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3篇 您的检索式:作者名="Gregory Bonito"
    题名 作者 年代 出处 被引量
1Efficient Micropropagation of Chestnut Hybrids(Castanea spp.)Using Modified Woody Plant Medium and Zeatin Riboside显示文摘The chestnuts genus(Castanea spp.)is comprised of economically important trees native to the Northern hemisphere that are used as food and hardwood timber.Here,a very efficient method for micropropagation of European×Japanese chestnut hybrids(Castanea sativa×C.crenata)is described.Woody Plant Medium was used as the basal medium.In vitro shoots of four rootstock cultivars were micropropagated without shoot-tip necrosis on multiplication medium containing 5.7 or 11.4μmol·L^(−1)zeatin riboside,and were rooted on rooting medium containing 2.46μmol·L^(−1)indolebutyric acid.Monthly shootmultiplication rates for each cultivarwere 2–5 folds.In vitro rooting percentages for four cultivars were 87%for‘Maraval’,67%for‘Marigoule’,93%for‘Marsol’,and 97%for‘Précoce Migoule’.Within a 5 week period,80%–95%of rooted shoots were successfully acclimated under high humidity conditions after they were planted in either soil or rockwool.Guoqing Song Qiuxia Chen Pete Callow Mario Mandujano Xiaoyan Han Beatriz Cuenca Gregory Bonito Carmen Medina-Mora Dennis Wayne Fulbright Daniel EGuyer 2021Horticultural Plant Journal2021,7,2:2
2The Global Soil Mycobiome consortium dataset for boosting fungal diversity research显示文摘Fungi are highly important biotic components of terrestrial ecosystems,but we still have a very limited understanding about their diversity and distribution.This data article releases a global soil fungal dataset of the Global Soil Mycobiome consortium(GSMc)to boost further research in fungal diversity,biogeography and macroecology.The dataset comprises 722,682 fungal operational taxonomic units(OTUs)derived from PacBio sequencing of full-length ITS and 18S-V9 variable regions from 3200 plots in 108 countries on all continents.The plots are supplied with geographical and edaphic metadata.The OTUs are taxonomically and functionally assigned to guilds and other functional groups.The entire dataset has been corrected by excluding chimeras,index-switch artefacts and potential contamination.The dataset is more inclusive in terms of geographical breadth and phylogenetic diversity of fungi than previously published data.The GSMc dataset is available over the PlutoF repository.Leho Tedersoo Vladimir Mikryukov Sten Anslan Mohammad Bahram Abdul Nasir Khalid Adriana Corrales Ahto Agan Aída-M.Vasco-Palacios Alessandro Saitta Alexandre Antonelli Andrea C.Rinaldi Annemieke Verbeken Bobby P.Sulistyo Boris Tamgnoue Brendan Furneaux Camila Duarte Ritter Casper Nyamukondiwa Cathy Sharp César Marín D.Q.Dai Daniyal Gohar Dipon Sharmah Elisabeth Machteld Biersma Erin K.Cameron Eske De Crop Eveli Otsing Evgeny A.Davydov Felipe E.Albornoz Francis Q.Brearley Franz Buegger Genevieve Gates Geoffrey Zahn Gregory Bonito Indrek Hiiesalu Inga Hiiesalu Irma Zettur Isabel C.Barrio Jaan Pärn Jacob Heilmann-Clausen Jelena Ankuda John Y.Kupagme Joosep Sarapuu Jose G.Maciá-Vicente Joseph Djeugap Fovo József Geml Juha M.Alatalo Julieta Alvarez-Manjarrez Jutamart Monkai Kadri Põldmaa Kadri Runnel Kalev Adamson Kari A.Bråthen Karin Pritsch Kassim I.Tchan Kęstutis Armolaitis Kevin D.Hyde Kevin K.Newsham Kristel Panksep Lateef A.Adebola Louis J.Lamit Malka Saba Marcela Eda Silva Cáceres Maria Tuomi Marieka Gryzenhout Marijn Bauters Miklós Bálint Nalin Wijayawardene Niloufar Hagh-Doust Nourou S.Yorou Olavi Kurina Peter E.Mortimer Peter Meidl RHenrik Nilsson Rasmus Puusepp Rebeca Casique-Valdés Rein Drenkhan Roberto Garibay-Orijel Roberto Godoy Saleh Alfarraj Saleh Rahimlou Sergei Põlme Sergey V.Dudov Sunil Mundra Talaat Ahmed Tarquin Netherway Terry W.Henkel Tomas Roslin Vladimir E.Fedosov Vladimir G.Onipchenko WAErandi Yasanthika Young Woon Lim Meike Piepenbring Darta Klavina Urmas Kõljalg Kessy Abarenkov 2021Fungal Diversity2021,,6:0
3Resolving the Mortierellaceae phylogeny through synthesis of multi-gene phylogenetics and phylogenomics显示文摘Early efforts to classify Mortierellaceae were based on macro-and micromorphology,but sequencing and phylogenetic studies with ribosomal DNA(rDNA)markers have demonstrated conflicting taxonomic groupings and polyphyletic genera.Although some taxonomic confusion in the family has been clarified,rDNA data alone is unable to resolve higher level phylogenetic relationships within Mortierellaceae.In this study,we applied two parallel approaches to resolve the Mortierel-laceae phylogeny:low coverage genome(LCG)sequencing and high-throughput,multiplexed targeted amplicon sequenc-ing to generate sequence data for multi-gene phylogenetics.We then combined our datasets to provide a well-supported genome-based phylogeny having broad sampling depth from the amplicon dataset.Resolving the Mortierellaceae phylogeny into monophyletic genera resulted in 13 genera,7 of which are newly proposed.Low-coverage genome sequencing proved to be a relatively cost-effective means of generating a high-confidence phylogeny.The multi-gene phylogenetics approach enabled much greater sampling depth and breadth than the LCG approach,but has limitations too.We present this work to resolve some of the taxonomic confusion and provide a genus-level framework to empower future studies on Mortierellaceae diversity and evolution.Natalie Vandepol Julian Liber Alessandro Desirò Hyunsoo Na Megan Kennedy Kerrie Barry Igor V.Grigoriev Andrew N.Miller Kerry O’Donnell Jason E.Stajich Gregory Bonito 2020Fungal Diversity2020,,5:0
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