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ưҡʥȥ󥹥ݥˤϿʲθưϭȥ饷ο̣⺸ ҥå
2019-9-22 7:15 : Mashi () [ 112hit ]

   ãΥΥDNAϡΤ˴륹λijͳ褬¿äưҥȥ󥹥ݥȾʬ᤯Ƥ뤳Ȥ򤴾Ҳ𤷤Ƥޤȥ󥹥ݥϡȤХҥȤǤϡȱ֡Ӯνи⼡ǾǸ褦ˡΥ๽¤ȯѲ뤳Ȥǡʲ礭ʸưϤȤʤäƤȹͤޤޤȥ󥹥ݥϡʪĹּǤϿʲθưϡû֤ǤϿʼνиʹڤʥβ֤ˤʤɤȤª뤳ȤǤ뤳Ȥ⤴Ҳ𤷤ޤϡȥ饷οɤΥݥɤ˥ȥ󥹥ݥ󤬴طƤȤʸ򤴾Ҳפޤ


   ȥ饷ο̣ζϡ̣ʬץΥɤδ̤ˤäƷޤäƤޤץΥɤϡץ䥸ҥɥץʤɿοɤʬΤǤץΥɤϡȥ饷°β̼ۺ¡ʼҤ夷Ƥʬˤγɡʽδ¸ߤʬˤ¿ޤޤƤޤȥ饷ˤ͡ʷʼ郎ꡢץΥɴ̤ˤĤ礭ʷֺǧޤδ̤ΰ㤤ꤷƤʬҥᥫ˥ϤۤȤʬäƤޤǤ


   ǶᡢءءؤϡƱǥȥ饷ο̣٥ѲѰۤƱꤷޤ楰롼פϡ̣ʬιϩΰpAMTΰ֤ˡȥ󥹥ݥƤ뤳ȡƤ֤ζϤʰ㤤̣٥ΰ㤤ȿǤ뤳Ȥ餫ˤޤpAMTϥץΥɤ̤ظΤ褦ʰҤǤꡢȥ󥹥ݥΰ֤Ǥμظޤ礬Ѥ뤳ȤȽޤ


   ץΥɤϡХ˥󤫤Х˥륢ߥ󤬹졢˻û礹뤳ȤˤƤޤ̣ʬιϩΰpAMTϡΥХ˥󤫤Х˥륢ߥ˴طǤǤpAMT εǽ»ȥ饷ǤϡϩμظĤޤꡢץΥɴ̤㸺ɤʤȥ饷Ȥʤޤ


   ãϡɤߤΰۤʤȥ饷pAMTdzҲϤԤޤη̡ץΥɤι̤Ѱ۷Ǥϡȥʰˤʤ̡̤ϥȸƤФˤ˥ȥ󥹥ݥƤޤ˿ɤߤΰۤʤΤǤϡȥؤΥȥ󥹥ݥ֤˰㤤뤳Ȥʬޤ


   ȥΰ˥ȥ󥹥ݥ뤳ȤǡҤΥץ饤󥰡ˤʤʤȥʬڤФ礹ˤѲ̡ʹǻ̡ˤκȤʤꡢ줬ץΥɤδ̤ͭȿǤ줿Ȼפޤȥ󥹥ݥ֤ζϤʰ㤤ȥ饷ο̣٥뤬ۤʤѰۼФƤȤθǤ


   ޤǤο̣ϡץΥɴ̤ΰۤʤȥ饷򻨤θǶ礦ɤ̣θΤȴȤˡǹԤƤޤ줫ϡȥ󥹥ݥ֤ʬäȤȤˤꡢ̣٥򼫺ߤĴȥ饷ΰ郎ǽˤʤȻפޤ(by Mashi)


 ȥ饷Υԥݥɡ֤ȤܡϤͤȤäʱˡȤ餷פȤˡξ֤졢֤Ȥ餷ϤͤĤ顿Ȥܡפ֤ȤäȤʤȤʹԾܡˡ


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ʸYoshiyuki Tanaka, et al., Positional differences of intronic transposons in pAMT affect the pungency level in chili pepper through altered splicing efficiency. The Plant Journal. (2019) doi.org/10.1111/tpj.14462
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