| ²é¿´: 861 | »Ø¸´: 1 | ||||
½úÅô°æÖ÷ (ÖªÃû×÷¼Ò)
|
[½»Á÷]
[ÓÅÐãÎÄÕÂÍÆ¼ö] Àî´«ÓÑÑо¿×é½âÎöÜÔÀòËáµ÷¿ØÖ²ÎïÃâÒßµÄ×ªÂ¼ÖØ±à³Ì ÒÑÓÐ1È˲ÎÓë
|
|
ÜÔÀòËáÊÇÀ´Ô´ÓÚ²»±¥ºÍÖ¬·¾ËáµÄÖ²ÎïÃâÒß¼¤ËØ¡£ÆäÉúÎïºÏ³É;¾¶ºÍ»¯Ñ§½á¹¹Óë¸ßµÈ¶¯ÎïÖеÄÃâÒß¼¤ËØÇ°ÁÐÏÙËØÓм«¸ßµÄÀàËÆÐÔ¡£¶ÔÓ¦ÓÚ»úеÉ˺¦¡¢¾×½ÀʽÀ¥³æºÍËÀÌåÓªÑøÐͲ¡Ô¾úµÄÇÖº¦£¬Ö²ÎD»îÜÔÀòËáÐźÅͨ·£¬Æô¶¯²¢¼¶Áª·Å´óÜÔÀòËá½éµ¼µÄ×ªÂ¼ÖØ±à³Ì£¬´Ó¶ø²úÉúÓÐЧµÄ·ÀÓù·´Ó¦¡£µ«Ä¿Ç°¶ÔÜÔÀòËἤ»îÖ²ÎïÃâÒß×ªÂ¼ÖØ±à³ÌµÄ»úÀíËùÖªÉõÉÙ¡£ Öйú¿ÆÑ§ÔºÒÅ´«Óë·¢ÓýÉúÎïѧÑо¿ËùÀî´«ÓÑÑо¿×鳤ÆÚÒÔ·¬ÇÑΪģʽÑо¿ÜÔÀòËáµ÷¿ØÖ²ÎïÃâÒߵķÖ×Ó»úÀí¡£¸ÃÑо¿×é×î½üµÄÑо¿·¢ÏÖ£¬ÜÔÀòËáÐźÅͨ·µÄºËÐÄת¼Òò×ÓMYC2ͨ¹ýÕýÏòµ÷¿Ø»úеËðÉËÏà¹Ø»ùÒò¼°²¡³ÌÏà¹Ø»ùÒòµÈÓ뿹²¡¿¹³æÃÜÇÐÏà¹ØµÄ»ùÒòµÄ±í´ïʵÏÖÖ²Îï¶Ô²¡³æÇÖº¦µÄÓÐЧ·ÀÓù¡£ÀûÓÃȾɫÖÊÃâÒß¹²³Áµí--²âÐò£¨ChIP-Seq£©ÓëÈ«»ùÒò×é±í´ïÆ×--²âÐò£¨RNA-Seq£©Ïà½áºÏµÄÊֶΣ¬Àî´«ÓÑÑо¿×éÔÚ·¬ÇÑÈ«»ùÒò×鷶ΧÄÚÈ·¶¨ÁËһϵÁÐMYC2Ö±½Ó½áºÏµÄ°Ð±ê»ùÒò¡£ÁîÈ˸ÐÐËȤµÄÊÇ£¬Àî´«ÓÑÑо¿×é·¢ÏÖMYC2Ö±½Ó½áºÏµÄ°Ð±ê»ùÒòÖи»º¬×ªÂ¼Òò×Ó»ùÒò£¬±íÃ÷MYC2ÊÇÜÔÀòËáÐźÅͨ·Öи߲㼶µÄת¼µ÷¿ØÔª¼þ¡£½øÒ»²½Ñо¿±íÃ÷MYC2ÓëÆäÖ±½Ó½áºÏµÄ´Î¼¶×ªÂ¼Òò×ÓÐγÉһϵÁеÄת¼¼¶Áªµ÷¿ØÄ£¿é£¨transcription module£©¡£ÕâЩת¼¼¶Áªµ÷¿ØÄ£¿éÔÚÃâÒß×ªÂ¼ÖØ±à³ÌµÄ¼¤»îºÍ¼¶Áª·Å´óÖÐÆðÖÁ¹ØÖØÒªµÄ×÷Óá£ÕâÒ»·¢ÏÖ¶ÔÓÚÈËÃÇÉîÈëÀí½âÜÔÀòËáµ÷¿ØÖ²Î²¡¿¹³æµÄ»úÀí¾ßÓÐÖØÒªÒâÒ壬²¢Îª·¬ÇÑ¿¹²¡¿¹³æ·Ö×ÓÓýÖÖÌṩÁËÖØÒªµÄÀíÂÛÖ¸µ¼¡£ ¸ÃÑо¿½á¹ûÒÑÓÚ2017Äê7ÔÂ21ÈÕÔÚÏß·¢±íÓÚThe Plant Cell (DOI:10.1105/tpc.16.00953)¡£Àî´«ÓÑÑо¿×éµÄ¶ÅÃôÃô²©Ê¿ºÍɽ¶«Å©Òµ´óѧµÄÕԾú£½ÌÊÚÊǸÃÂÛÎĵĹ²Í¬µÚÒ»×÷Õß¡£¸ÃÑо¿µÃµ½Öйú¿ÆÑ§ÔºÕ½ÂÔÐÔÏȵ¼×¨Ïî¡¢¿Æ¼¼²¿¡¢Å©Òµ²¿ºÍ¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðίµÄ×ÊÖú¡£ The hormone jasmonate (JA), which functions in plant immunity, regulates resistance to pathogen infection and insect attack through triggering genome-wide transcriptional reprogramming in plants. We show that the basic helix-loop-helix transcription factor (TF) MYC2 in tomato (Solanum lycopersicum) acts downstream of the JA receptor to orchestrate JA-mediated activation of both the wounding and pathogen responses. Using chromatin immunoprecipitation sequencing (ChIP-seq) coupled with RNA sequencing (RNA-seq) assays, we identified 655 MYC2-targeted JA-responsive genes. These genes are highly enriched in Gene Ontology categories related to TFs and the early response to JA, indicating that MYC2 functions at a high hierarchical level to regulate JA-mediated gene transcription. We also identified a group of MYC2-targeted TFs (MTFs) that may directly regulate the JA-induced transcription of late defense genes. Our findings suggest that MYC2 and its downstream MTFs form a hierarchical transcriptional cascade during JA-mediated plant immunity that initiates and amplifies transcriptional output. As proof of concept, we showed that during plant resistance to the necrotrophic pathogen Botrytis cinerea, MYC2 and the MTF JA2-Like (JA2L) form a transcription module that preferentially regulates wounding-responsive genes, whereas MYC2 and the MTF ETHYLENE RESPONSE FACTOR.C3 (ERF.C3) form a transcription module that preferentially regulates pathogen-responsive genes. |
» ÊÕ¼±¾ÌûµÄÌÔÌûר¼ÍƼö
Å©ÁÖ½øÕ¹ |
» ²ÂÄãϲ»¶
²ÄÁÏÓ뻯¹¤304ÇóBÇøµ÷¼Á
ÒѾÓÐ7È˻ظ´
0703»¯Ñ§336·ÖÇóµ÷¼Á
ÒѾÓÐ4È˻ظ´
[¸´ÊÔµ÷¼Á]Î÷ÄϿƼ¼´óѧ¹ú·À/²ÄÁϵ¼Ê¦ÍƼö
ÒѾÓÐ6È˻ظ´
»¯Ñ§¹¤³Ì321·ÖÇóµ÷¼Á
ÒѾÓÐ12È˻ظ´
211±¾£¬11408Ò»Ö¾Ô¸ÖпÆÔº277·Ö£¬ÔøÔÚÖпÆÔº×Ô¶¯»¯Ëùʵϰ
ÒѾÓÐ4È˻ظ´
²ÄÁÏר˶326Çóµ÷¼Á
ÒѾÓÐ5È˻ظ´
¶«ÄÏ´óѧ364Çóµ÷¼Á
ÒѾÓÐ5È˻ظ´
¹ú×Ô¿ÆÃæÉÏ»ù½ð×ÖÌå
ÒѾÓÐ7È˻ظ´
ҩѧ383 Çóµ÷¼Á
ÒѾÓÐ4È˻ظ´
286Çóµ÷¼Á
ÒѾÓÐ5È˻ظ´
» ±¾Ö÷ÌâÏà¹ØÉ̼ÒÍÆ¼ö: (ÎÒÒ²ÒªÔÚÕâÀïÍÆ¹ã)

ľ×ÖÍ·
Ìú³æ (³õÈëÎÄ̳)
- Ó¦Öú: 0 (Ó×¶ùÔ°)
- ½ð±Ò: 16
- Ìû×Ó: 5
- ÔÚÏß: 2Сʱ
- ³æºÅ: 6310684
- ×¢²á: 2017-04-13
- ÐÔ±ð: GG
- רҵ: ÉúÎﺣÑóѧÓ뺣ÑóÉúÎï×ÊÔ´
¡ï ¡ï
Сľ³æ: ½ð±Ò+0.5, ¸ø¸öºì°ü£¬Ð»Ð»»ØÌû
½úÅô: ½ð±Ò+1, ¹ÄÀø»ØÌû½»Á÷~»¶Ó³£À´Å©ÁÖ°æ½»Á÷¾Ñé~ 2017-10-17 14:36:37
Сľ³æ: ½ð±Ò+0.5, ¸ø¸öºì°ü£¬Ð»Ð»»ØÌû
½úÅô: ½ð±Ò+1, ¹ÄÀø»ØÌû½»Á÷~»¶Ó³£À´Å©ÁÖ°æ½»Á÷¾Ñé~ 2017-10-17 14:36:37
|
Â¥Ö÷ÕâÆªÎÄÕÂÓнâÎöÂ𣬾ÍÊǹØÓÚÎÄÕÂÀï±ßʵÑéÊý¾ÝµÄ½â¶Á ·¢×ÔСľ³æAndroid¿Í»§¶Ë |
2Â¥2017-10-17 13:52:47













»Ø¸´´ËÂ¥

20