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Lingru Xue

Publications and source records attributed to Lingru Xue.

2 recordsLinked to original sources

The MsPRP2 promoter enables strong heterologous gene expression in a root-specific manner and is enhanced by overexpression of Alfin 1.

Promoter specificity and efficiency of utilization are essential for endogenous and transgene expression. Selective root expression remains to be defined in terms of both promoter elements and transcription factors that provide high levels of ubiquitous expression. We characterized expression from the MsPRP2 promoter with the green fluorescent protein (GFP) reporter transgene in alfalfa (Medicago sativa) and found that a promoter fragment (+1 to -652 bp) retained the root and callus specificity of the endogenous MsPRP2 gene and hence this promoter fragment contains elements necessary for root-specific expression. The strong ubiquitous expression obtained from this promoter was comparable to that of the CaMV 35S promoter in roots and was enhanced by transgenic overexpression of Alfin 1, a root- and callus-specific transcription factor in alfalfa. No transgenic expression was obtained in leaves with this promoter in the presence or absence of Alfin 1. The increased expression of GFP in alfalfa containing the Alfin 1 transgene confirms the function of Alfin 1 binding sites in the MsPRP2 promoter fragment and also indicates that Alfin 1 concentrations are limiting for maximal expression in calli and roots. These findings characterize the MsPRP2 promoter as a novel root- and callus-specific promoter of plant origin that can be used as an effective tool for strong root-directed gene expression. In addition, we have demonstrated that the signal sequence of MsPRP2 can be used for efficient secretion of transgene products from callus and roots.

DNA-Binding Proteins↗

Re-examining alveolate evolution using multiple protein molecular phylogenies.

Alveolates are a diverse group of protists that includes three major lineages: ciliates, apicomplexa, and dinoflagellates. Among these three, it is thought that the apicomplexa and dinoflagellates are more closely related to one another than to ciliates. However, this conclusion is based almost entirely on results from ribosomal RNA phylogeny because very few morphological characters address this issue and scant molecular data are available from dinoflagellates. To better examine the relationships between the three major alveolate groups, we have sequenced six genes from the non-photosynthetic dinoflagellate, Crypthecodinium cohnii: actin, beta-tubulin, hsp70, BiP, hsp90, and mitochondrial hsp10. Beta-tubulin, hsp70, BiP, and hsp90 were found to be useful for intra-alveolate phylogeny, and trees were inferred from these genes individually and in combination. Trees inferred from individual genes generally supported the apicomplexa-dinoflagellate grouping, as did a combined analysis of all four genes. However, it was also found that the outgroup had a significant effect on the topology within alveolates when using certain methods of phylogenetic reconstruction, and an alternative topology clustering dinoflagellates and ciliates could not be rejected by the combined data. Altogether, these results support the sisterhood of apicomplexa and dinoflagellates, but point out that the relationship is not as strong as is often assumed.

Animals↗