Phosphatidylcholine‐deficient suppressor mutant of Sinorhizobium meliloti, altered in fatty acid synthesis, partially recovers nodulation ability in symbiosis with alfalfa (Medicago sativa)

Author:

García‐Ledesma Juan Daniel1,Cárdenas‐Torres Luis2,Martínez‐Aguilar Lourdes1,Chávez‐Martínez Ana I.2,Lozano Luis1,López‐Lara Isabel M.1,Geiger Otto1ORCID

Affiliation:

1. Centro de Ciencias Genómicas Universidad Nacional Autónoma de México Avenida Universidad s/n Cuernavaca Morelos CP 62210 Mexico

2. Instituto de Biotecnología Universidad Nacional Autónoma de México Avenida Universidad 2001 Cuernavaca Morelos CP 62210 Mexico

Abstract

SUMMARYRhizobial phosphatidylcholine (PC) is thought to be a critical phospholipid for the symbiotic relationship between rhizobia and legume host plants. A PC‐deficient mutant of Sinorhizobium meliloti overproduces succinoglycan, is unable to swim, and lacks the ability to form nodules on alfalfa (Medicago sativa) host roots. Suppressor mutants had been obtained which did not overproduce succinoglycan and regained the ability to swim. Previously, we showed that point mutations leading to altered ExoS proteins can reverse the succinoglycan and swimming phenotypes of a PC‐deficient mutant. Here, we report that other point mutations leading to altered ExoS, ChvI, FabA, or RpoH1 proteins also revert the succinoglycan and swimming phenotypes of PC‐deficient mutants. Notably, the suppressor mutants also restore the ability to form nodule organs on alfalfa roots. However, nodules generated by these suppressor mutants express only low levels of an early nodulin, do not induce leghemoglobin transcript accumulation, thus remain white, and are unable to fix nitrogen. Among these suppressor mutants, we detected a reduced function mutant of the 3‐hydoxydecanoyl‐acyl carrier protein dehydratase FabA that produces reduced amounts of unsaturated and increased amounts of shorter chain fatty acids. This alteration of fatty acid composition probably affects lipid packing thereby partially compensating for the previous loss of PC and contributing to the restoration of membrane homeostasis.

Funder

Consejo Nacional de Ciencia y Tecnología

Dirección General de Asuntos del Personal Académico, Universidad Nacional Autónoma de México

National Science Foundation

National Center for Research Resources

Kansas State University

Publisher

Wiley

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