The MLO1 powdery mildew susceptibility gene in Lathyrus species: The power of high-density linkage maps in comparative mapping and synteny analysis.

Publication Overview
TitleThe MLO1 powdery mildew susceptibility gene in Lathyrus species: The power of high-density linkage maps in comparative mapping and synteny analysis.
AuthorsSantos C, Polanco C, Rubiales D, Vaz Patto MC
TypeJournal Article
Journal NameThe plant genome
Year2021
Page(s)e20090
CitationSantos C, Polanco C, Rubiales D, Vaz Patto MC. The MLO1 powdery mildew susceptibility gene in Lathyrus species: The power of high-density linkage maps in comparative mapping and synteny analysis.. The plant genome. 2021 May 07; e20090.

Abstract

Powdery mildews are major diseases for a range of crops. The loss of function of specific Mildew Locus O (MLO) genes has long been associated with pre-haustorial plant resistance to powdery mildew and has proven to be durable in several species. Erysiphe pisi is the major causal agent of powdery mildew in pea (Pisum sativum L.) and in the closely related Lathyrus sativus L. and Lathyrus cicera L. PsMLO1 has been extensively studied in pea. However, no MLO gene family members have been isolated and characterized in Lathyrus species so far. In this study, MLO1 genes were isolated and characterized in L. sativus and L. cicera genotypes with varied levels of partial resistance against powdery mildew. Phylogenetic analyses confirmed that Lathyrus MLO1 belongs to Clade V, like all dicot MLO proteins associated with powdery mildew susceptibility. A L. sativus recombinant inbred line population (RIL) was genotyped by sequencing to develop a high-density L. sativus genetic linkage map. DNA sequence polymorphisms between the analyzed genotypes allowed the location of MLO1 in the newly developed L. sativus RIL genetic linkage map. Subsequent comparative mapping between L. sativus and L. cicera genetic maps and P. sativum, Lens culinaris Medik., and Medicago truncatula Gaertn. reference genomes revealed important aspects of the conservation of the MLO1 locus position and of the overall chromosomal rearrangements occurring during legume evolution, with relevance to legume disease resistance breeding programs.

Features
This publication contains information about 16,184 features:
Feature NameUniquenameType
UNL21_39731888_19:C>TUNL21_39731888_19:C>Tgenetic_marker
UNL21_39731893_26:C>TUNL21_39731893_26:C>Tgenetic_marker
UNL21_39731898_30:C>TUNL21_39731898_30:C>Tgenetic_marker
UNL21_39731910_19:G>AUNL21_39731910_19:G>Agenetic_marker
UNL21_39731925_12:C>TUNL21_39731925_12:C>Tgenetic_marker
UNL21_39731941UNL21_39731941genetic_marker
UNL21_39731954_18:T>AUNL21_39731954_18:T>Agenetic_marker
UNL21_39731955_5:C>TUNL21_39731955_5:C>Tgenetic_marker
UNL21_39731973_18:G>AUNL21_39731973_18:G>Agenetic_marker
UNL21_39731976_14:C>GUNL21_39731976_14:C>Ggenetic_marker
UNL21_39731981_7:C>AUNL21_39731981_7:C>Agenetic_marker
UNL21_39731986_5:G>AUNL21_39731986_5:G>Agenetic_marker
UNL21_39731988_18:A>GUNL21_39731988_18:A>Ggenetic_marker
UNL21_39731998_19:C>AUNL21_39731998_19:C>Agenetic_marker
UNL21_39732000_19:T>CUNL21_39732000_19:T>Cgenetic_marker
UNL21_39732007_16:T>AUNL21_39732007_16:T>Agenetic_marker
UNL21_39732008_7:G>AUNL21_39732008_7:G>Agenetic_marker
UNL21_39732014_29:C>GUNL21_39732014_29:C>Ggenetic_marker
UNL21_39732017_18:C>GUNL21_39732017_18:C>Ggenetic_marker
UNL21_39732036UNL21_39732036genetic_marker
UNL21_39732042_61:C>TUNL21_39732042_61:C>Tgenetic_marker
UNL21_39732044UNL21_39732044genetic_marker
UNL21_39732114UNL21_39732114genetic_marker
UNL21_39732122_33:A>GUNL21_39732122_33:A>Ggenetic_marker
UNL21_39732141_54:T>CUNL21_39732141_54:T>Cgenetic_marker

Pages

Featuremaps
This publication contains information about 1 maps:
Map Name
Lathyrus-Raipur-4/LS87-124-4-1-RIL
Stocks
This publication contains information about 3 stocks:
Stock NameUniquenameType
Raipur-4Raipur-4accession
LS87-124-4-1LS87-124-4-1accession
Raipur-4/LS87-124-4-1-RILRaipur-4/LS87-124-4-1-RILpopulation
Properties
Additional details for this publication include:
Property NameValue
Publication ModelPrint-Electronic
ISSN1940-3372
eISSN1940-3372
Publication Date2021 May 07
Journal AbbreviationPlant Genome
DOI10.1002/tpg2.20090
Elocation10.1002/tpg2.20090
Copyright© 2021 The Authors. The Plant Genome published by Wiley Periodicals LLC on behalf of Crop Science Society of America.
LanguageEnglish
Language Abbreng
Publication TypeJournal Article
Journal CountryUnited States