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A Receptor Kinase-Like Protein Encoded by the Rice Disease Resistance Gene, Xa21

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TLDR
The rice Xa21 gene, which confers resistance to Xanthomonas oryzae pv. race 6, was isolated by positional cloning and the sequence of the predicted protein, which carries both a leucine-rich repeat motif and a serine-threonine kinase-like domain, suggests a role in cell surface recognition of a pathogen ligand and subsequent activation of an intracellular defense response.
Abstract
The rice Xa21 gene, which confers resistance to Xanthomonas oryzae pv. oryzae race 6, was isolated by positional cloning. Fifty transgenic rice plants carrying the cloned Xa21 gene display high levels of resistance to the pathogen. The sequence of the predicted protein, which carries both a leucine-rich repeat motif and a serine-threonine kinase-like domain, suggests a role in cell surface recognition of a pathogen ligand and subsequent activation of an intracellular defense response. Characterization of Xa21 should facilitate understanding of plant disease resistance and lead to engineered resistance in rice.

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Title
A receptor kinase-like protein encoded by the rice disease resistance gene, Xa21.
Permalink
https://escholarship.org/uc/item/4x0247kj
Journal
Science (New York, N.Y.), 270(5243)
ISSN
0036-8075
Authors
Song, W Y
Wang, G L
Chen, L L
et al.
Publication Date
1995-12-15
Peer reviewed
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University of California




Citations
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Thirty years of resistance: Zig-zag through the plant immune system

TL;DR: The signaling pathways, physiological responses, and molecular regulation of both PRR- and NLR-mediated immunity are reviewed, highlighting challenges and perspectives for future research.
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Use of arabidopsis for genetic dissection of plant defense responses

TL;DR: A large number of mutations have been identified in Arabidopsis that cause a wide variety of specific defense-related phenotypes and analysis of these mutant phenotypes is beginning to give glimpses into the complex signal transduction pathways leading to the induction of the defense responses involved in protecting plants from pathogen infection.
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A novel gene, Pi40(t), linked to the DNA markers derived from NBS-LRR motifs confers broad spectrum of blast resistance in rice

TL;DR: This study based on new gene identification strategies provides insight into novel genetic resources for blast resistance as well as future studies on cloning and functional analysis of a blast resistance gene useful for rice improvement.
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Inferences on the genome structure of progenitor maize through comparative analysis of rice, maize and the domesticated panicoids.

TL;DR: Charting of the macroevolutionary steps leading to the modern maize genome clarifies the interpretation of intercladal comparative maps and facilitates alignments and genomic cross-referencing of genes and phenotypes among grass family members.
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Inheritance of partial resistance against Colletotrichum lindemuthianum in Phaseolus vulgaris and co-localization of quantitative trait loci with genes involved in specific resistance.

TL;DR: A reliable test was developed to score partial resistance in aerial organs of the plant (stem, leaf, petiole) under controlled growth chamber conditions and BAT93 was more resistant than JaloEEP558 regardless of the organ or strain tested.
References
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Basic Local Alignment Search Tool

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TL;DR: Phylogenetic mapping of the conserved protein kinase catalytic domains can serve as a useful first step in the functional characterization of these newly identified family members.
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Signal sequences: The limits of variation

TL;DR: The results show subtle differences between eukaryotic and prokaryotic sequences, but the general impression of signal sequences as being highly variable is reinforced.
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Signaling by Receptor Tyrosine Kinases

TL;DR: The epidermal growth factor receptor (EGFR) is one member of the ERBB family of transmembrane gly-coprotein tyrosine receptor kinases (RTK) and stimulates intracellular signal transduction cascades that are involved in regulating cellular proliferation, differentiation, and survival.
Journal ArticleDOI

Map-based cloning of a protein kinase gene conferring disease resistance in tomato

TL;DR: A yeast artificial chromosome clone that spans the Pto region was identified and used to probe a leaf complementary DNA (cDNA) library, suggesting a role for Pto in a signal transduction pathway.
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