap.
Related Results
Conductivity of the phloem in
Mangifera indica
L.
Conductivity of the phloem in
Mangifera indica
L.
ABSTRACT
Mangifera indica
is the fifth most consumed fruit worldwide, and the most important in tropical regions, but its anato...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Managing a Mature Coastal Tourism Destination: The Case of Pattaya, Thailand
Managing a Mature Coastal Tourism Destination: The Case of Pattaya, Thailand
<p>This thesis develops the concept of destination management with a particular focus on the management of a local destination. It concentrates on seeking to understand what ...
Penetration of faba bean sieve elements by pea aphid does not trigger forisome dispersal
Penetration of faba bean sieve elements by pea aphid does not trigger forisome dispersal
AbstractImmediately after their stylets penetrate a phloem sieve element, aphids inject saliva into the sieve element for approximately 30–60 s before they begin to ingest phloem s...
Mediating role of authenticity in the relationship between destination image and destination loyalty
Mediating role of authenticity in the relationship between destination image and destination loyalty
Destination loyalty has become a topic that needs attention in tourism research, especially after the COVID-19 pandemic because it affects the number of visitors to tourist sites. ...
INTERNAL PHLOEM IN THE PULVINUS OF SOYBEAN PLANTS
INTERNAL PHLOEM IN THE PULVINUS OF SOYBEAN PLANTS
Glycine max, like many species of Fabaceae, has pulvini at the base of the petiole. In this structure, the vascular cylinder is constricted and consists of a ring of phloem surroun...
Manipulating Sucrose Proton Symporters to Understand Phloem Loading
Manipulating Sucrose Proton Symporters to Understand Phloem Loading
Phloem vascular tissues transport sugars synthesized by photosynthesis in mature leaves by a process called phloem loading in source tissues and unloading in sink tissues. Phloem l...
Does long-distance GABA signaling via the phloem really occur?
Does long-distance GABA signaling via the phloem really occur?
The ubiquitous nonprotein amino acid known as γ-aminobutyrate (GABA) has been proposed as a mechanism whereby environmental and developmental cues are translocated in phloem. Infor...

