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    题名 作者 年代 出处 被引量
1A mild and facile method for one pot synthesis of 2,5-di-substituted 1,3,4-oxadiazoles at room temperature显示文摘2,5-Di-substituted 1,3,4-oxadiazoles 3a-n 从酸一种肺结核特效药 1 的反应作为一个壶过程被综合了,酰卤化物 2 并且在在房间温度的 acetonitrile 的磷 pentoxide。高产量,短反应时间(10 鈥 ? 5 min ) ,温和状况,和容易的病情的检查是这方法论的优点。Shahnaz Rostamizadeh Somaye Ghamkhar 2008Chinese Chemical Letters2008,19,6:2
2Application of rehabilitative ultrasound in the assessment of low back pain:a literature review显示文摘GHAMKHAR L EMAMI M MOHSENI M A 0,,04:1
3Phylogeny of Cyperaceae based on DNA sequence data- a new rbcL analysis 显示文摘Simpson DA Muasya AM Alves MV Bruhl J J Dhooge S Chase MW Furness CA Ghamkhar K Goetghebeur P Hodkinson TR Marchant AD Reznicek AA Nieuwborg R Roalson EH Smets E Starr JR Thomas WW Wilson KL Zhang XF 2007Ali- so2007,23,:1
4The power of phenomics:Improving genebank value and utility显示文摘Genebanks are considered the'crown jewels'of research organizations,as they safeguard valuable plant genetic resources and address the emerging challenges posed by climate-related constraints(Anglin et al.,2018).Currently,7.4 million accessions have been conserved in 1750 gene banks worldwide.Of these,only 10%are being used for crop improvement(Commission on Genetic Resources for Food and Agriculture,2010).The limited availability of passport data and the challenge of characterizing trait attributes of accessions at large scale are some of the challenges to relate their true value(Tadesse et al.,2019).Obtaining traits such as agronomic or nutritional characteristics requires extensive field phenotyping and multiple site testing over several seasons.This will create value with accurate evaluation of genotype-by-environmental variation in a given trait.The use of low-cost high-throughput phenotyping(HTP)methods to characterize the genotypic and phenotypic representations of genebank genetic resources,otherwise known as genebank phenomics,will help in understanding crops'potential for use in breeding programs with desirable traits.Ezhilmathi Angela Joseph Fernando Michael Selvaraj Kioumars Ghamkhar 2023Molecular Plant2023,16,7:0
5Mobilizing Crop Biodiversity显示文摘Over the past 70 years,the world has witnessed extraordinary growth in crop productivity,enabled by a suite of technological advances,including higher yielding crop varieties,improved farm management,synthetic agrochemicals,and agricultural mechanization.While this'Green Revolution'intensified crop production,and is credited with reducing famine and malnutrition,its benefits were accompanied by several undesirable collateral effects(Pingali,2012).These include a narrowing of agricultural biodiversity,stemming from increased monoculture and greater reliance on a smaller number of crops and crop varieties for the majority of our calories.This reduction in diversity has created vulnerabilities to pest and disease epidemics,climate variation,and ultimately to human health(Harlan,1972).Susan McCouch Zahra Katy Navabi Michael Abberton Noelle L.Anglin Rosa Lia Barbieri Michael Baum Kirstin Bett Helen Booker Gerald L.Brown Glenn J.Bryan Luigi Cattivelli David Charest Kellye Eversole Marcelo Freitas Kioumars Ghamkhar Dario Grattipaglia Robert Henry Maria Cleria Valadares Inglis Tofazzal Islam Zakaria Kehel Paul J.Kersey Graham J.King Stephen Kresovich Emily Marden Sean Mayes Marie Noelle Ndjiondjiop Henry T.Nguyen Samuel Rezende Paiva Roberto Papa Peter W.B.Phillips Awais Rasheed Christopher Richards Mathieu Flouard Maria Jose Amstalden Sampaio Uwe Scholz Paul D.Shaw Brad Sherman S.Evan Staton Nils Stein Jan Svensson Mark Tester Jose Francisco Montenegro Valls Rajeev Varshney Stephen Visscher Eric von Wettberg Robbie Waugh Peter Wenzl Loren H.Rieseberg 2020Molecular Plant2020,13,10:0
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