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Wheat ms5 male-sterility is induced by recessive homoeologous A and D genome non-specific lipid transfer proteins.

Plant J.. 2019; 
PallottaMargaret A,WarnerPatricia,KouidriAllan,TuckerElise J,BaesMathieu,SucheckiRadoslaw,Watson-HaighNathan,OkadaTakashi,GarciaMelissa,SandhuAjay,SinghManjit,WoltersPetra,AlbertsenMarc C,CiganA Mark,BaumannUte,Whitford
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摘要

Nuclear male-sterile mutants with non-conditional, recessive and strictly monogenic inheritance are useful for both hybrid and conventional breeding systems, and have long been a research focus for many crops. In allohexaploid wheat, however, genic redundancy results in rarity of such mutants, with the ethyl methanesulfonate-induced mutant ms5 among the few reported to date. Here, we identify TaMs5 as a glycosylphosphatidylinositol-anchored lipid transfer protein required for normal pollen exine development, and by transgenic complementation demonstrate that TaMs5-A restores fertility to ms5. We show ms5 locates to a centromere-proximal interval and has a sterility inheritance pattern modulated by... More

关键词

Triticum aestivum , ms5 ,genic,hybrid,lipid transfer protein,male-sterile,pollen,w