一、發(fā)表論文情況(第一或通訊作者*):
1.HY Sun, KD Hu, SW Wei, GF Yao*, H Zhang* ETHYLENE RESPONSE FACTOR4.1/4.2 negatively regulates anthocyanin biosynthesis in red-skinned pears, Plant Physiol., 2023, https://doi.org/10.1093/plphys/kiad068.
2.GF Yao?,*, SS Gou?, TY Zhong?, SW Wei, X An, HY Sun, C Sun, KD Hu, H Zhang* Persulfidation of MYB10 interferes MYB10-MYB73-MYB6 complex thereby inhibiting anthocyanin synthesis in red-skinned pear,Plant Physiol.,2023.https://doi.org/10.1093/plphys/kiad100
3.C Sun?, GF Yao?,*, LX Li, TT Li, YQ Zhao, KD Hu, C H, Zhang, H Zhang* Persulfidation of the E3 ligase BRG3 delays tomato ripening by reducing ubiquitination of the repressor WRKY71 involved in CAS1 transcription. Plant Physiol., 2023, https://doi.org/10.1093/plphys/kiad070.
4.C. Sun?, W.-W. Zhang?, H.-Y. Qu, L.-F. Yan, L.-X. Li, Y.-Q. Zhao, H.-Q. Yang, H. Zhang, G.-F. Yao*, K.-D. Hu* Comparative physiological and?transcriptomic analysis reveal MdWRKY75 associated with?sucrose accumulation in?postharvest ‘Honeycrisp’ apples with?bitter pit. BMC Plant Biol. 2022, 22:71.
5.H.-Y. Sun?, W.-W. Zhang?, H.-Y. Qu, S.-S. Gou, L.-X. Li, H.-H. Song, H.-Q. Yang, W.-J. Li, H. Zhang, K.-D. Hu*, G.-F. Yao*. Transcriptomics reveals the ERF2-BHLH2-CML5 module responses to H2S and ROS in postharvest calcium deficiency apples. Int. J. Mol. Sci. 2021, 22,13013.
6.Z.-Y. Ning?, K.D. Hu?, Z.L. Zhou?, D.L. Zhao, J. Tang, H. Wang, L.X. Li, C. Ding, X.Y. Chen, G.F. Yao* and H. Zhang*. IbERF71, with IbMYB340 and IbbHLH2, coregulates anthocyanin accumulation by binding to the IbANS1 promoter in purple-fleshed sweet potato (Ipomoea batatas L.). Plant Cell Reports, 2021, 40:157–169.
7.L.-X. Li, Z.-Z. Wei, Z.-L. Zhou, D.-L. Zhao, J. Tang, F. Yang, Y.-H. Lia, X.-Y. Chen, Z. Han, G.-F. Yao**, K.-D. Hu***, H. Zhang* A single amino acid mutant in the EAR motif of IbMYB44.2 reduced the inhibition of anthocyanin accumulation in the purple-fleshed sweetpotato. Plant Physiol. Bioch.,167 (2021) 410–419.
8.H.-H. Song?, Z.-L. Zhou?, D.-L. Zhao?, J. Tang, Y.-H. Li, Z. Han, X.-Y. Chen, K.-D. Hu*, G.-F. Yao*, H. Zhang* Storage property is positively correlated with antioxidant capacity in different sweet potato cultivars. Front. Plant Sci. (2021) 12:696142.
9.T.?Y.?Zhong?, G.?F.?Yao?, S.-S. Wang, T.-T. Li, K.-K. Sun, J. Tang, Z.-Q. Huang, F. Yang, Y.-H. Li, X.-Y. Chen, L.-Y. Hu, H. Zhang, K.-D. Hu. Hydrogen sulfide maintains good nutrition and?delays postharvest senescence in?postharvest tomato fruits by?regulating antioxidative metabolism. J. Plant Growth Regul. (2021) 40,?2548–2559.
10.Z-Z. Wei?, K-D Hu?, D-L Zhao?, J. Tang, Z.-Q Huang, P. Jin, Y.-H. Li, Z Han, L.-Y. Hu, G-F. Yao*, H. Zhang*. MYB44 competitively inhibits the formation of the MYB340-bHLH2-NAC56 complex to regulate anthocyanin biosynthesis in purple-fleshed sweet potato. BMC Plant Biol. 2020, 20:258.
11.C. Li#, J. Wu#, K.-D. Hu#, S.-W. Wei, H.-Y. Sun, L.-Y. Hu, Z. Han, G.-F. Yao*, H. Zhang*. PyWRKY26 and PybHLH3 cotargeted the PyMYB114 promoter to regulate anthocyanin biosynthesis and transport in red-skinned pears. Hortic. Res., 2020,?7(37):1-12.
12.G.-F. Yao?, C. Li?, K.-K. Sun?, J. Tang, Z.-Q. Huang, F. Yang, G.-G. Huang, L.-Y. Hu, P. Jin, K.-D. Hu*, H. Zhang* Hydrogen sulfide maintained the good appearance and nutrition in post-harvest tomato fruits by antagonizing the effect of ethylene. Front. Plant Sci. 2020, 11:584.
13.S.Q. Wang#, J. Tang#, K.D. Hu#, Z.Q. Huang, F. Yang, H.Y. Zhang, L.Y. Hu, Y.H. Li, G.F. Yao*, H. Zhang*. Antioxidative system in sweet potato root is activated by low temperature storage. Journal of the Science of Food and Agriculture. 2019, 99(8):3824-3833.
14.K.D. Hu#, X.Y. Zhang#, S.S. Wang#, J. Tang, F. Yang, Z.Q. Huang, J.Y. Deng, S.Y. Liu, S. J. Zhao, L.Y. Hu, G.F. Yao*, H. Zhang*. Hydrogen sulfide inhibits fruit softening by regulating ethylene synthesis and signaling pathway in tomato (Solanum lycopersicum). HortScience. 2019, 54 (10):1824–1830.
四、國(guó)家專利申請(qǐng)情況:
1.姚改芳,胡康棣,張華,魏曾正,唐君,胡蘭英,鐘庭穎,孫紅葉,孫忱. 一種調(diào)節(jié)花青苷合成的IbMYB44基因及其重組表達(dá)載體與應(yīng)用,專利號(hào):2019107248674,授權(quán)日:2022.05.03
2.姚改芳,張華,吳俊,胡康棣,李闖,鐘庭潁,孫紅葉,榮譽(yù)磊,趙玉琪. 一種促進(jìn)花青苷合成的PyWRKY26基因及其重組表達(dá)載體與應(yīng)用,專利號(hào):2019113859463,授權(quán)日:2022.05.03
3.姚改芳,張華,孫紅葉,胡康棣,顏龍飛,安欣.一種抑制花青苷生物合成的梨轉(zhuǎn)錄因子PyERF4.2基因及其重組表達(dá)載體與應(yīng)用,申請(qǐng)?zhí)枺?022108276387,申請(qǐng)日:2022.7.11
4.姚改芳,茍莎莎,張華,胡康棣,張從合,安欣,鐘婷穎,張敏. 一種促進(jìn)花青苷合成的PyMYB73基因及其重組表達(dá)載體與應(yīng)用. 申請(qǐng)日:2022.12.20, 申請(qǐng)?zhí)枺?023100059451.
5.姚改芳,茍莎莎,張華,張從合,胡康棣,鐘婷穎,孫忱,孫紅葉,趙玉琪一種抑制花青苷合成的PyMYB6基因及其重組表達(dá)載體與應(yīng)用. 申請(qǐng)日:2022.12.20, 申請(qǐng)?zhí)枺?023100059875.
6.張華,姚改芳,胡康棣,寧致遠(yuǎn),唐君,鄧敬宇,孫紅葉,鐘庭穎,孫忱. 一種促進(jìn)花青苷合成的ItfERF71a基因及其重組表達(dá)載體與應(yīng)用,專利號(hào):2019107240028,授權(quán)日:2022.0503
7.張華,姚改芳,胡康棣,魏曾正,唐君,胡蘭英,李延紅,陳曉燕,鐘庭穎,孫紅葉. 一種促進(jìn)花青苷合成的IbNAC56基因及其應(yīng)用,專利號(hào):ZL 201910724870.6,授權(quán)日:2022.05.03
8.吳俊;姚改芳;明美玲; 張紹鈴; 谷超; 常耀軍; 汪潤(rùn)澤; 殷豪;梨轉(zhuǎn)錄因子PyMYB114及其重組表達(dá)載體和應(yīng)用, 2017.6.23, 中國(guó), CN201710485838
9.吳俊;姚改芳;張紹鈴; 明美玲; 谷超; 汪潤(rùn)澤; 楊廣艷; 劉海楠;梨轉(zhuǎn)錄因子PyERF3及其重組表達(dá)載體和應(yīng)用, 2017.08.31, 中國(guó), CN201710768517
10.吳俊; 姚改芳; 張紹鈴; 楊廣艷; 李甲明; 汪潤(rùn)澤; 齊開(kāi)杰; 梨果實(shí)花青苷轉(zhuǎn)運(yùn)相關(guān)PyGSTf12基因及其重組表達(dá)載體和應(yīng)用, 2019.01.04, 201910008908.X
11.吳俊;姚改芳;張紹鈴;楊廣艷;張明月;汪潤(rùn)澤;謝智華;梨轉(zhuǎn)錄因子PyHY5及其重組表達(dá)載體和應(yīng)用, 2019.01.04,201910008926.8
12.姚改芳,張華,孫忱,胡康棣,孫紅葉,茍莎莎,安欣.一種抑制番茄果實(shí)成熟的基因SlWRKY71及其調(diào)控方法,申請(qǐng)?zhí)枺?02211135311X, 申請(qǐng)日:2022.8.29
13.張華,姚改芳,孫紅葉,胡康棣,茍沙沙,肖鈺薇. 一種抑制花青苷生物合成的梨轉(zhuǎn)錄因子PyERF4.1基因及其重組表達(dá)載體,申請(qǐng)?zhí)枺?022108276230,申請(qǐng)日:2022.7.11
14.張華,孫忱,姚改芳,胡康棣,孫紅葉,顏龍飛,肖鈺薇. 一種促進(jìn)番茄果實(shí)成熟的基因SlCAS1及其調(diào)控方法,申請(qǐng)?zhí)枺?022111353054,申請(qǐng)日: 2022.8.29
15.張華,孫紅葉,姚改芳,茍莎莎,張從合,胡康棣,鐘婷穎,孫忱. 一種巰基化修飾位點(diǎn)突變促進(jìn)花青苷合成的PyMYB10基因及其重組表達(dá)載體與應(yīng)用.申請(qǐng)日:2022.12.20, 申請(qǐng)?zhí)枺?023100059593.