
ÐÕÃû£º³£ÕñÒÇ
½²Ê¦£¬ÖÐҩѧ˶ʿÉúµ¼Ê¦
ÁªÏµ·½Ê½£ºchangzhenyi@gzucm.edu.cn
¼ò½é£º²©Ê¿£¬ÇàÄê¹Ç¸É½Ìʦ¡£Ö÷ÒªÑо¿·½ÏòΪҩÓÃÖ²ÎïÉú³¤·¢ÓýÓëÆ·ÖÊÐγɵÄÐͬµ÷¿Ø»úÖÆ¡£Ö÷³Ö¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÇàÄêÏîÄ¿1Ïî¡¢¹ã¶«Ê¡×ÔÈ»¿ÆÑ§»ù½ð2Ï²ÎÓë¹ú¼ÒÖØµãÑз¢¼Æ»®¼°¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÁªºÏ»ù½ðµÈ¶àÏî¹ú¼Ò¼¶ÖØ´ó¿ÎÌâ¡£ÒÑÔÚProceedings of the National Academy of Sciences (PNAS)ºÍJournal of Experimental BotanyµÈ¹ú¼ÊÖ÷Á÷ѧÊõÆÚ¿¯ÉÏ·¢±íѧÊõÂÛÎÄ10ÓàÆª£»»ñÊÚȨ¹ú¼Ò·¢Ã÷רÀû3Ï»ñÉîÛÚÊпÆÑ§¼¼Êõ½±µÈÈÙÓþ¡£
½ÌÓý¾Àú
2017.9-2020.6 »ªÄÏʦ·¶´óѧ£¬ÉúÃü¿ÆÑ§Ñ§Ôº£¬Ö²Îïѧרҵ£¬²©Ê¿
2009.9-2012.6 ÖÐɽ´óѧ£¬ÉúÃü¿ÆÑ§Ñ§Ôº£¬Ö²Îïѧרҵ£¬Ë¶Ê¿
2005.9-2009.6 ÖÐɽ´óѧ£¬ÉúÃü¿ÆÑ§Ñ§Ôº£¬ÉúÎï¿ÆÑ§×¨Òµ£¬Ñ§Ê¿
¹¤×÷¾Àú
2020.9ÖÁ½ñ ½ðÑÇÌåÓý¹Ù·½µÇ¼Èë¿ÚÍøÖ·£¬½²Ê¦
2012.7-2017.8 ÉîÛÚÊÐ×÷Îï·Ö×ÓÉè¼ÆÓýÖÖÑо¿Ôº£¬ÖúÀíÑо¿Ô±
³Ðµ£¿Î³Ì
±¾¿ÆÉú¿Î³Ì£º¡¶Ò©ÓÃÖ²Îïѧ¡·ºÍ¡¶·Ö×ÓÉúÎïѧ¡·
Ñо¿Éú¿Î³Ì£º¡¶·Ö×ÓÉúÎïѧ¡·
Ñо¿·½Ïò£ºÒ©ÓÃÖ²ÎïÉú³¤·¢ÓýÓëÆ·ÖÊÐγɵÄÐͬµ÷¿Ø»úÖÆ
¿ÆÑÐÏîÄ¿
[1] ¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðίԱ»á£¬ÇàÄê¿ÆÑ§»ù½ðÏîÄ¿£¬32300288£¬SWI/SNFȾɫÖÊÖØËܸ´ºÏÌ廥×÷µ°°×PSA1ÔÚÄâÄϽ淢Óý¹ý³ÌÖеŦÄܼ°×÷ÓûúÖÆÑо¿£¬2024-01-01ÖÁ2026-12-31£¬30ÍòÔª£¬ÔÚÑУ¬Ö÷³Ö
[2] ¹ã¶«Ê¡»ù´¡ÓëÓ¦Óûù´¡Ñо¿»ù½ðίԱ»á£¬¹ã¶«Ê¡×ÔÈ»¿ÆÑ§»ù½ð-ÃæÉÏÏîÄ¿£¬2026A1515012302£¬µÍε÷¿Ø¹ãÞ½Ï㿪»¨µÄ»úÖÆÌ½¾¿£¬2026-01-01ÖÁ2028-12-31£¬10ÍòÔª£¬ÔÚÑУ¬Ö÷³Ö
[3] ¹ã¶«Ê¡»ù´¡ÓëÓ¦Óûù´¡Ñо¿»ù½ðίԱ»á£¬ÇøÓòÁªºÏ»ù½ð-ÇàÄê»ù½ð£¬2022A1515110510£¬¹ãÞ½ÏãÓÐÐÔÉúÖ³ÕϰµÄ³ÉÒò·ÖÎö¼°ÆÆ³ý;¾¶Ì½¾¿£¬2022-10-01ÖÁ2025-09-30£¬10ÍòÔª£¬½áÌ⣬Ö÷³Ö
[4] ¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðίԱ»á£¬ÁªºÏ»ù½ðÏîÄ¿£¬U22A20446£¬ÁëÄÏÌØÉ«Ò©ÓÃÖ²Îï·¢ÓýºÍÆ·ÖÊÐγɵĹâε÷¿Ø»úÖÆÑо¿£¬2023-01-01ÖÁ2026-12-31£¬257ÍòÔª£¬ÔÚÑУ¬²ÎÓë
[5] ¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðίԱ»á£¬ÁªºÏ»ù½ðÏîÄ¿£¬U1901203£¬Ë®µ¾¡°¹ãÈýϵ¡±ÔÓ½»ÓýÖÖ¼¼Êõ¹Ø¼üÔª¼þºË²»Óý»ùÒò×ÊÔ´µÄÍÚ¾òÓëÑо¿£¬2020/01/01-2023/12/31£¬255ÍòÔª£¬½áÌ⣬²ÎÓë
[6] ¹ú¼ÒÖØµãÑз¢¼Æ»®2016ÄêÊÔµãרÏîÏîÄ¿£¬2016YFD0100406£¬Ö÷Ҫũ×÷Îï²úÁ¿ÐÔ×´ÐγɵķÖ×Ó»ù´¡£¬2016/07/01-2020/12/31£¬80ÍòÔª£¬½áÌ⣬²ÎÓë
´ú±íÐÔÂÛÎÄÂÛÖø
[1] Wang M, Huang J, Zeng Y, Song S, Zeng Y, Shen Y, Wu J, Ouyang P, Jin H*, Wang H*, Chang Z*. The FLOWERING LOCUS T-like genes from patchouli (Pogostemon cablin) antagonistically regulate flowering time. Plant Physiology and Biochemistry, 2025, 219:109394.£¨Ö²Îï¿ÆÑ§2Çø£¬IF=5.7£©
[2] Chang Z#, Wang X#, Pan X, Yan W, Wu W, Zhuang Y, Li Z, Wang D, Yuan S, Xu C, Chen Z, Liu D, Chen ZS*, Tang X*, Wu J*. The ribosomal protein POA is required for embryo development in rice. BMC Plant Biology, 2023, 23(1): 465. £¨Ö²Îï¿ÆÑ§2Çø£¬IF=4.8£©
[3] Chang Z#, Xu C#, Huang X, Yan W, Qiu S, Yuan S, Ni H, Chen S, Xie G, Chen Z*, Wu J*, Tang X*. The plant-specific ABERRANT GAMETOGENESIS 1 gene is essential for meiosis in rice. Journal of Experimental Botany, 2020, 71(1): 204¨C218.£¨Ö²Îï¿ÆÑ§1Çø£¬IF=5.36£©
[4] Chang Z#, Jin M#, Yan W, Chen H, Qiu S, Fu S, Xia J, Liu Y, Chen Z, Wu J*, Tang X*. The ATP-binding cassette (ABC) transporter OsABCG3 is essential for pollen development in rice. Rice, 2018, 11:58.£¨Å©ÁÖ¿ÆÑ§1Çø£¬IF=3.513£©
[5] Chang Z#, Chen Z#, Wang N#, Xie G, Lu J, Yan W, Zhou J, Tang X*, Deng Xing Wang*. Construction of a male sterility system for hybrid rice breeding and seed production using a nuclear male sterility gene. Proc. Natl. Acad. Sci. U.S.A, 2016, 113(49):14145-14150.£¨×ÛºÏ1Çø£¬IF= 9.661£¬ESI¸ß±»ÒýÂÛÎÄ£©
[6] Chang Z#, Chen Z#, Yan W#, Xie G, Lu J, Wang N, Lu Q, Yao N, Yang G, Xia J*, Tang X*. An ABC transporter, OsABCG26, is required for anther cuticle and pollen exine formation and pollen-pistil interactions in rice. Plant Science, 2016, 253:21-30.£¨Ö²Îï¿ÆÑ§2Çø£¬IF= 3.785£©
[7] ³£ÕñÒÇ, ÑÏά, Áõ¶«·ç, ³ÂÖñ·æ, л¸Õ, ¬¼ÎÍþ, Î⽨ÐÂ, ÌÆÏþÑÞ*. CRISPR/Cas¼¼ÊõÑо¿½øÕ¹, ũҵÉúÎï¼¼Êõѧ±¨, 2015, 09:1196-1206.£¨ÖÐÎĺËÐÄÆÚ¿¯£©
ÊÚȨרÀû
[1] Ò»ÖÖË®µ¾Bel»ùÒòµÄ¶¨µãÇóýϵͳ¼°ÆäÓ¦Óã¨Áõ¶«·ç£¬³£ÕñÒÇ£¬Íõ³ÐÐñ£¬Â¬¼ÎÍþ£¬ÌÆÏþÑÞ£¬µËÐËÍú£©£¬×¨ÀûºÅ: ZL201410832218.3
[2] Ò»ÖÖÓýÐÔµ÷¿Ø»ùÒòFG3¼°ÆäÓ¦Óã¨ÌÆÏþÑÞ£¬³£ÕñÒÇ£¬³ÂÖñ·æ£¬ÕÅÎĻԣ¬µËÐËÍú£©£¬×¨ÀûºÅ: ZL 201510104423.2
[3] Ò»ÖÖµ÷¿ØÖ²Îﻨ·ÛÓýÐԵķ½·¨¼°ÆäÓ¦Óã¨Áõ¶«·ç£¬³£ÕñÒÇ£¬Â¬ÆôÇå£¬ÌÆÏþÑÞ£¬µËÐËÍú£©£¬×¨ÀûºÅ: ZL 201310351540.X
Ëù»ñ½±Àø
µËÐËÍú£¬ÌÆÏþÑÞ£¬ÖܾýÀò£¬³ÂÖñ·æ£¬Ð»¸Õ£¬³£ÕñÒÇ. »ùÓÚÒþÐԺ˲»Óý»ùÒòOsNP1µÄË®µ¾ÔÓ½»ÓýÖÖ¼¼Êõ. 2019Äê¶ÈÉîÛÚÊпÆÑ§¼¼Êõ½±£¨¼¼Êõ·¢Ã÷½±£©£¬¶þµÈ½±£¬2019Äê12ÔÂ