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2篇 您的检索式:作者名="HANS ESSELINK"
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1Phased,chromosome-scale genome assemblies of tetraploid potato reveal a complex genome,transcriptome,and predicted proteome landscape underpinning genetic diversity显示文摘Cultivated potato is a clonally propagated autotetraploid species with a highly heterogeneous genome.Phased assemblies of six cultivars including two chromosome-scale phased genome assemblies revealed extensive allelic diversity,including altered coding and transcript sequences,preferential allele expression,and structural variation that collectively result in a highly complex transcriptome and predicted proteome,which are distributed across the homologous chromosomes.Wild species contribute to the extensive allelic diversity in tetraploid cultivars,demonstrating ancestral introgressions predating modern breeding efforts.As a clonally propagated autotetraploid that undergoes limited meiosis,dysfunctional and deleterious alleles are not purged in tetraploid potato.Nearly a quarter of the loci bore mutations are predicted to have a high negative impact on protein function,complicating breeder’s efforts to reduce genetic load.The StCDF1 locus controls maturity,and analysis of six tetraploid genomes revealed that 12 allelic variants of StCDF1 are correlated with maturity in a dosage-dependent manner.Knowledge of the complexity of the tetraploid potato genome with its rampant structural variation and embedded deleterious and dysfunctional alleles will be key not only to implementing precision breeding of tetraploid cultivars but also to the construction of homozygous,diploid potato germplasm containing favorable alleles to capitalize on heterosis in F1 hybrids.Genevieve Hoopes Xiaoxi Meng John P.Hamilton Sai Reddy Achakkagari Fernanda de Alves Freitas Guesdes Marie E.Bolger Joseph J.Coombs Danny Esselink Natalie R.Kaiser Linda Kodde Maria Kyriakidou Brian Lavrijssen Natascha van Lieshout Rachel Shereda Heather K.Tuttle Brieanne Vaillancourt Joshua C.Wood Jan Mde Boer Nolan Bornowski Peter Bourke David Douches Herman Jvan Eck Dave Ellis Max J.Feldman Kyle M.Gardner Johannes C.P.Hopman Jiming Jiang Walter S.De Jong Joseph C.Kuhl Richard G.Novy Stan Oome Vidyasagar Sathuvalli Ek Han Tan Remco A.Ursum M.Isabel Vales Kelly Vining Richard G.F.Visser Jack Vossen G.Craig Yencho Noelle L.Anglin Christian W.B.Bachem Jeffrey B.Endelman Laura M.Shannon Martina V.Stromvik Helen H.Tai Bjorn Usadel C.Robin Buell Richard Finkers 2022Molecular Plant2022,15,3:4
2Seasonal changes on two different spatial scales: response of aquatic invertebrates to water body and microhabitat显示文摘产地使用的空间、时间的规模和不同改编的功能的意义的知识为无脊椎的集合的人口动力学的理解是必要的。这基本知识从一个学术观点有趣不仅,但是疼痛地在恢复生态学的地里正在缺乏并且需要。Manyspecies 由于降级被威胁。知道什么环境条件在种类是的这些的生活周期期间被需要在试图为威胁的种类提起存在瓶颈的恢复措施的设计重要。在在不同季节期间组织无脊椎的集合估计水类型 andmicrohabitat 的相对重要性,无脊椎动物在在营养水平和酸味不同的三水身体被取样。在水身体(微产地) 以内的不同部分独立被取样,每水身体在所有四个季节被取样。结果证明那水身体是在季节早组织无脊椎的集合的一个重要因素,而微产地以后在季节变得更重要。微产地的 Structuralcomplexity 与无脊椎动物采用的运动的类型有关。季节的差别能与人口动力学有关(复制,死亡) 。而且,在资源可获得性的变化被期望在水身体之间不同,以后在季节与在发育营养正常促进剂水身体的最高的变化并且与变化变得不太可预言。这被数据证实:到在食物可获得性的脉搏的种类同步在发育营养正常促进剂水身体是最强壮的。而且,同步在夏天是最强壮的,当在秋天水被散种类入侵时。把结果基于这些合成在在不同季节期间不同的水工作上被介绍。WILCO C.E.P. VERBERK HEIN H. VAN KLEEF MARTIJN DIJKMAN PAUL VAN HOEK PETER SPIERENBURG HANS ESSELINK 2005Insect Science2005,12,4:0
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