A Roadmap toward Engineered Nitrogen-Fixing Nodule Symbiosis

In the late 19th century, it was discovered that legumes can establish a root nodule endosymbiosis with nitrogen-fixing rhizobia. Soon after, the question was raised whether it is possible to transfer this trait to non-leguminous crops. In the past century, an ever-increasing amount of knowledge pro...

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Main Authors: Rik Huisman, Rene Geurts
Format: Article
Language:English
Published: Elsevier 2020-01-01
Series:Plant Communications
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590346219300197
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spelling doaj-cdd7fe8564fa4319b4ddc5b8172ae2772020-11-25T03:21:58ZengElsevierPlant Communications2590-34622020-01-0111A Roadmap toward Engineered Nitrogen-Fixing Nodule SymbiosisRik Huisman0Rene Geurts1Wageningen University, Department of Plant Sciences, Laboratory of Molecular Biology, Droevendaalsesteeg 1, Wageningen 6708PB, The NetherlandsCorresponding author; Wageningen University, Department of Plant Sciences, Laboratory of Molecular Biology, Droevendaalsesteeg 1, Wageningen 6708PB, The NetherlandsIn the late 19th century, it was discovered that legumes can establish a root nodule endosymbiosis with nitrogen-fixing rhizobia. Soon after, the question was raised whether it is possible to transfer this trait to non-leguminous crops. In the past century, an ever-increasing amount of knowledge provided unique insights into the cellular, molecular, and genetic processes controlling this endosymbiosis. In addition, recent phylogenomic studies uncovered several genes that evolved to function specifically to control nodule formation and bacterial infection. However, despite this massive body of knowledge, the long-standing objective to engineer the nitrogen-fixing nodulation trait on non-leguminous crop plants has not been achieved yet. In this review, the unsolved questions and engineering strategies toward nitrogen-fixing nodulation in non-legume plants are discussed and highlighted.http://www.sciencedirect.com/science/article/pii/S2590346219300197nodulationlegumesactinorhizal plantsParasponiaengineering nitrogen fixation
collection DOAJ
language English
format Article
sources DOAJ
author Rik Huisman
Rene Geurts
spellingShingle Rik Huisman
Rene Geurts
A Roadmap toward Engineered Nitrogen-Fixing Nodule Symbiosis
Plant Communications
nodulation
legumes
actinorhizal plants
Parasponia
engineering nitrogen fixation
author_facet Rik Huisman
Rene Geurts
author_sort Rik Huisman
title A Roadmap toward Engineered Nitrogen-Fixing Nodule Symbiosis
title_short A Roadmap toward Engineered Nitrogen-Fixing Nodule Symbiosis
title_full A Roadmap toward Engineered Nitrogen-Fixing Nodule Symbiosis
title_fullStr A Roadmap toward Engineered Nitrogen-Fixing Nodule Symbiosis
title_full_unstemmed A Roadmap toward Engineered Nitrogen-Fixing Nodule Symbiosis
title_sort roadmap toward engineered nitrogen-fixing nodule symbiosis
publisher Elsevier
series Plant Communications
issn 2590-3462
publishDate 2020-01-01
description In the late 19th century, it was discovered that legumes can establish a root nodule endosymbiosis with nitrogen-fixing rhizobia. Soon after, the question was raised whether it is possible to transfer this trait to non-leguminous crops. In the past century, an ever-increasing amount of knowledge provided unique insights into the cellular, molecular, and genetic processes controlling this endosymbiosis. In addition, recent phylogenomic studies uncovered several genes that evolved to function specifically to control nodule formation and bacterial infection. However, despite this massive body of knowledge, the long-standing objective to engineer the nitrogen-fixing nodulation trait on non-leguminous crop plants has not been achieved yet. In this review, the unsolved questions and engineering strategies toward nitrogen-fixing nodulation in non-legume plants are discussed and highlighted.
topic nodulation
legumes
actinorhizal plants
Parasponia
engineering nitrogen fixation
url http://www.sciencedirect.com/science/article/pii/S2590346219300197
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