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      Plastome Phylogenomics of Aucuba (Garryaceae)

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          Abstract

          Aucuba (Garryaceae), which includes approximately ten evergreen woody species, is a genus endemic to East Asia. Their striking morphological features give Aucuba species remarkable ornamental value. Owing to high levels of morphological divergence and plasticity, species definitions of Aucuba remain perplexing and problematic. Here, we sequenced and characterized the complete plastid genomes (plastomes) of three Aucuba species: Aucuba chlorascens, Aucuba eriobotryifolia, and Aucuba japonica. Incorporating Aucuba plastomes available in GenBank, a total of seven Aucuba plastomes, representing six out of ten species of Aucuba, were used for comparative plastome analysis, phylogenetic analysis and divergence time estimation in this study. Comparative analyses revealed that plastomes of Aucuba are highly conserved in size, structure, gene content, and organization, and exhibit high levels of sequence similarity. Phylogenetic reconstruction based on 68 plastid protein-coding genes strongly supported the monophyly of Garryales, Garryaceae and Aucuba. Aucuba eriobotryifolia was sister to the other Aucuba species examined, consistent with its unique fused anther locule. The divergence time of Aucuba was estimated to be approximately late Miocene. Extant Aucuba species derived from recent divergence events associated with the establishment of monsoonal climates in East Asia and climatic fluctuations.

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          MAFFT Multiple Sequence Alignment Software Version 7: Improvements in Performance and Usability

          We report a major update of the MAFFT multiple sequence alignment program. This version has several new features, including options for adding unaligned sequences into an existing alignment, adjustment of direction in nucleotide alignment, constrained alignment and parallel processing, which were implemented after the previous major update. This report shows actual examples to explain how these features work, alone and in combination. Some examples incorrectly aligned by MAFFT are also shown to clarify its limitations. We discuss how to avoid misalignments, and our ongoing efforts to overcome such limitations.
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            ModelFinder: Fast Model Selection for Accurate Phylogenetic Estimates

            Model-based molecular phylogenetics plays an important role in comparisons of genomic data, and model selection is a key step in all such analyses. We present ModelFinder, a fast model-selection method that greatly improves the accuracy of phylogenetic estimates. The improvement is achieved by incorporating a model of rate-heterogeneity across sites not previously considered in this context, and by allowing concurrent searches of model-space and tree-space.
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              IQ-TREE 2: New Models and Efficient Methods for Phylogenetic Inference in the Genomic Era

              Abstract IQ-TREE (http://www.iqtree.org, last accessed February 6, 2020) is a user-friendly and widely used software package for phylogenetic inference using maximum likelihood. Since the release of version 1 in 2014, we have continuously expanded IQ-TREE to integrate a plethora of new models of sequence evolution and efficient computational approaches of phylogenetic inference to deal with genomic data. Here, we describe notable features of IQ-TREE version 2 and highlight the key advantages over other software.
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                Author and article information

                Contributors
                Journal
                Front Genet
                Front Genet
                Front. Genet.
                Frontiers in Genetics
                Frontiers Media S.A.
                1664-8021
                24 January 2022
                2022
                : 13
                : 753719
                Affiliations
                [1] 1 School of Life Sciences , Yunnan Normal University , Kunming, China
                [2] 2 Yunnan General Administration of Foresty Seeds and Seedlings , Kunming, China
                [3] 3 Chinese Medicinal Resources Co. LTD , Yunnan Baiyao Group , Kunming, China
                [4] 4 CAS Key Laboratory for Plant Diversity and Biogeography of East Asia , Kunming Institute of Botany , Chinese Academy of Sciences , Kunming, China
                Author notes

                Edited by: Abdelfattah Badr, Helwan University, Egypt

                Reviewed by: Gitanjali Yadav, National Institute of Plant Genome Research (NIPGR), India

                Senthil Natesan, Tamil Nadu Agricultural University, India

                *Correspondence: Yuan Huang, huangyuanynnu@ 123456aliyun.com ; Jiahui Chen, chenjh@ 123456mail.kib.ac.cn
                [ † ]

                These authors have contributed equally to this work

                This article was submitted to Plant Genomics, a section of the journal Frontiers in Genetics

                Article
                753719
                10.3389/fgene.2022.753719
                8819091
                35140747
                07c671b2-68a7-4788-abc1-ca0767b8ddaa
                Copyright © 2022 Huang, Fan, Huang, Zhou, Chen and Chen.

                This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.

                History
                : 05 August 2021
                : 04 January 2022
                Funding
                Funded by: Foundation for Innovative Research Groups of the National Natural Science Foundation of China , doi 10.13039/501100012659;
                Award ID: 31960050
                Categories
                Genetics
                Original Research

                Genetics
                garryales,garryaceae,aucuba,phylogenomics,molecular dating
                Genetics
                garryales, garryaceae, aucuba, phylogenomics, molecular dating

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