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authorPetr Vaněk <arkamar@atlas.cz>2022-10-19 10:35:41 +0200
committerSam James <sam@gentoo.org>2022-10-20 04:52:28 +0100
commit8b2a87398520d5346acbb7323d9509a480dd6e9c (patch)
tree9c8e86fbc114b3ddad5d250bb98c460a90ab4642 /sci-biology/uchime
parentsci-astronomy/wcslib: align longdescription opening and closing tags (diff)
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sci-biology/uchime: align longdescription opening and closing tags
Signed-off-by: Petr Vaněk <arkamar@atlas.cz> Signed-off-by: Sam James <sam@gentoo.org>
Diffstat (limited to 'sci-biology/uchime')
-rw-r--r--sci-biology/uchime/metadata.xml18
1 files changed, 9 insertions, 9 deletions
diff --git a/sci-biology/uchime/metadata.xml b/sci-biology/uchime/metadata.xml
index 9933caa5fd2f..0e6b9a493f29 100644
--- a/sci-biology/uchime/metadata.xml
+++ b/sci-biology/uchime/metadata.xml
@@ -6,13 +6,13 @@
<name>Gentoo Biology Project</name>
</maintainer>
<longdescription>
-UCHIME is a new algorithm for detecting chimeric sequences. It was developed in
-collaboration with Brian Haas, Jose Carlos Clemente, Chris Quince and Rob
-Knight. Chimeras are commonly created during DNA sample amplification by
-PCR, especially in community sequencing experiments using single regions
-such as the 16S rRNA gene in bacteria or the fungal ITS region. UCHIME can
-detect chimeras using a reference database or de novo using abundance
-information on the assumption that chimeras are less abundant than their
-parents because they must have undergone fewer rounds of amplification.
-</longdescription>
+ UCHIME is a new algorithm for detecting chimeric sequences. It was developed in
+ collaboration with Brian Haas, Jose Carlos Clemente, Chris Quince and Rob
+ Knight. Chimeras are commonly created during DNA sample amplification by
+ PCR, especially in community sequencing experiments using single regions
+ such as the 16S rRNA gene in bacteria or the fungal ITS region. UCHIME can
+ detect chimeras using a reference database or de novo using abundance
+ information on the assumption that chimeras are less abundant than their
+ parents because they must have undergone fewer rounds of amplification.
+ </longdescription>
</pkgmetadata>