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中国科学院昆明植物研究所知识管理系统
Knowledge Management System of Kunming Institute of Botany,CAS
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0.05) between wild (AR = 4.651), semi-cultivated (AR = 5.091) and cultivated (AR = 5.132) populations of C. taliensis, which suggested that the genetic background of long-lived woody plant was not easy to be changed, and there were moderate high gene flow between populations. However, there was a significant difference (P < 0.05) between wild (AR = 5.9) and cultivated (AR = 7.1) populations distributed in the same place in Yun county, Yunnan province, which may result from the hybridization and introgression of species in the tea garden and anthropogenic damages to the wild population. The hypothesis of hybrid origin of C. grandibracteata was tested by morphological and microsatellites analyses. Compared with other species, the locules in ovary of C. grandibracteata are variable, which showed a morphological intermediate and mosaic. Except one private allele, Ninety-nine percent alleles of C. grandibracteata were shared with these of C. taliensis and C. sinensis var. assamica. And C. grandibracteata was nested in the cluster of C. taliensis in the UPGMA tree. Conclusively, our results supported the hypothesis of hybrid origin of C. grandibracteata partly. The speciation of C. grandibracteata was derived from hybridization and asymmetrical introgression potentially. It is possible that C. taliensis was one of its parents, but it still needs more evidences to prove that C. sinensis var. assamica was another parent.","jscount":"1","jsurl":"/simple-search?field1=all&rpp=10&accurate=false&advanced=false&sort_by=2&isNonaffiliated=false&search_type=-1&query1=Stand%2BManagement&order=desc&&fq=dc.project.title_filter%3ACamellia%5C+taliensis%5C+%5C%28W.%5C+W.%5C+Smith%5C%29%5C+Melchior%2C%5C+a%5C+member%5C+of%5C+Camellia%5C+sect.%5C+Thea%2C%5C+is%5C+an%5C+indigenous%5C+species%5C+in%5C+local%5C+natural%5C+forest%5C+and%5C+has%5C+a%5C+long%5C+cultivative%5C+history%5C+in%5C+western%5C+Yunnan%5C+and%5C+its%5C+neighborhood%2C%5C+where%5C+the%5C+domestications%5C+of%5C+this%5C+species%5C+in%5C+different%5C+historical%5C+periods%5C+and%5C+in%5C+different%5C+ways%5C+can%5C+be%5C+found.%5C+C.%5C+taliensis%5C+is%5C+an%5C+important%5C+contributor%5C+to%5C+the%5C+formations%5C+of%5C+tea%5C+landraces%5C+by%5C+hybridization%5C+and%5C+introgression.%5C+In%5C+the%5C+present%5C+study%2C%5C+14%5C+microsatellite%5C+loci%5C+screened%5C+from%5C+37%5C+loci%5C+were%5C+used%5C+to%5C+explore%5C+the%5C+genetic%5C+diversity%5C+about%5C+this%5C+species%5C+with%5C+579%5C+samples%5C+from%5C+25%5C+populations%5C+%5C%2816%5C+wild%5C+populations%2C%5C+4%5C+semi%5C-cultivated%5C+populations%5C+and%5C+5%5C+cultivated%5C+populations%5C%29.%5C+At%5C+the%5C+same%5C+time%2C%5C+the%5C+potential%5C+hybrid%5C+speciation%5C+of%5C+C.%5C+grandibracteata%2C%5C+was%5C+investigated%5C+using%5C+39%5C+individuals%5C+from%5C+2%5C+populations%2C%5C+along%5C+with%5C+C.%5C+taliensis%5C+and%5C+C.%5C+sinensis%5C+var.%5C+assamica%5C+%5C%2883%5C+individuals%5C+from%5C+4%5C+populations%5C%29%5C+by%5C+the%5C+same%5C+microsatellite%5C+markers.%5C+C.%5C+taliensis%5C+had%5C+a%5C+moderate%5C+high%5C+level%5C+of%5C+genetic%5C+diversity%5C+%5C%28A%5C+%3D%5C+14.3%2C%5C+Ne%3D%5C+5.7%2C%5C+HE%5C+%3D%5C+0.666%2C%5C+I%5C+%3D%5C+1.753%2C%5C+AR%5C+%3D%5C+7.2%2C%5C+PPB%5C+%3D%5C+100%25%5C%29.%5C+This%5C+may%5C+result%5C+from%5C+several%5C+factors%5C+including%5C+K%5C-strategy%2C%5C+genetic%5C+background%2C%5C+gene%5C+flow%5C+between%5C+populations%2C%5C+hybridization%5C+and%5C+introgression%5C+among%5C+species.%5C+Between%5C+wild%5C+populations%5C+of%5C+C.%5C+taliensis%2C%5C+the%5C+gene%5C+flow%5C+was%5C+moderate%5C+high%5C+%5C%28Nm%5C+%3D%5C+1.197%5C%29%2C%5C+and%5C+genetic%5C+variation%5C+was%5C+less%5C+than%5C+20%25%5C+%5C%28GST%5C+%3D%5C+0.147%2C%5C+FST%5C+%3D%5C+0.173%5C%29%2C%5C+which%5C+was%5C+similar%5C+to%5C+other%5C+research%5C+results%5C+of%5C+long%5C-lived%5C+woody%5C+plants%2C%5C+and%5C+reflected%5C+the%5C+genetic%5C+structure%5C+of%5C+its%5C+ancestry%5C+to%5C+same%5C+extent.%5C+There%5C+was%5C+a%5C+high%5C+significant%5C+correlation%5C+between%5C+geographic%5C+distance%5C+and%5C+Nei%E2%80%99s%5C+genetic%5C+distance%5C+%5C%28r%5C+%3D%5C+0.372%2C%5C+P%5C+%3D%5C+0.001%5C%29%5C+of%5C+populations%2C%5C+which%5C+accorded%5C+with%5C+isolation%5C+by%5C+distance%5C+model.%5C+Inferring%5C+from%5C+Bayesian%5C+clustering%5C+of%5C+genotypes%2C%5C+all%5C+individuals%5C+of%5C+C.%5C+taliensis%5C+were%5C+divided%5C+into%5C+two%5C+groups%2C%5C+conflicting%5C+with%5C+the%5C+result%5C+based%5C+on%5C+Nei%E2%80%99s%5C+genetic%5C+distance%5C+and%5C+real%5C+geographic%5C+distribution%2C%5C+which%5C+suggested%5C+there%5C+were%5C+heavy%5C+and%5C+non%5C-random%5C+influences%5C+by%5C+human%5C+practices.%5C+According%5C+to%5C+allelic%5C+richness%2C%5C+there%5C+were%5C+no%5C+significant%5C+differences%5C+%5C%28P%5C+%3E%5C+0.05%5C%29%5C+between%5C+wild%5C+%5C%28AR%5C+%3D%5C+4.651%5C%29%2C%5C+semi%5C-cultivated%5C+%5C%28AR%5C+%3D%5C+5.091%5C%29%5C+and%5C+cultivated%5C+%5C%28AR%5C+%3D%5C+5.132%5C%29%5C+populations%5C+of%5C+C.%5C+taliensis%2C%5C+which%5C+suggested%5C+that%5C+the%5C+genetic%5C+background%5C+of%5C+long%5C-lived%5C+woody%5C+plant%5C+was%5C+not%5C+easy%5C+to%5C+be%5C+changed%2C%5C+and%5C+there%5C+were%5C+moderate%5C+high%5C+gene%5C+flow%5C+between%5C+populations.%5C+However%2C%5C+there%5C+was%5C+a%5C+significant%5C+difference%5C+%5C%28P%5C+%3C%5C+0.05%5C%29%5C+between%5C+wild%5C+%5C%28AR%5C+%3D%5C+5.9%5C%29%5C+and%5C+cultivated%5C+%5C%28AR%5C+%3D%5C+7.1%5C%29%5C+populations%5C+distributed%5C+in%5C+the%5C+same%5C+place%5C+in%5C+Yun%5C+county%2C%5C+Yunnan%5C+province%2C%5C+which%5C+may%5C+result%5C+from%5C+the%5C+hybridization%5C+and%5C+introgression%5C+of%5C+species%5C+in%5C+the%5C+tea%5C+garden%5C+and%5C+anthropogenic%5C+damages%5C+to%5C+the%5C+wild%5C+population.%5C+The%5C+hypothesis%5C+of%5C+hybrid%5C+origin%5C+of%5C+C.%5C+grandibracteata%5C+was%5C+tested%5C+by%5C+morphological%5C+and%5C+microsatellites%5C+analyses.%5C+Compared%5C+with%5C+other%5C+species%2C%5C+the%5C+locules%5C+in%5C+ovary%5C+of%5C+C.%5C+grandibracteata%5C+are%5C+variable%2C%5C+which%5C+showed%5C+a%5C+morphological%5C+intermediate%5C+and%5C+mosaic.%5C+Except%5C+one%5C+private%5C+allele%2C%5C+Ninety%5C-nine%5C+percent%5C+alleles%5C+of%5C+C.%5C+grandibracteata%5C+were%5C+shared%5C+with%5C+these%5C+of%5C+C.%5C+taliensis%5C+and%5C+C.%5C+sinensis%5C+var.%5C+assamica.%5C+And%5C+C.%5C+grandibracteata%5C+was%5C+nested%5C+in%5C+the%5C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Systematics and Biogeography of Aralia L. (Araliaceae):Revision of Aralia Sects. Aralia, Humiles, Nanae, andSciadodendron
期刊论文
出版物, 3111, 卷号: 57, 期号: 0, 页码: 1-172
作者:
Jun Wen
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提交时间:2017/07/24
Aralia
Aralia Sect. Aralia
Aralia Sect. Dimorphanthus
Aralia Sect. Humiles
Aralia Sect. Nanae
Aralia Sect. pentapanax
Aralia Sect. Sciadodendron
Biogeography
Araliaceae
Systematics
JATROPHA CURCAS L.AN INTERNATIONAL BOTANICAL ANSWER TOBIODIESEL PRODUCTION & RENEWABLE ENERGY
期刊论文
出版物, 3111, 期号: 0, 页码: 1—65
作者:
Zuo Z(作者)
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提交时间:2017/07/24
Data Analysisin Vegetation Ecology
期刊论文
出版物, 3111, 期号: 0, 页码: 1-297
作者:
Otto Wildi
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Arbuscular mycorrhizal trees influence the latitudinal beta-diversity gradient of tree communities in forests worldwide
期刊论文
NATURE COMMUNICATIONS, 2021, 卷号: 12, 期号: 1, 页码: 3137
作者:
Zhong,Yonglin
;
Chu,Chengjin
;
Myers,Jonathan A.
;
Gilbert,Gregory S.
;
Lutz,James A.
;
Stillhard,Jonas
;
Zhu,Kai
;
Thompson,Jill
;
Baltzer,Jennifer L.
;
He,Fangliang
;
LaManna,Joseph A.
;
Davies,Stuart J.
;
Aderson-Teixeira,Kristina J.
;
Burslem,David F. R. P.
;
Alonso,Alfonso
;
Chao,Kuo-Jung
;
Wang,Xugao
;
Gao,Lianming
;
Orwig,David A.
;
Yin,Xue
;
Sui,Xinghua
;
Su,Zhiyao
;
Abiem,Iveren
;
Bissiengou,Pulcherie
;
Bourg,Norm
;
Butt,Nathalie
;
Cao,Min
;
Chang-Yang,Chia-Hao
;
Chao,Wei-Chun
;
Chapman,Hazel
;
Chen,Yu-Yun
;
Coomes,David A.
;
Cordell,Susan
;
de Oliveira,Alexandre A.
;
Du,Hu
;
Fang,Suqin
;
Giardina,Christian P.
;
Hao,Zhanqing
;
Hector,Andrew
;
Hubbell,Stephen P.
;
Janik,David
;
Jansen,Patrick A.
;
Jiang,Mingxi
;
Jin,Guangze
;
Kenfack,David
;
Kral,Kamil
;
Larson,Andrew J.
;
Li,Buhang
;
Li,Xiankun
;
Li,Yide
;
Lian,Juyu
;
Lin,Luxiang
;
Liu,Feng
;
Liu,Yankun
;
Liu,Yu
;
Luan,Fuchen
;
Luo,Yahuang
;
Ma,Keping
;
Malhi,Yadvinder
;
McMahon,Sean M.
;
McShea,William
;
Memiaghe,Herve
;
Mi,Xiangcheng
;
Morecroft,Mike
;
Novotny,Vojtech
;
O'Brien,Michael J.
;
den Ouden,Jan
;
Parker,Geoffrey G.
;
Qiao,Xiujuan
;
Ren,Haibao
;
Reynolds,Glen
;
Samonil,Pavel
;
Sang,Weiguo
;
Shen,Guochun
;
Shen,Zhiqiang
;
Song,Guo-Zhang Michael
;
Sun,I-Fang
;
Tang,Hui
;
Tian,Songyan
;
Uowolo,Amanda L.
;
Uriarte,Maria
;
Wang,Bin
;
Wang,Xihua
;
Wang,Youshi
;
Weiblen,George D.
;
Wu,Zhihong
;
Xi,Nianxun
;
Xiang,Wusheng
;
Xu,Han
;
Xu,Kun
;
Ye,Wanhui
;
Yu,Mingjian
;
Zeng,Fuping
;
Zhang,Minhua
;
Zhang,Yingming
;
Zhu,Li
;
Zimmerman,Jess K.
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NEGATIVE DENSITY-DEPENDENCE
NESTEDNESS
TEMPERATURE
COMPONENTS
TURNOVER
PLANTS
FUNGI
ASSOCIATIONS
ECOLOGY
NETWORK
Rediscovery of Mazus lanceifolius reveals a new genus and a new species in Mazaceae
期刊论文
PHYTOKEYS, 2021, 期号: 171, 页码: 1-24
作者:
Xiang,Chun-Lei
;
Pan,Hong-Li
;
Min,Dao-Zhang
;
Zhang,Dai-Gui
;
Zhao,Fei
;
Liu,Bing
;
Li,Bo
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Dodartia
Lamiales
Lancea
new genus
Puchiumazus
BAYESIAN PHYLOGENETIC INFERENCE
SCROPHULARIACEAE
PLACEMENT
RBCL
SYSTEMATICS
SEQUENCES
MODEL
DNA
DISINTEGRATION
HYBRIDIZATION
Organic management practices shape the structure and associations of soil bacterial communities in tea plantations
期刊论文
APPLIED SOIL ECOLOGY, 2021, 卷号: 163, 页码: 103975
作者:
Gui,Heng
;
Fan,Lichao
;
Wang,Donghui
;
Yan,Peng
;
Li,Xin
;
Zhang,Liping
;
Han,Wenyan
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Tea
Pyrosequencing
Co-occurrence network
Crop management
Soil microbiome
LONG-TERM IMPACT
MICROBIAL DIVERSITY
CONTAMINATED SOILS
BIOMASS
PRODUCTIVITY
FRACTIONS
NUTRIENTS
NITROGEN
DYNAMICS
PATTERNS
Climate-Fungal Pathogen Modeling Predicts Loss of Up to One-Third of Tea Growing Areas
期刊论文
FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY, 2021, 卷号: 11, 页码: 610567
作者:
Tibpromma,Saowaluck
;
Dong,Yang
;
Ranjitkar,Sailesh
;
Schaefer,Douglas A.
;
Karunarathna,Samantha C.
;
Hyde,Kevin D.
;
Jayawardena,Ruvishika S.
;
Manawasinghe,Ishara S.
;
Bebber,Daniel P.
;
Promputtha,Itthayakorn
;
Xu,Jianchu
;
Mortimer,Peter E.
;
Sheng,Jun
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Camellia sinensis
climate change
crop loss
fungal diseases
perennial crops
BROWN BLIGHT DISEASE
CAMELLIA-SINENSIS
COLLETOTRICHUM-ACUTATUM
1ST REPORT
EXOBASIDIUM-VEXANS
YUNNAN PROVINCE
PLANT
GLOEOSPORIOIDES
PESTS
LEAF
Insight into the Systematics of Novel Entomopathogenic Fungi Associated with Armored Scale Insect, Kuwanaspis howardi (Hemiptera: Diaspididae) in China
期刊论文
JOURNAL OF FUNGI, 2021, 卷号: 7, 期号: 8, 页码: 628
作者:
Xu,Xiu-Lan
;
Zeng,Qian
;
Lv,Yi-Cong
;
Jeewon,Rajesh
;
Maharachchikumbura,Sajeewa S. N.
;
Wanasinghe,Dhanushka N.
;
Hyde,Kevin D.
;
Xiao,Qian-Gang
;
Liu,Ying-Gao
;
Yang,Chun-Lin
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2 new taxa
bamboo
entomopathogens
Nectriaceae
Podonectriaceae
scale insect
NATURAL CLASSIFICATION
MULTIGENE PHYLOGENY
REFINED FAMILIES
GENUS
REVISION
OUTLINE
GENERA
IDENTIFICATION
COMBINATIONS
PODONECTRIA
Identified Three Interferon Induced Proteins as Novel Biomarkers of Human Ischemic Cardiomyopathy
期刊论文
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 卷号: 22, 期号: 23, 页码: 13116
作者:
Chen,Cheng
;
Tian,Jiao
;
He,Zhicheng
;
Xiong,Wenyong
;
He,Yingying
;
Liu,Shubai
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ischemic cardiomyopathy
heart failure
WGCNA
interferon stimulated genes
IFIT2
3
MYOCARDIAL-INFARCTION
NETWORK ANALYSIS
GENE
The contribution of insects to global forest deadwood decomposition
期刊论文
NATURE, 2021, 卷号: 597, 期号: 7874, 页码: 77+
作者:
Seibold,Sebastian
;
Rammer,Werner
;
Hothorn,Torsten
;
Seidl,Rupert
;
Ulyshen,Michael D.
;
Lorz,Janina
;
Cadotte,Marc W.
;
Lindenmayer,David B.
;
Adhikari,Yagya P.
;
Aragon,Roxana
;
Bae,Soyeon
;
Baldrian,Petr
;
Varandi,Hassan Barimani
;
Barlow,Jos
;
Bassler,Claus
;
Beauchene,Jacques
;
Berenguer,Erika
;
Bergamin,Rodrigo S.
;
Birkemoe,Tone
;
Boros,Gergely
;
Brandl,Roland
;
Brustel,Herve
;
Burton,Philip J.
;
Cakpo-Tossou,Yvonne T.
;
Castro,Jorge
;
Cateau,Eugenie
;
Cobb,Tyler P.
;
Farwig,Nina
;
Fernandez,Romina D.
;
Firn,Jennifer
;
Gan,Kee Seng
;
Gonzalez,Grizelle
;
Gossner,Martin M.
;
Habel,Jan C.
;
Hebert,Christian
;
Heibl,Christoph
;
Heikkala,Osmo
;
Hemp,Andreas
;
Hemp,Claudia
;
Hjalten,Joakim
;
Hotes,Stefan
;
Kouki,Jari
;
Lachat,Thibault
;
Liu,Jie
;
Liu,Yu
;
Luo,Ya-Huang
;
Macandog,Damasa M.
;
Martina,Pablo E.
;
Mukul,Sharif A.
;
Nachin,Baatarbileg
;
Nisbet,Kurtis
;
O'Halloran,John
;
Oxbrough,Anne
;
Pandey,Jeev Nath
;
Pavlicek,Tomas
;
Pawson,Stephen M.
;
Rakotondranary,Jacques S.
;
Ramanamanjato,Jean-Baptiste
;
Rossi,Liana
;
Schmidl,Jurgen
;
Schulze,Mark
;
Seaton,Stephen
;
Stone,Marisa J.
;
Stork,Nigel E.
;
Suran,Byambagerel
;
Sverdrup-Thygeson,Anne
;
Thorn,Simon
;
Thyagarajan,Ganesh
;
Wardlaw,Timothy J.
;
Weisser,Wolfgang W.
;
Yoon,Sungsoo
;
Zhang,Naili
;
Mueller,Jorg
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COARSE WOODY DEBRIS
CARBON SINK
CLIMATE
TEMPERATURE
METAANALYSIS
TERRESTRIAL
SEASONALITY
GRASSLANDS
INCREASES
COMMUNITY