Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Genetic Analysis of Physcomitrella patens Identifies ABSCISIC ACID NON-RESPONSIVE, a Regulator of ABA Responses Unique to Basal Land Plants and Required for Desiccation Tolerance
by
Schmutz, Jeremy
, Stevenson, Sean R.
, Cuming, Andrew C.
, Trinh, Chi H.
, Muchero, Wellington
, Lang, Daniel
, Grimwood, Jane
, Larsson, Anders
, Tuskan, Gerald A.
, Jenkins, Jerry W.
, Edwards, Thomas A.
, Wong, Gane K.-S.
, Reski, Ralf
, Melkonian, Michael
, Rothfels, Carl J.
, Kamisugi, Yasuko
, Rensing, Stefan A.
, Li, Fay-Wei
in
abscisic acid
/ Abscisic Acid - pharmacology
/ BASIC BIOLOGICAL SCIENCES
/ Bryopsida - drug effects
/ Bryopsida - genetics
/ Bryopsida - metabolism
/ Crystallography, X-Ray
/ Desiccation
/ desiccation tolerance
/ Droughts
/ Gene Expression Regulation, Plant - drug effects
/ Gene Expression Regulation, Plant - genetics
/ genetic mapping
/ kinase
/ land plant evolution
/ MAP3
/ Mutation
/ Osmotic Pressure
/ Phylogeny
/ Physcomitrella patens
/ Plant Proteins - chemistry
/ Plant Proteins - genetics
/ Plant Proteins - metabolism
/ Protein Structure, Secondary
/ targeted mutagenesis
2016
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Genetic Analysis of Physcomitrella patens Identifies ABSCISIC ACID NON-RESPONSIVE, a Regulator of ABA Responses Unique to Basal Land Plants and Required for Desiccation Tolerance
by
Schmutz, Jeremy
, Stevenson, Sean R.
, Cuming, Andrew C.
, Trinh, Chi H.
, Muchero, Wellington
, Lang, Daniel
, Grimwood, Jane
, Larsson, Anders
, Tuskan, Gerald A.
, Jenkins, Jerry W.
, Edwards, Thomas A.
, Wong, Gane K.-S.
, Reski, Ralf
, Melkonian, Michael
, Rothfels, Carl J.
, Kamisugi, Yasuko
, Rensing, Stefan A.
, Li, Fay-Wei
in
abscisic acid
/ Abscisic Acid - pharmacology
/ BASIC BIOLOGICAL SCIENCES
/ Bryopsida - drug effects
/ Bryopsida - genetics
/ Bryopsida - metabolism
/ Crystallography, X-Ray
/ Desiccation
/ desiccation tolerance
/ Droughts
/ Gene Expression Regulation, Plant - drug effects
/ Gene Expression Regulation, Plant - genetics
/ genetic mapping
/ kinase
/ land plant evolution
/ MAP3
/ Mutation
/ Osmotic Pressure
/ Phylogeny
/ Physcomitrella patens
/ Plant Proteins - chemistry
/ Plant Proteins - genetics
/ Plant Proteins - metabolism
/ Protein Structure, Secondary
/ targeted mutagenesis
2016
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Genetic Analysis of Physcomitrella patens Identifies ABSCISIC ACID NON-RESPONSIVE, a Regulator of ABA Responses Unique to Basal Land Plants and Required for Desiccation Tolerance
by
Schmutz, Jeremy
, Stevenson, Sean R.
, Cuming, Andrew C.
, Trinh, Chi H.
, Muchero, Wellington
, Lang, Daniel
, Grimwood, Jane
, Larsson, Anders
, Tuskan, Gerald A.
, Jenkins, Jerry W.
, Edwards, Thomas A.
, Wong, Gane K.-S.
, Reski, Ralf
, Melkonian, Michael
, Rothfels, Carl J.
, Kamisugi, Yasuko
, Rensing, Stefan A.
, Li, Fay-Wei
in
abscisic acid
/ Abscisic Acid - pharmacology
/ BASIC BIOLOGICAL SCIENCES
/ Bryopsida - drug effects
/ Bryopsida - genetics
/ Bryopsida - metabolism
/ Crystallography, X-Ray
/ Desiccation
/ desiccation tolerance
/ Droughts
/ Gene Expression Regulation, Plant - drug effects
/ Gene Expression Regulation, Plant - genetics
/ genetic mapping
/ kinase
/ land plant evolution
/ MAP3
/ Mutation
/ Osmotic Pressure
/ Phylogeny
/ Physcomitrella patens
/ Plant Proteins - chemistry
/ Plant Proteins - genetics
/ Plant Proteins - metabolism
/ Protein Structure, Secondary
/ targeted mutagenesis
2016
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Genetic Analysis of Physcomitrella patens Identifies ABSCISIC ACID NON-RESPONSIVE, a Regulator of ABA Responses Unique to Basal Land Plants and Required for Desiccation Tolerance
Journal Article
Genetic Analysis of Physcomitrella patens Identifies ABSCISIC ACID NON-RESPONSIVE, a Regulator of ABA Responses Unique to Basal Land Plants and Required for Desiccation Tolerance
2016
Request Book From Autostore
and Choose the Collection Method
Overview
The anatomically simple plants that first colonized land must have acquired molecular and biochemical adaptations to drought stress. Abscisic acid (ABA) coordinates responses leading to desiccation tolerance in all land plants. We identified ABA nonresponsive mutants in the model bryophyte Physcomitrella patens and genotyped a segregating population to map and identify the ABA NON-RESPONSIVE (ANR) gene encoding a modular protein kinase comprising an N-terminal PAS domain, a central EDR domain, and a C-terminal MAPKKK-like domain. anr mutants fail to accumulate dehydration tolerance-associated gene products in response to drought, ABA, or osmotic stress and do not acquire ABA-dependent desiccation tolerance. The crystal structure of the PAS domain, determined to 1.7-Å resolution, shows a conserved PAS-fold that dimerizes through a weak dimerization interface. Targeted mutagenesis of a conserved tryptophan residue within the PAS domain generates plants with ABA nonresponsive growth and strongly attenuated ABA-responsive gene expression, whereas deleting this domain retains a fully ABA-responsive phenotype. ANR orthologs are found in early-diverging land plant lineages and aquatic algae but are absent from more recently diverged vascular plants. We propose that ANR genes represent an ancestral adaptation that enabled drought stress survival of the first terrestrial colonizers but were lost during land plant evolution.
Publisher
American Society of Plant Biologists
This website uses cookies to ensure you get the best experience on our website.