<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE ST26SequenceListing PUBLIC "-//WIPO//DTD Sequence Listing 1.3//EN" "ST26SequenceListing_V1_3.dtd">
<ST26SequenceListing originalFreeTextLanguageCode="en"  dtdVersion="V1_3" fileName="51037-060WO4_Sequence_Listing_9_8_22_ST26.xml" softwareName="WIPO Sequence" softwareVersion="2.1.2" productionDate="2022-09-08">
	<ApplicantFileReference>51037-060WO4</ApplicantFileReference>
	<EarliestPriorityApplicationIdentification>
		<IPOfficeCode>US</IPOfficeCode>
		<ApplicationNumberText>63/245,666</ApplicationNumberText>
		<FilingDate>2021-09-17</FilingDate>
	</EarliestPriorityApplicationIdentification>
	<ApplicantName languageCode="en">Audentes Therapeutics, Inc.</ApplicantName>
	<InventionTitle languageCode="en">FRATAXIN GENE THERAPY</InventionTitle>
	<SequenceTotalQuantity>6</SequenceTotalQuantity>
	<SequenceData sequenceIDNumber="1">
		<INSDSeq>
			<INSDSeq_length>633</INSDSeq_length>
			<INSDSeq_moltype>DNA</INSDSeq_moltype>
			<INSDSeq_division>PAT</INSDSeq_division>
			<INSDSeq_feature-table>
				<INSDFeature>
					<INSDFeature_key>source</INSDFeature_key>
					<INSDFeature_location>1..633</INSDFeature_location>
					<INSDFeature_quals>
						<INSDQualifier>
							<INSDQualifier_name>mol_type</INSDQualifier_name>
							<INSDQualifier_value>other DNA</INSDQualifier_value>
						</INSDQualifier>
						<INSDQualifier id="q1">
							<INSDQualifier_name>organism</INSDQualifier_name>
							<INSDQualifier_value>synthetic construct</INSDQualifier_value>
						</INSDQualifier>
					</INSDFeature_quals>
				</INSDFeature>
			</INSDSeq_feature-table>
			<INSDSeq_sequence>atgtggaccctgggcaggagggctgtggctggcctgctggccagccccagccctgcccaggcccagaccctgaccagggtgcccaggcctgctgagctggcccccctgtgtggcaggaggggcctgaggactgacattgatgccacctgcacccccaggagggccagcagcaaccagaggggcctgaaccagatctggaatgtgaagaagcagtctgtgtacctgatgaacctgaggaagtctggcaccctgggccaccctggcagcctggatgaaaccacctatgagaggctggctgaggaaaccctggacagcctggctgagttctttgaggacctggctgacaagccctacacctttgaggactatgatgtgagctttggctctggggtgctgactgtgaagctggggggggacctgggcacctatgtgatcaacaagcagacccccaacaagcagatctggctgagcagccccagctctggccccaagagatatgactggactggcaagaactgggtgtacagccatgatggggtgagcctgcatgagctgctggctgctgagctgaccaaggccctgaagaccaagctggacctgagcagcctggcctactctggcaaggatgcctga</INSDSeq_sequence>
		</INSDSeq>
	</SequenceData>
	<SequenceData sequenceIDNumber="2">
		<INSDSeq>
			<INSDSeq_length>511</INSDSeq_length>
			<INSDSeq_moltype>DNA</INSDSeq_moltype>
			<INSDSeq_division>PAT</INSDSeq_division>
			<INSDSeq_feature-table>
				<INSDFeature>
					<INSDFeature_key>source</INSDFeature_key>
					<INSDFeature_location>1..511</INSDFeature_location>
					<INSDFeature_quals>
						<INSDQualifier>
							<INSDQualifier_name>mol_type</INSDQualifier_name>
							<INSDQualifier_value>other DNA</INSDQualifier_value>
						</INSDQualifier>
						<INSDQualifier id="q2">
							<INSDQualifier_name>organism</INSDQualifier_name>
							<INSDQualifier_value>synthetic construct</INSDQualifier_value>
						</INSDQualifier>
					</INSDFeature_quals>
				</INSDFeature>
			</INSDSeq_feature-table>
			<INSDSeq_sequence>ggggttggggttgcgccttttccaaggcagccctgggtttgcgcagggacgcggctgctctgggcgtggttccgggaaacgcagcggcgccgaccctgggtctcgcacattcttcacgtccgttcgcagcgtcacccggatcttcgccgctacccttgtgggccccccggcgacgcttcctgctccgcccctaagtcgggaaggttccttgcggttcgcggcgtgccggacgtgacaaacggaagccgcacgtctcactagtaccctcgcagacggacagcgccagggagcaatggcagcgcgccgaccgcgatgggctgtggccaatagcggctgctcagcagggcgcgccgagagcagcggccgggaaggggcggtgcgggaggcggggtgtggggcggtagtgtgggccctgttcctgcccgcgcggtgttccgcattctgcaagcctccggagcgcacgtcggcagtcggctccctcgttgaccgaatcaccgacctctctccccag</INSDSeq_sequence>
		</INSDSeq>
	</SequenceData>
	<SequenceData sequenceIDNumber="3">
		<INSDSeq>
			<INSDSeq_length>210</INSDSeq_length>
			<INSDSeq_moltype>AA</INSDSeq_moltype>
			<INSDSeq_division>PAT</INSDSeq_division>
			<INSDSeq_feature-table>
				<INSDFeature>
					<INSDFeature_key>source</INSDFeature_key>
					<INSDFeature_location>1..210</INSDFeature_location>
					<INSDFeature_quals>
						<INSDQualifier>
							<INSDQualifier_name>mol_type</INSDQualifier_name>
							<INSDQualifier_value>protein</INSDQualifier_value>
						</INSDQualifier>
						<INSDQualifier id="q3">
							<INSDQualifier_name>organism</INSDQualifier_name>
							<INSDQualifier_value>synthetic construct</INSDQualifier_value>
						</INSDQualifier>
					</INSDFeature_quals>
				</INSDFeature>
			</INSDSeq_feature-table>
			<INSDSeq_sequence>MWTLGRRAVAGLLASPSPAQAQTLTRVPRPAELAPLCGRRGLRTDIDATCTPRRASSNQRGLNQIWNVKKQSVYLMNLRKSGTLGHPGSLDETTYERLAEETLDSLAEFFEDLADKPYTFEDYDVSFGSGVLTVKLGGDLGTYVINKQTPNKQIWLSSPSSGPKRYDWTGKNWVYSHDGVSLHELLAAELTKALKTKLDLSSLAYSGKDA</INSDSeq_sequence>
		</INSDSeq>
	</SequenceData>
	<SequenceData sequenceIDNumber="4">
		<INSDSeq>
			<INSDSeq_length>9224</INSDSeq_length>
			<INSDSeq_moltype>DNA</INSDSeq_moltype>
			<INSDSeq_division>PAT</INSDSeq_division>
			<INSDSeq_feature-table>
				<INSDFeature>
					<INSDFeature_key>source</INSDFeature_key>
					<INSDFeature_location>1..9224</INSDFeature_location>
					<INSDFeature_quals>
						<INSDQualifier>
							<INSDQualifier_name>mol_type</INSDQualifier_name>
							<INSDQualifier_value>other DNA</INSDQualifier_value>
						</INSDQualifier>
						<INSDQualifier id="q4">
							<INSDQualifier_name>organism</INSDQualifier_name>
							<INSDQualifier_value>synthetic construct</INSDQualifier_value>
						</INSDQualifier>
					</INSDFeature_quals>
				</INSDFeature>
			</INSDSeq_feature-table>
			<INSDSeq_sequence>tcgcgcgtttcggtgatgacggtgaaaacctctgacacatgcagctcccggacgtcattgtcgatcctgcaggcgtacgccatccaatggaaaagggggggttggatttcgcttgttgcataggttggtctcaaactcctggcctcaagtgattctcctgcctctgcctcccaaagtgctgagattacaggtgtgaggcaccatgccaggtctcttactgtttgtaattaaatacatacacattttgtgtgtttgtgtgcacctttataaagtcaaaggtgatagtaacccatttaagttcctactcaattttactttccagggataactaactactttttctttttgagatggagtctcgctgtgtagcccaggctggagtgcagtggcaccatctcggctcactgcaagctcctcctccctggttcacgctattctcctgcctcagcctccccaacaactaggactacaggctcacctcgccatacctggctaattttttgtatttttagtagagacagggtttcactgtgttagccaggatggtctcgatctcctgaccttgtgatccgcctgcctctgcctcccaaagtgctgggattacaggcatgagcaacctcacccagctgggataactactttttacaggttgatattcttttggacttttcccctgtgtaaaaatatactatatttgttatgtacatattatgtacatacagacacaaattggaccattctcagtataatgattctcaggtttttttttttttttttgaggtggggaactagataattatggacatctttccatactagcatatcaatatctacctcattctttttaatatttttgctagtattccattgtatgaatgtcctatgatttacttaacctgtccatcaatatttgtttccaggtttttgctattataatgctgctgcaaagtacatcctcacacatctttattttgtctattcatatttctgtaagataggttactaaagttggaactgccaaattaacactatcatactattttgttttttaattttaattttttaaaaaatgtaaaatgtgcaatttcaagaggagaaacttgaacacaaggagcaaaatctatttttataacatcctattaaaagcttgctttacataaagattttgaaagaatagcataaatacaagatttctattttaattggattcttagggctaataaaataatcagccttagcacttatttatttattttttttgagagggagtctcgctctgttgtccatgctggagtgcagtggcgtgatctcggctcactgcaagctccacctcatgagttcacaccattctcctgcctcagtctcccgagtagctgggactccaggcgccctctacaaagcccgtctaattttttttgtatttttagtagagacagggtttcactgtgttagccaggatggtcttgatctcctgaccttgtgatctgcccgcctcggcctcccaaagtgctgggattataggcttgagccactgctcccggccagcacttatttttataattcttcatgattactgtgttactgtcccatgggccgccagggccagctaggttggccactccctctctgcgcgctcgctcgctcactgaggccgggcgaccaaaggtcgcccgacgcccgggctttgcccgggcggcctcagtgagcgagcgagcgcgcagagagggagtggccaactccatcactaggggttcctcctagcacgcgtagaatcagaaaatctgagaagaaaacttaaaaacctttgaatctaacctactcaaataaactttgaatatatttattgaaatatttaatttgtttattttttatttttttattttagagacaaggtctcactaaagtgcaggctagagtgcagtgacacaatcatggctatggctcactgcaacctcaaactcctgggctcaagcgattctgttgccttaggttcgccaggagctggcactacaggtgccaccacacctggcttttttgttttgttttttttgggtagagaaggggatttggtatgttgcttaggctgatcttgaactagcctcacgcaatcctgcttcggctttccaaaatgttgggattataggcatgagccatgcgcctgaccttgattacctcgatgatgtgtatgtcatacattggagggcaaagacatctctgaattcctcacaacagccatggcagggggcaggtacccatgttacagatgacagactgatgcatagagaagttaagtcgtggggagtttactttctcctaaattgtcctgttactagatgaatttgtttttgtttcattttgttttgtttttgagacagagtctcatgttgtcacccagactggagtgcagtggctccatctcggctcactatagcctccgcctcctgagttcaagtgattctcctgcctcagcctcccaagtagctgggtgcatgccaccacgcctggctaatttttgtatttttagtatagatggggtttcaccatgttggccagactggtctcgaactcctgacctcaagtgatccaccccgcgcttagcctcccaaagtgctgggattataggcgtgagccaccacaccaggccatgaatttgttttcaatatttatttattttgtattttctatttttgagatggagtctcgctctgctgtccaggctagagtgcagtggtgtgatcttggctcactgtagcctccacctcctgagttcaagtgattctcctgccttagcctcccgagtagctgggattacaggcgcccaccatcacacccggctaatttttgtatttttagtagagatggggtttcaccatgttggccacgctggtctcaaactgacctcaattgatccacccaccttgacctcccaaagtgctgggattacagacctgagccacagcgcccagcccttcaatatttatttaaatttgcctgctggctaacttctcattgcacctgggctctagtgtaattaaattacttcattctctttttaaaactttttacttttttcttttttgtgtttttcattctcttatctacgagagccacaatacttgaagacaccaattgataccccttagtcacatctgagctaaacactttcagttcctacagctgtttcttaatcttaggtcacatggtttcttcccatgctgttcttcccagacagcattttttttttttttgagagtctcactctgttgcccaggctggagtacagtagcacaatctcagtttactgcaacctctgccttccaggttcaggtgattctcctgcttcagcctcctgagtagctgggactacaggagcgtgccaccacgcccggctaatttttgtatttttagtagagacagggtttcaccatgttggccaggctggtctcgaactccttaccttgtgatccgcctgtctcggcctcccaaagtggtgggattacaggtgtgagccaccacgcctggttcttacatttattttggaataaatttagatacacagaaaagttgcaaagataagagtttccatataaccctcacccagtttgccttccctaatgttcgcgtggggttggggttgcgccttttccaaggcagccctgggtttgcgcagggacgcggctgctctgggcgtggttccgggaaacgcagcggcgccgaccctgggtctcgcacattcttcacgtccgttcgcagcgtcacccggatcttcgccgctacccttgtgggccccccggcgacgcttcctgctccgcccctaagtcgggaaggttccttgcggttcgcggcgtgccggacgtgacaaacggaagccgcacgtctcactagtaccctcgcagacggacagcgccagggagcaatggcagcgcgccgaccgcgatgggctgtggccaatagcggctgctcagcagggcgcgccgagagcagcggccgggaaggggcggtgcgggaggcggggtgtggggcggtagtgtgggccctgttcctgcccgcgcggtgttccgcattctgcaagcctccggagcgcacgtcggcagtcggctccctcgttgaccgaatcaccgacctctctccccagctctaaggtaaatataaaatttttaagtgtataatgtgttaaactactgattctaattgtttctctcttttagattccaacctttagaactgaccaccatgtggaccctgggcaggagggctgtggctggcctgctggccagccccagccctgcccaggcccagaccctgaccagggtgcccaggcctgctgagctggcccccctgtgtggcaggaggggcctgaggactgacattgatgccacctgcacccccaggagggccagcagcaaccagaggggcctgaaccagatctggaatgtgaagaagcagtctgtgtacctgatgaacctgaggaagtctggcaccctgggccaccctggcagcctggatgaaaccacctatgagaggctggctgaggaaaccctggacagcctggctgagttctttgaggacctggctgacaagccctacacctttgaggactatgatgtgagctttggctctggggtgctgactgtgaagctggggggggacctgggcacctatgtgatcaacaagcagacccccaacaagcagatctggctgagcagccccagctctggccccaagagatatgactggactggcaagaactgggtgtacagccatgatggggtgagcctgcatgagctgctggctgctgagctgaccaaggccctgaagaccaagctggacctgagcagcctggcctactctggcaaggatgcctgagatatcgctttatttgtgaaatttgtgatgctattgctttatttgtaaccattataagctgcaataaacaagttaacaacaacaattgcattcattttatgtttcaggttcagggggaggtgtgggaggttttttaaagcggccaacatcttacattatcatggtacatttgtcaaaactaagacacttttttttctaataaaaataatagagatgaggtctcactatattgtccaggctggtctcaaactttgagctcaagcagtcctcccacctccacctcccaaagtgctgggattacaggcatgaaccaccacacccagcctacattgttatgttactactctccagactattcagatttcaccaatttttctatccatagcctttttttctgtttcaggatccaattcaggacaccataccactgtatggttaattttaaaaactcaaatgttgggagtttgctttatcaccgctgtatcttatcatctcgttagataattttgtatctggagcctgctctctagcatgaataagtaaaaatgtggactttgtgatttacagatctgatatttatgtttttgtgtttttactttaagtactagacaaagtaaatctaagaggtctgtggtactgcactagagaattgttacttgattatggtgggccaagtggttgaaaatttacctaacaatactataacataggccatatttcataattttaatcacaaggcaattgtgaaaattttatcaaatgtttaataaaagcaaggtgaagaaggtgatagctttaaatttacttgccatttttgggcacacaaaagtaatttgctctgccacttagagttataaggtcaaagtgggagtaaataatctttgtattaggaatgcggccgctctaggaggaacccctagtgatggagttggccactccctctctgcgcgctcgctcgctcactgaggccgcccgggcaaagcccgggcgtcgggcgacctttggtcgcccggcctcagtgagcgagcgagcgcgcagagagggagtggccaacctagaggccgccagggccatatttctcaatttttaaatttttcaaaaaaattaatccttaatgtgcatatttttgaattgttaatataactttttgaggtgatgtcttcatgtgtttcaactacttaaaaacttttaaacagtatataataaaaaatcttccaggccactcacacctgtaatcccagcactttgggaggctgaggtgggcagatcacctgagggcaggagttcgagaccagcctggccaatatatatatattcatatattcatatatatatatatattcatatattcatatatatatattcatatattcatatatatatatatatatatatatagcaaaacctcatctctaataaaatacaaaaattagctgagcgtggtgatggatgcctgtagtcccagctactcgggaggctgaggcaggagaatctcttgaacctgggaggtggaggttgcagtgagctgagatggtgccactgccctccagcctgagtgacagagcgagactcggtctccaaaaaaaaacaacaaaaaaatcttccatccttgtctcccatccaccccttccccccagcatgtacttgcagactttatgcatatacagtgagtactgtatatacacaaataataaaaaaatcatatatataatatatgtaattcccctttacatgaaaggtagcacactggtctgtacagtctgtctgcactgtgctatttcactttatatttttatagtttgacagagttctaacatttctttttttttttttttaacagagtcttgttcctgattgttaaattttaaagcatcctaaagtttggtttcacacttgaatgaataccatgtaaggattcacttacatagatgtggttgcctgaatcttaagaataaaataacattgtttgtatttatttaaattagtgttccttttatggtttgcctgaaagcacaacaaaatcctcaccaagatattacaattatgactcccatacaggtaaactgtttagagattggcaagcaccttttaatgaaaggagtcagccagcttagtgtgcagtatttatttctgccggaagagggagcttcagggacagactttggtttagtcatgaagcctccagcactcccaagcggttgtggttgaccaagcaatttatgcttttacctttctacttccagaggcttgtttacttatcagtaagcattaatttagtgtcccctcagatgccttttactttcttcttttctgcctagaataagctgctcttccaattttgcagctacatgtttccaccccagttggaatttctccataacatccattgtagctatccttcaatctacagcctctatttcctgttatagctggtcaggtctaatccctcaaaatactctgtcccctgcttcccttatctgctggccacctttttcccccacatacacactgccatgtcccacccttcactcaagttgttccctgccacctcaacaaatttaagtccataaaaccatccaatgggctcgagccctgcaggatcattgtcacatgtgagcaaaaggccagcaaaaggccaggaaccgtaaaaaggccgcgttgctggcgtttttccataggctccgcccccctgacgagcatcacaaaaatcgacgctcaagtcagaggtggcgaaacccgacaggactataaagataccaggcgtttccccctggaagctccctcgtgcgctctcctgttccgaccctgccgcttaccggatacctgtccgcctttctcccttcgggaagcgtggcgctttctcatagctcacgctgtaggtatctcagttcggtgtaggtcgttcgctccaagctgggctgtgtgcacgaaccccccgttcagcccgaccgctgcgccttatccggtaactatcgtcttgagtccaacccggtaagacacgacttatcgccactggcagcagccactggtaacaggattagcagagcgaggtatgtaggcggtgctacagagttcttgaagtggtggcctaactacggctacactagaagaacagtatttggtatctgcgctctgctgaagccagttaccttcggaaaaagagttggtagctcttgatccggcaaacaaaccaccgctggtagcggtggtttttttgtttgcaagcagcagattacgcgcagaaaaaaaggatctcaagaagatcctttgatcttttctacggggtctgacgctcagtggaacgaaaactcacgttaagggattttggtcatgagattatcaaaaaggatcttcacctagatccttttaaattaaaaatgaagttttaaatcaagcccaatctgaataatgttacaaccaattaaccaattctgattagaaaaactcatcgagcatcaaatgaaactgcaatttattcatatcaggattatcaataccatatttttgaaaaagccgtttctgtaatgaaggagaaaactcaccgaggcagttccataggatggcaagatcctggtatcggtctgcgattccgactcgtccaacatcaatacaacctattaatttcccctcgtcaaaaataaggttatcaagtgagaaatcaccatgagtgacgactgaatccggtgagaatggcaaaagtttatgcatttctttccagacttgttcaacaggccagccattacgctcgtcatcaaaatcactcgcatcaaccaaaccgttattcattcgtgattgcgcctgagcgagacgaaatacgcgatcgctgttaaaaggacaattacaaacaggaatcgaatgcaaccggcgcaggaacactgccagcgcatcaacaatattttcacctgaatcaggatattcttctaatacctggaatgctgtttttccggggatcgcagtggtgagtaaccatgcatcatcaggagtacggataaaatgcttgatggtcggaagaggcataaattccgtcagccagtttagtctgaccatctcatctgtaacatcattggcaacgctacctttgccatgtttcagaaacaactctggcgcatcgggcttcccatacaagcgatagattgtcgcacctgattgcccgacattatcgcgagcccatttatacccatataaatcagcatccatgttggaatttaatcgcggcctcgacgtttcccgttgaatatggctcataacaccccttgtattactgtttatgtaagcagacagttttattgttcatgatgatatatttttatcttgtgcaatgtaacatcagagattttgagacacgggccagagctgca</INSDSeq_sequence>
		</INSDSeq>
	</SequenceData>
	<SequenceData sequenceIDNumber="5">
		<INSDSeq>
			<INSDSeq_length>7168</INSDSeq_length>
			<INSDSeq_moltype>DNA</INSDSeq_moltype>
			<INSDSeq_division>PAT</INSDSeq_division>
			<INSDSeq_feature-table>
				<INSDFeature>
					<INSDFeature_key>source</INSDFeature_key>
					<INSDFeature_location>1..7168</INSDFeature_location>
					<INSDFeature_quals>
						<INSDQualifier>
							<INSDQualifier_name>mol_type</INSDQualifier_name>
							<INSDQualifier_value>other DNA</INSDQualifier_value>
						</INSDQualifier>
						<INSDQualifier id="q5">
							<INSDQualifier_name>organism</INSDQualifier_name>
							<INSDQualifier_value>synthetic construct</INSDQualifier_value>
						</INSDQualifier>
					</INSDFeature_quals>
				</INSDFeature>
			</INSDSeq_feature-table>
			<INSDSeq_sequence>agtctcccttgggtcaggggtcctggttgcactccgtgctttgcacaaagcaggctctccatttttgttaaatgcacgaatagtgctaagctgggaagttcttcctgaggtctaacctctagctgctcccccacagaagagtgcctgcggccagtggccaccaggggtcgccgcagcacccagcgctggagggcggagcgggcggcagacccggagcagcatgtggactctcgggcgccgcgcagtagccggcctcctggcgtcacccagcccagcccaggcccagaccctcacccgggtcccgcggccggcagagttggccccactctgcggccgccgtggcctgcgcaccgacatcgatgcgacctgcacgccccgccgcgcaagttcgaaccaacgtggcctcaaccagatttggaatgtcaaaaagcagagtgtctatttgatgaatttgaggaaatctggaactttgggccacccaggctctctagatgagaccacctatgaaagactagcagaggaaacgctggactctttagcagagttttttgaagaccttgcagacaagccatacacgtttgaggactatgatgtctcctttgggagtggtgtcttaactgtcaaactgggtggagatctaggaacctatgtgatcaacaagcagacgccaaacaagcaaatctggctatcttctccatccagtggacctaagcgttatgactggactgggaaaaactgggtgtactcccacgacggcgtgtccctccatgagctgctggccgcagagctcactaaagccttaaaaaccaaactggacttgtcttccttggcctattccggaaaagatgcttgatgcccagccccgttttaaggacattaaaagctatcaggccaagaccccagcttcattatgcagctgaggtctgttttttgttgttgttgttgtttattttttttattcctgcttttgaggacagttgggctatgtgtcacagctctgtagaaagaatgtgttgcctcctaccttgcccccaagttctgatttttaatttctatggaagattttttggattgtcggatttcctccctcacatgataccccttatcttttataatgtcttatgcctatacctgaatataacaacctttaaaaaagcaaaataataagaaggaaaaattccaggagggaaaatgaattgtcttcactcttcattctttgaaggatttactgcaagaagtacatgaagagcagctggtcaacctgctcactgttctatctccaaatgagacacattaaagggtagcctacaaatgttttcaggcttctttcaaagtgtaagcacttctgagctctttagcattgaagtgtcgaaagcaactcacacgggaagatcatttcttatttgtgctctgtgactgccaaggtgtggcctgcactgggttgtccagggagacctagtgctgtttctcccacatattcacatacgtgtctgtgtgtatatatattttttcaatttaaaggttagtatggaatcagctgctacaagaatgcaaaaaatcttccaaagacaagaaaagaggaaaaaaagccgttttcatgagctgagtgatgtagcgtaacaaacaaaatcatggagctgaggaggtgccttgtaaacatgaaggggcagataaaggaaggagatactcatgttgataaagagagccctggtcctagacatagttcagccacaaagtagttgtccctttgtggacaagtttcccaaattccctggacctctgcttccccatctgttaaatgagagaatagagtatggttgattcccagcattcagtggtcctgtcaagcaacctaacaggctagttctaattccctattgggtagatgaggggatgacaaagaacagtttttaagctatataggaaacattgttattggtgttgccctatcgtgatttcagttgaattcatgtgaaaataatagccatccttggcctggcgcggtggctcacacctgtaatcccagcacttttggaggccaaggtgggtggatcacctgaggtcaggagttcaagaccagcctggccaacatgatgaaaccccgtctctactaaaaatacaaaaaattagccgggcatgatggcaggtgcctgtaatcccagctacttgggaggctgaagcggaagaatcgcttgaacccagaggtggaggttgcagtgagccgagatcgtgccattgcactgtaacctgggtgactgagcaaaactctgtctcaaaataataataacaatataataataataatagccatcctttattgtacccttactgggttaatcgtattataccacattacctcattttaatttttactgacctgcactttatacaaagcaacaagcctccaggacattaaaattcatgcaaagttatgctcatgttatattattttcttacttaaagaaggatttattagtggctgggcatggtggcgtgcacctgtaatcccaggtactcaggaggctgagacgggagaattgcttgaccccaggcggaggaggttacagtgagtcgagatcgtacctgagcgacagagcgagactccgtctcaaaaaaaaaaaaaaggagggtttattaatgagaagtttgtattaatatgtagcaaaggcttttccaatgggtgaataaaaacacattccattaagtcaagctgggagcagtggcatatacctatagtcccagctgcacaggaggctgagacaggaggattgcttgaagccaggaattggagatcagcctgggcaacacagcaagatcctatctcttaaaaaaagaaaaaaaaacctattaataataaaacagtataaacaaaagctaaataggtaaaatattttttctgaaataaaattattttttgagtctgatggaaatgtttaagtgcagtaggccagtgccagtgagaaaataaataacatcatacatgtttgtatgtgtttgcatcttgcttctactgaaagtttcagtgcaccccacttacttagaactcggtgacatgatgtactcctttatctgggacacagcacaaaagaggtatgcagtggggctgctctgacatgaaagtggaagttaaggaatctgggctcttatggggtccttgtgggccagcccttcaggcctattttactttcattttacatatagctctaattggtttgattatctcgttcccaaggcagtgggagatccccatttaaggaaagaaaaggggcctggcacagtggctcatgcctgtaatcccagcactttgggaggctgaggcaagtgtatcacctgaggtcaggagttcaagaccagcctggccaacatggcaaaatcccgtctctactaaaaatattaaaaaattggctgggcgtggtggttcgtgcctataatttcagctactcaggaggctgaggcaggagaatcgctgtaacctggggggtggaggttgcagtgagacgagatcatgccacttcactccagcctggccaacagagccatactccgtctcaaataaataaataaataaataaagggacttcaaacacatgaacagcagccaggggaagaatcaaaatcatattctgtcaagcaaactggaaaagtaccactgtgtgtaccaatagcctccccaccacagaccctgggagcatcgcctcatttatggtgtggtccagtcatccatgtgaaggatgagtttccaggaaaaggttattaaatattcactgtaacatactggaggaggtgaggaattgcataatacaatcttagaaaacttttttttcccctttctattttttgagacaggatctcactttggcactcaggctggaggacagtggtacaatcaaagctcatggcagcctcgacctccctgggcttgggcaatcctcccacaggtgtgcacctccatagctggctaatttgtgtattttttgtagagatggggtttcaccatgttgcccaggctggtctctaacacttaggctcaagtgatccacctgcctcgtcctcccaagatgctgggattacaggtgtgtgccacaggtgttcatcagaaagctttttctattatttttaccttcttgagtgggtagaacctcagccacatagaaaataaaatgttctggcatgacttatttagctctctggaattacaaagaaggaatgaggtgtgtaaaagagaacctgggtttttgaatcacaaatttagaatttaatcgaaactctgcctcttacttgtttgtagacactgacagtggcctcatgttttttttttttttaatctataaaatggagatatctaacatgttgagcctgggcccacaggcaaagcacaatcctgatgtgagaagtactcagttcatgacaactgttgttctcacatgcatagcataatttcatattcacattggaggacttctcccaaaatatggatgacgttccctactcaaccttgaacttaatcaaaatactcagtttacttaacttcgtattagattctgattccctggaaccatttatcgtgtgccttaccatgcttatattttacttgatcttttgcataccttctaaaactattttagccaatttaaaatttgacagtttgcattaaattataggtttacaatatgctttatccagctatacctgccccaaattctgacagatgcttttgccacctctaaaggaagacccatgttcatagtgatggagtttgtgtggactaaccatgcaaggttgccaaggaaaaatcgctttacgcttccaaggtacacactaagatgaaagtaattttagtccgtgtccagttggattcttggcacatagttatcttctgctagaacaaactaaaacagctacatgccagcaagggagaaaggggaaggaggggcaaagttttgaaatttcatgtaaatttatgctgttcaaaacgacgagttcatgactttgtgtatagagtaagaaatgccttttcttttttgagacagagtcttgctctgtcacccaggctggagtgcagtggcacgatctgggctcactacaacctccgcctcctgggttcaagcaattctctgcctcagcctcccgagtagctgggattacaggtgcctgccaccacacccggctaatttttgtatttttagtagagacggggtttcaccatcatggccaggctggtcttgaactcctgacctagtaatccacctgcctccgcctcccaaagtgctgggattacaggcgtgagccactgcacccagccagaaatgccttctaatctttggtttatcttaattagccaggacacttggagtgcatcccgaagtacctgatcagtggcccctttggaatgtgtaaaactcagctcacttatatccctgcatccgctacagagacagaatccaagctcatatgttccatcttctctggctgtatagtttaaggaatggaaggcaccagaacagatttattgaaatgtttattagctgaagatttatttagacagttgaggaaaacatcagcacccagcagtaaaattggctctcaaagattttcttctcctgtggaaagtcagacctctgaggccccatccaggtagaagtactagtgcaagaagggcctctgctgtccacttgtgtttctgtgatctgtgggaacattgttaacgccacatcttgacctcaaattgtttagctcctggccagacacggtggctcacacctgtaatcccagcactttgagaggctgaggcaggtggatcacctgaggttaggagttcgaggccagcctggtcaacatggtaaaaccccgcctctactaaaaatacaaaaattagctggccgtagtggcgcacgcctgttatcccagctactcgggaggctgaggcaggagaattgcttgaacctgggtggtggaggttgcagtgagccgagattacaccactgcactccagcctgggtgacaagagggaaactccattaaaaaaatgtaattcccgtgtctgccatcttaagtgtaaaggtggctaaattatatagaaaaataagacaatatcatttcccaattacattcctttcctaccgcactctatgatgctagctgagatttttccaaaagaaaatggcttaaataaaaccctaagagaaagaaaaactttaaatccctccaaagctcaaaagtaatagaaacagatgagtttggagtcaggatttctctgtaagattgcctaggctgtgtactgcacatctccaggtgccactgttgacagagattataactacaatgtgaagtgaatggtgccactgacagttatgcaaaccgtccagagcatagccacctgatcctgctgggattcctcttgccagtccatcagcagttccccttgaaagtttcaccaaacatcccttaaatctgccctctcctgcccgtccccagtggaggtcctcatcatttttcacctgcatttttgcaggagctttcttatatccaccttcctccttttctctcagcccatcatctagctacacagtctccagggtaagctttcagaaaggcaatctcttgtctgtaaaacctaagcaggaccaaggccaagtttcttagcctgaaaaatgtgcttttctgactgaactgttcaggcactgactctacatataattatgcttttctaccccctcacactcaacactttgactccagcaatcccaaatccccagatccctaagtgtgctgtgctattttcacgtggctctcagacttggccagtgctgtttccattttggtctttattccccacatctctgcctggggggtagattctaccctgaaaaatgttcttggcacagccttgcaaactcctcctccactcagcctctgcctggatgcccttgattgttccatgtcctcagcataccatgtttgtctttcccagcactgacctaccatgtgtcacccctgcttggctgtaccttccatgaggctaggactatgtgtctcctttgttgactgctgttgccctagcatcttgcacagttccttgcacacaattagagctctataaatgtcaaataaatgtgttataattatatgtttaagatagttgttcaaataaactctaaataaccccaac</INSDSeq_sequence>
		</INSDSeq>
	</SequenceData>
	<SequenceData sequenceIDNumber="6">
		<INSDSeq>
			<INSDSeq_length/>
			<INSDSeq_moltype/>
			<INSDSeq_division/>
			<INSDSeq_sequence>000</INSDSeq_sequence>
		</INSDSeq>
	</SequenceData>
</ST26SequenceListing>
