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Mapping of Quantitative Trait Loci Related to Primary Rice Root Growth As a Response to Inoculation with Sp. Strain B510

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Specialty Biology
Date 2018 Sep 15
PMID 30214671
Citations 2
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Abstract

sp. strain B510 has been known as the plant growth-promoting endophyte; however, the growth-promotion effect is dependent on the plant genotype. Here, we aimed to identify quantitative trait loci (QTL) related to primary root length in rice at the seedling stage as a response to inoculation with B510. The primary root length of "Nipponbare" was significantly reduced by inoculation with B510, whereas that of "Kasalath" was not affected. Thus, we examined 98 backcrossed inbred lines and four chromosome segment substitution lines (CSSL) derived from a cross between Nipponbare and Kasalath. The primary root length was measured as a response to inoculation with B510, and the relative root length (RRL) was calculated based on the response to non-inoculation. Three QTL alleles, and on Chromosome (Chr.) 6 and on Chr. 7 derived from Kasalath increased primary root length with inoculation (RLI), without inoculation, (RLC) and RRL and explained 20.2%, 21.3%, and 11.9% of the phenotypic variation, respectively. CSSL33, in which substitution occurred in the vicinity region of , showed a completely different response to inoculation with B510 compared with Nipponbare. Therefore, we suggest that might strongly control root growth in response to inoculation with sp. strain B510.

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References
1.
Steenhoudt O, Vanderleyden J . Azospirillum, a free-living nitrogen-fixing bacterium closely associated with grasses: genetic, biochemical and ecological aspects. FEMS Microbiol Rev. 2000; 24(4):487-506. DOI: 10.1111/j.1574-6976.2000.tb00552.x. View

2.
Chamam A, Sanguin H, Bellvert F, Meiffren G, Comte G, Wisniewski-Dye F . Plant secondary metabolite profiling evidences strain-dependent effect in the Azospirillum-Oryza sativa association. Phytochemistry. 2012; 87:65-77. DOI: 10.1016/j.phytochem.2012.11.009. View

3.
Mano H, Morisaki H . Endophytic bacteria in the rice plant. Microbes Environ. 2011; 23(2):109-17. DOI: 10.1264/jsme2.23.109. View

4.
Drogue B, Sanguin H, Chamam A, Mozar M, Llauro C, Panaud O . Plant root transcriptome profiling reveals a strain-dependent response during Azospirillum-rice cooperation. Front Plant Sci. 2014; 5:607. PMC: 4222233. DOI: 10.3389/fpls.2014.00607. View

5.
Elbeltagy A, Nishioka K, Sato T, Suzuki H, Ye B, Hamada T . Endophytic colonization and in planta nitrogen fixation by a Herbaspirillum sp. isolated from wild rice species. Appl Environ Microbiol. 2001; 67(11):5285-93. PMC: 93302. DOI: 10.1128/AEM.67.11.5285-5293.2001. View