darwin.eeb.uconn.eduHolsinger Lab

darwin.eeb.uconn.edu Profile

darwin.eeb.uconn.edu

Maindomain:uconn.edu

Title:Holsinger Lab

Description:Designed and developed by Codify Design Studio - codifydesign.com

Discover darwin.eeb.uconn.edu website stats, rating, details and status online.Use our online tools to find owner and admin contact info. Find out where is server located.Read and write reviews or vote to improve it ranking. Check alliedvsaxis duplicates with related css, domain relations, most used words, social networks references. Go to regular site

darwin.eeb.uconn.edu Information

Website / Domain: darwin.eeb.uconn.edu
HomePage size:11.986 KB
Page Load Time:0.249801 Seconds
Website IP Address: 137.99.139.139
Isp Server: University of Connecticut

darwin.eeb.uconn.edu Ip Information

Ip Country: United States
City Name: Storrs
Latitude: 41.811210632324
Longitude: -72.247177124023

darwin.eeb.uconn.edu Keywords accounting

Keyword Count

darwin.eeb.uconn.edu Httpheader

Date: Mon, 27 Jan 2020 07:02:45 GMT
Server: Apache/2.2.15 (Red Hat)
Last-Modified: Tue, 27 Dec 2016 16:59:20 GMT
ETag: "40309-2b6d-544a6c5fdea8b"
Accept-Ranges: bytes
Content-Length: 11117
Connection: close
Content-Type: text/html; charset=UTF-8

darwin.eeb.uconn.edu Meta Info

content="Designed and developed by Codify Design Studio - codifydesign.com" name="description"/

137.99.139.139 Domains

Domain WebSite Title

darwin.eeb.uconn.edu Similar Website

Domain WebSite Title
darwin.eeb.uconn.eduHolsinger Lab
thomassci.comThomas Scientific - Lab Supplies, Lab Equipment, Lab Chemicals, & Lab Safety
ariba.thomassci.comThomas Scientific - Lab Supplies, Lab Equipment, Lab Chemicals, & Lab Safety
labplanet.comLaboratory Supplies & Lab Equipment - Centrifuges, Lab Apparatus, Lab Glass, ph Meters, Labware, Med
ohaus.comOHAUS | Lab Balance | Industrial Scales | Lab Equipment | Lab Instruments
internal.prolabreports.comPRO-LAB™ 24/7 Online Reporting System :: Lab Results Login
prolabreports.comPRO-LAB™ 24/7 Online Reporting System :: Lab Results Login
nimbus.unl.eduNIMBUS Lab | Nebraska Intelligent MoBile Unmanned Systems Lab
atl.semtechsolutions.comAnalytical Testing Laboratory | Our SEM Lab and micro FTIR Lab provides services for clients instere
ohaus.balances.comOHAUS Lab Balance Industrial Scales Lab Equipment
literature.fishersci.comLab Equipment and Lab Supplies Fisher Scientific
fishersci.comLab Equipment and Lab Supplies | Fisher Scientific
candlab.pitt.eduCAN-D LAB | Cognitive-Affective Neuroscience & Development Lab
login.labaccessslp.comloginlabaccessslpcom - Southern Lab Partners SLP Lab
labdepotinc.comThe Lab Depot | Laboratory Equipment, Lab Supplies, Science Laboratory Equipment

darwin.eeb.uconn.edu Traffic Sources Chart

darwin.eeb.uconn.edu Alexa Rank History Chart

darwin.eeb.uconn.edu aleax

darwin.eeb.uconn.edu Html To Plain Text

Contact Me UConn Resources Home People Useful resources Dimensions of Biodiversity -- Course: EEB 5348 Blog: Uncommon Ground EEB 5310: Conservation Biology EEB 5348: Population Genetics -- My Google Scholar page My papers in DigitalCommons My profile on FigShare My profile on Mendeley My profile on ORCID Publications list (via PubMed) Software -- Kent Holsinger, Professor of Ecology & Evolutionary Biology I have been a member of the Department of Ecology & Evolutionary Biology since 1986. My research focuses on the evolution and genetics of plants. I've studied the evolution of plant mating systems; explored how basic principles of ecology, evolutionary biology, and systematics should influence conservation decisiions; and developed statistical methods for analyzing genetic diversity in spatially structured populations. Since January, 2012 I have been serving as Vice Provost for Graduate Education and Dean of The Graduate School . Click on one of the tabs to the right for more information about my research. If you're interested in a more detailed summary of my career, download a copy of my CV or click on the links to my Google Scholar page, my papers in UConn's repository (DigitalCommons), or my profile on FigShare, Mendeley, or ORCID. Evolution of plant mating systems Most flowering plants reproduce through outrcossing. Pollen from one plant is transferred to another where it germinates on the stigma, grows through the style, and sperm from the pollen unites with an egg to form an embryo that develops into a seed. But a significant minority of flowering plants reproduce through self-fertilization. Much of my early work was focused on understanding why some plants self and others don't. It's obvious that self-fertilized progeny are generally less fit than outcrossed progeny, which is a significant disadvantage. It's also obvious that self-fertilization is sometimes the only way in which a plant can reproduce, and it's better to have reproduced by selfing, than never to have reproduced at all. What's less obvious is that a plant that self-fertilizes may have an additional advantage. It leaves offspring not only through self-fertilization but by serving as a pollen parent to the outcrossed offspring of other individuals. That segregation advantage could also favor self-fertilization, but whether it exists depends critically on the details of how pollination happens. My mathematical models helped to illuminate those processes. Conservation biology We are currently losing species at a rate faster than at any time since the end of the Cretaceous period 60 million years ago. The book I co-edited with Don Falk, Genetics and Conservation of Rare Plants (Oxford University Press, 1991) grew out of my interest in applying basic principles of ecology, evolutionary biology, and systematics to conservation problems. More recently, I have collaborated with my students and colleagues at other institutions on demographic analyses of rare plant species. With Margaret Evans and Eric Menges, I've examined the influence of fire on persistence in Dicerandra frutescens . With Kathryn Theiss, I've examined the influence of collection for the horticultural trade on persistence of Erasanthe henrici . Analyzing genetic diversity Nearly every species on earth occurs in more than a single location, and the individuals in different locations are often genetically distinct. Population geneticists have been interested both in describing the patterns of genetic diversity they find and in understanding the processes that produce them since at least the 1930s. Sewall Wright's F -statistics are among the most widely used statistics in population genetics because they provide a convenient way to summarize the genetic structure of populations. Over the past fifteen years, I've developed a series of approaches using hierarchical Bayesian models to facilitate analysis of population genetic structure. The basic estimates of F -statistics, as implemented in Hickory , aren't that different from the more standard Weir and Cockerham statistics, but with the help of collaborators from the Department of Statistics, we've illustrated several ways in which that simple approach can be extended to provide considerable new insights. Evolutionary radiations For the past decade, much of my research has focused on the evolution of Protea in the Cape Floristic Region of southwestern South Africa. We have a small web site where you can find a little bit about the first project focusing on the white proteas ( Protea sect. Exsertae ), including links to papers, information on collection sites, and links to data sets and code. We have a more extensive web site describing our current Dimensions of Biodiversity project. We'll be adding datasets and code as the project progresses. -- This site is licensed under a Creative Commons Attribution-ShareAlike 3.0 Unported License ....