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Detailed reaction time-dependent morphological and component evolution was studied to understand the growth process of Mn3O4 nanorods.
For obtaining the advantages of high surface active sites, the electrocatalysts should combine both the morphological and component advantages.
For addressing these issues, we herein combined both of the morphological and component advantages to engineer an advanced monodispersed PdCu nanoalloy catalysts with ultrasmall diameter.
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Fourteen morphological and yield component traits (Table 1) were recorded in the CRF3 mapping population and parental lines.
In this study, we report QTL mapping for morphological and yield component traits in B. rapa and comparative map alignment between B. rapa, B. napus, B. juncea, and Arabidopsis thaliana to identify candidate genes and conserved QTL blocks between them.
To identify the functionally conserved loci between B. rapa with B. juncea and B. napus for morphological and yield component traits, comparative alignment of QTL maps was performed between these three species.
We aligned the QTL map of B. rapa from this study with the B. juncea map of Ramchiary et al. and B. napus QTL maps of Quijada et al. and Udall et al. to identify the structural and functional conservation of QTL blocks for important morphological and yield component traits.
Li et al. [ 51] recently identified QTL for morphological and yield component traits in duplicated regions within the A genome of B. rapa and in homoeologous regions between the A, B, and C genomes of B. rapa, B. juncea and B. napus, which supports the strong level of conservation between Brassica genomes.
Therefore, in the present study, we used chromosome-specific bacterial artificial chromosome-derived simple sequence repeats (BAC-SSRs) and gene specific markers, e.g. intron polymorphisms (IPs) and expressed sequenced tag-derived SSRs (EST-SSRs) to map QTL governing morphological and yield component traits.
We believe that adding more markers to generate a high-density map and a detailed comparison of QTL for common traits using different mapping populations of more Brassica species would give more detailed information about the conservation and diversification of genetic loci governing morphological and yield component traits.
These results point to the need to design composite structures of SnO2 nanoparticles with suitable morphological and conductivity components.
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