Article
A single NLR gene confers resistance to leaf and stripe rust in wheat.
Nature communications - 15 Nov 2024
Sharma Davinder, Avni Raz, Gutierrez-Gonzalez Juan, Kumar Rakesh, Sela Hanan, Prusty Manas Ranjan, Shatil-Cohen Arava, Molnár István, Holušová Kateřina, Said Mahmoud, Doležel Jaroslav, Millet Eitan, Khazan-Kost Sofia, Landau Udi, Bethke Gerit, Sharon Or, Ezrati Smadar, Ronen Moshe, Maatuk Oxana, Eilam Tamar, Manisterski Jacob, Ben-Yehuda Pnina, Anikster Yehoshua, Matny Oadi, Steffenson Brian J, Mascher Martin, Brabham Helen J, Moscou Matthew J, Liang Yong, Yu Guotai, Wulff Brande B H, Muehlbauer Gary, Minz-Dub Anna, Sharon Amir
Abstract excerpt
Nucleotide-binding leucine-rich repeat (NLR) disease resistance genes typically confer resistance against races of a single pathogen. Here, we report that Yr87/Lr85, an NLR gene from Aegilops sharonensis and Aegilops longissima, confers resistance against both P. striiformis tritici (Pst) and Puccinia triticina (Pt) that cause stripe and leaf rust, respectively. Yr87/Lr85 confers resistance against Pst and Pt in...
Read the complete abstract on PubMedTopics
Share this publication in a Topic to start or enrich a Post.
