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Conservation genomics provides insights into genetic resilience and adaptation of the endangered Chinese hazelnut, Corylus chinensis
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作者 Zhen Yang Lisong Liang +3 位作者 Weibo Xiang Lujun wang Qinghua Ma zhaoshan wang 《Plant Diversity》 SCIE CAS CSCD 2024年第3期294-308,共15页
Global climate change has increased concerns regarding biodiversity loss.However,many key conservation issues still required further research,including demographic history,deleterious mutation load,adaptive evolution,... Global climate change has increased concerns regarding biodiversity loss.However,many key conservation issues still required further research,including demographic history,deleterious mutation load,adaptive evolution,and putative introgression.Here we generated the first chromosome-level genome of the endangered Chinese hazelnut,Corylus chinensis,and compared the genomic signatures with its sympatric widespread C.kwechowensis-C yunnanensis complex.We found large genome rearrangements across all Corylus species and identified species-specific expanded gene families that may be involved in adaptation.Population genomics revealed that both C.chinensis and the C.kwechowensis-C.yunnanensis complex had diverged into two genetic lineages,forming a consistent pattern of southwestern-northern differentiation.Population size of the narrow southwestern lineages of both species have decreased continuously since the late Miocene,whereas the widespread northern lineages have remained stable(C.chinensis) or have even recovered from population bottlenecks(C.kwechowensis-C.yunnanensis complex) during the Quaternary.Compared with C.kwechowensis-C. yunnanensis complex,C.chinensis showed significantly lower genomic diversity and higher inbreeding level.However,C.chinensis carried significantly fewer deleterious mutations than C.kwechowensis-C. yunnanensis complex,as more effective purging selection reduced the accumulation of homozygous variants.We also detected signals of positive selection and adaptive introgression in different lineages,which facilitated the accumulation of favorable variants and formation of local adaptation.Hence,both types of selection and exogenous introgression could have mitigated inbreeding and facilitated survival and persistence of C.chinensis.Overall,our study provides critical insights into lineage differentiation,local adaptation,and the potential for future recovery of endangered trees. 展开更多
关键词 Conservation genomics Demographic history INBREEDING Genetic load Runs of homozygosity Local adaptation
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The complete chloroplast genomic landscape and phylogenetic analyses of Populus alba L.
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作者 Zhe Hou zhaoshan wang Jianguo Zhang 《Journal of Forestry Research》 SCIE CAS CSCD 2020年第5期1875-1879,共5页
Populus alba is a foundation species in evolutionary and ecological studies in the northern hemisphere.In this study,the chloroplast genome and gene map of P.alba were constructed.The P.alba chloroplast genome is 156,... Populus alba is a foundation species in evolutionary and ecological studies in the northern hemisphere.In this study,the chloroplast genome and gene map of P.alba were constructed.The P.alba chloroplast genome is 156,505 bp in length comprising a large single-copy region,two inverted repeat regions and a small single-copy region.The genome contains 131 genes,including 86 protein-coding genes(77 PCG species),eight ribosomal RNA genes(four rRNA species)and 37 transfer RNA genes(30 tRNA species).Phylogenetic analysis indicates that all Populus chloroplast genome sequences are clustered together and divided into three large branches.Among reported Populus chloroplast genomes,the leuce section formed monophyletic,indicating that all Populus spp.have a common maternal ancestor.P.rotundifolia and P.tremula are closely related and are sisters to P.davidiana.P.alba is closely related to P.adenopoda.Population genetic research in ecology and evolution may be easily developed through chloroplast genomes as they are conserved.This research will benefit future studies related to Populus,one of the world’s most ecologically and economically important genera. 展开更多
关键词 Chloroplast genome Populus alba Genomic landscape Phylogenetic analysis
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生物降解热塑性弹性体的分子结构设计与性能研究 被引量:2
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作者 燕四伟 王庆国 +1 位作者 王兆山 宿烽 《中国科学:化学》 CAS CSCD 北大核心 2019年第12期1463-1474,共12页
本文以来源于生物质资源的脂肪族饱和二元醇(1,3-丙二醇、1,4-丁二醇)、饱和二元酸(丁二酸、己二酸和癸二酸)为原料,采用熔融缩聚和扩链反应成功制得一种由结晶型脂肪族饱和聚酯预聚体(HPE)和无定形脂肪族饱和聚酯预聚体(SPE)嵌段而成... 本文以来源于生物质资源的脂肪族饱和二元醇(1,3-丙二醇、1,4-丁二醇)、饱和二元酸(丁二酸、己二酸和癸二酸)为原料,采用熔融缩聚和扩链反应成功制得一种由结晶型脂肪族饱和聚酯预聚体(HPE)和无定形脂肪族饱和聚酯预聚体(SPE)嵌段而成的生物降解热塑性弹性体(BTPE).研究结果表明,该饱和脂肪族BTPE具有较宽的使用温度范围和低硬度、高弹性等特征. BTPE的玻璃化转变温度在-50℃左右,熔点在105℃以上,初始热分解温度在340℃以上;BTPE的100%定伸回复率大于85%, 300%定伸循环拉伸回复率在75%以上,断裂伸长率可达1100%,拉伸强度在7.5~9.6 MPa,硬度在56~73 HA.在脂肪酶降解液中降解15天, BTPE的失重率可达68%;在自然土壤环境条件下降解120天, BTPE的失重率在57%以上.噻唑蓝(MTT)比色法测试结果表明, BTPE无明显细胞毒性,为一级合格.本文制备的BTPE在环境友好材料和生物医用材料领域具有广阔的应用前景. 展开更多
关键词 热塑性弹性体 聚酯 聚合 生物降解性 细胞相容性
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Lewis acid-catalyzed[4+2]cycloaddition of 3-alkyl-2-vinylindoles withβ,γ-unsaturatedα-ketoesters
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作者 Yuwen Sun zhaoshan wang +2 位作者 Shufang Wu Yuchen Zhang Feng Shi 《Green Synthesis and Catalysis》 2022年第1期84-88,共5页
A Lewis acid-catalyzed[4+2]cycloaddition of 3-alkyl-2-vinylindoles withβ,γ-unsaturatedα-ketoesters has been established in the presence of Sc(OTf)3,which afforded a series of indole-containing pyran derivatives in ... A Lewis acid-catalyzed[4+2]cycloaddition of 3-alkyl-2-vinylindoles withβ,γ-unsaturatedα-ketoesters has been established in the presence of Sc(OTf)3,which afforded a series of indole-containing pyran derivatives in generally good yields(up to 90%yield)with excellent diastereoselectivities(up to >95:5 dr)under mild conditions.This approach not only enriches the chemistry of 3-alkyl-2-vinylindoles,but also has provided an atom-economic method for the synthesis of indole-containing pyran derivatives with potential bioactivity. 展开更多
关键词 Lewis acid catalysis [4+2]Cycloaddition 3-Alkyl-2-vinylindole β γ-Unsaturatedα-ketoester Indole-containing pyran
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