c8e8fc540646df02203db3233f927e10fc7630d2
mspeir
  Wed Sep 23 15:55:37 2026 -0700
Conservation track descriptions: stop wrapping the download list in a <p>, refs #34803

A <ul> is not allowed inside a <p>, so the </p> that followed each download list
was parsed as an implicit empty paragraph and thrown away. Close the paragraph
after the lead-in sentence instead, and leave the list at the same level as the
other paragraphs.

113 pages, one moved </p> each. Nothing renders differently; HTML Tidy goes from
226 warnings on these sections to none.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

diff --git src/hg/makeDb/trackDb/cat/felCat3/phastConsElements4way.html src/hg/makeDb/trackDb/cat/felCat3/phastConsElements4way.html
index 3458be37d80..acac6d24eb3 100644
--- src/hg/makeDb/trackDb/cat/felCat3/phastConsElements4way.html
+++ src/hg/makeDb/trackDb/cat/felCat3/phastConsElements4way.html
@@ -1,112 +1,112 @@
 <H2>Description</H2> 
 <P>
 This track shows predictions of conserved elements produced by the phastCons
 program.  PhastCons is part of the PHAST (PHylogenetic Analysis with
 Space/Time models) package.  The predictions are based on a phylogenetic hidden
 Markov model (phylo-HMM), a type of probabilistic model that describes both
 the process of DNA substitution at each site in a genome and the way this
 process changes from one site to the next. </P>
 
 <H2>Methods</H2>
 <P>
 Best-in-genome pairwise alignments were generated for
 each species using blastz, followed by chaining and netting.  A multiple
 alignment was then constructed from these pairwise alignments using multiz.
 Predictions of conserved elements were then obtained by running phastCons
 on the multiple alignments with the --most-conserved option.</P>
 <P>
 PhastCons constructs a two-state phylo-HMM with a state for conserved
 regions and a state for non-conserved regions.  The two states share a
 single phylogenetic model, except that the branch lengths of the tree
 associated with the conserved state are multiplied by a constant scaling
 factor <em>rho</em> (0 <= <em>rho</em> <= 1).  The free parameters of the
 phylo-HMM, including the scaling factor <em>rho</em>, are estimated from
 the data by maximum likelihood using an EM algorithm.  This procedure is
 subject to certain constraints on the "coverage" of the genome by conserved
 elements and the "smoothness" of the conservation scores.  Details can be
 found in Siepel <EM>et al.</EM> (2005).</P>
 <P>
 The predicted conserved elements are segments of the alignment that are
 likely to have been "generated" by the conserved state of the phylo-HMM.
 Each element is assigned a log-odds score equal to its log probability
 under the conserved model minus its log probability under the non-conserved
 model.  The "score" field associated with this track contains transformed
 log-odds scores, taking values between 0 and 1000.  (The scores are
 transformed using a monotonic function of the form a * log(x) + b.)  The
 raw log odds scores are retained in the "name" field and can be seen on the
 details page or in the browser when the track's display mode is set to
 "pack" or "full".</P>
 
 <h2>Data Access</h2>
 <p>
 The conserved elements can be retrieved for a single region or for a list of regions with the <a
 href="hgTables?db=felCat3&amp;hgta_group=compGeno&amp;hgta_track=phastConsElements4way">Table
 Browser</a>, and joined with other annotations in the <a href="hgIntegrator?db=felCat3">Data
 Integrator</a>. For automated access, they are also served by our <a
 href="../goldenPath/help/api.html">REST API</a>.
 </p>
 <p>
 The files behind this track can be downloaded from our download server:
+</p>
 <ul>
   <li><a href="https://hgdownload.soe.ucsc.edu/goldenPath/felCat3/phastCons4way/"
   target="_blank">PhastCons conservation scores and conserved elements</a></li>
 </ul>
-</p>
 
 <H2>Credits</H2>
 <P>
 This track was created at UCSC using the following programs:
 <UL>
 <LI>
 Blastz and multiz by Minmei Hou, Scott Schwartz and Webb Miller of the 
 <A HREF="http://www.ccbb.psu.edu/" TARGET=_blank>Penn State Bioinformatics 
 Group</A>. 
 <LI>
 AxtBest, axtChain, chainNet, netSyntenic, and netClass
 by Jim Kent at UCSC. 
 <LI>PhastCons by Adam Siepel at Cornell University. 
 </UL>
 </P>
 
 <H2>References</H2>
 
 <H3>PhastCons</H3>
 <P>
 Siepel A, Bejerano G, Pedersen JS, Hinrichs AS, Hou M, Rosenbloom K, 
 Clawson H, Spieth J, Hillier LW, Richards S, <EM>et al.</EM>
 <A HREF="https://genome.cshlp.org/content/15/8/1034"
 TARGET=_blank>Evolutionarily conserved elements in vertebrate, insect, worm, 
 and yeast genomes</A>.
 <EM>Genome Res</EM>. 2005 Aug;15(8):1034-50.
 
 <H3>Chain/Net</H3>
 <P>
 Kent WJ, Baertsch R, Hinrichs A, Miller W, Haussler D. 
 <A HREF="https://www.pnas.org/content/100/20/11484"
 TARGET=_blank>Evolution's cauldron: 
 duplication, deletion, and rearrangement in the mouse and human genomes</A>. 
 <EM>Proc Natl Acad Sci U S A</EM>. 2003 Sep 30;100(20):11484-9.
 
 <H3>Multiz</H3>
 <P>
 Blanchette M, Kent WJ, Riemer C, Elnitski L, Smit AF, Roskin KM, 
 Baertsch R, Rosenbloom K, Clawson H, Green ED, <EM>et al.</EM>
 <A HREF="https://genome.cshlp.org/content/14/4/708.abstract"
 TARGET=_blank>Aligning multiple genomic sequences with the threaded blockset
 aligner</A>.
 <EM>Genome Res</EM>. 2004 Apr;14(4):708-15.
 
 <H3>Blastz</H3>
 <P>
 Chiaromonte F, Yap VB, Miller W. 
 <A HREF="https://www.ncbi.nlm.nih.gov/pubmed/11928468/" 
 TARGET=_blank>Scoring pairwise genomic sequence alignments</A>. 
 <EM>Pac Symp Biocomput</EM>. 2002;:115-26.
 
 <P>
 Schwartz S, Kent WJ, Smit A, Zhang Z, Baertsch R, Hardison RC, 
 Haussler D, Miller W. 
 <A HREF="https://genome.cshlp.org/content/13/1/103.abstract" 
 TARGET=_blank>Human-mouse alignments with BLASTZ</A>. 
 <EM>Genome Res</EM>. 2003 Jan;13(1):103-7.