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GhANN1 modulates the salinity tolerance by regulating ABA biosynthesis, ion homeostasis and phenylpropanoid pathway in cotton DayongZhanga,JiningLi,XinNiu,ChaoyangDeng,XiaohuiSong,WeixiLi,ZimengCheng,Qi’anXu,BaohongZhang,WangzhenGuoGhANN1 modulates the salinity tolerance by regulating ABA biosynthesis, ion homeostasis and phenylpropanoid pathway in cottonENVIRONMENTAL AND EXPERIMENTAL BOTANY IF5=4.74
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Genome-Wide Identification and Characterization of TALE Superfamily Genes in Soybean (Glycine max L.) Liang Wang,Xinyu Yang,Yingqi Gao and Shouping YangGenome-Wide Identification and Characterization of TALE Superfamily Genes in Soybean (Glycine max L.)INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES IF5=4.65
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Fine mapping of Ne1, the hybrid necrosis gene complementary to Ne2 in common wheat (Triticum aestivum L.) Na Li, Qiuyi Tan, Jinhua Ding, Xinglai Pan & Zhengqiang MaFine mapping of Ne1, the hybrid necrosis gene complementary to Ne2 in common wheat (Triticum aestivum L.)THEORETICAL AND APPLIED GENETICS IF5=4.60
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Cold acclimation can specifically inhibit chlorophyll biosynthesis in young leaves of Pakchoi Huiyu Wang, Zhubo Li, Lingyun Yuan, Hefang Zhou, Xilin Hou & Tongkun LiuCold acclimation can specifically inhibit chlorophyll biosynthesis in young leaves of PakchoiBMC PLANT BIOLOGY IF5=4.49
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A molecular switch in sulfur metabolism to reduce arsenic and enrich selenium in rice grain Sheng-Kai Sun, Xuejie Xu, Zhong Tang, Zhu Tang, Xin-Yuan Huang, Markus Wirtz, Rüdiger Hell & Fang-Jie ZhaoA molecular switch in sulfur metabolism to reduce arsenic and enrich selenium in rice grainNATURE COMMUNICATIONS IF5=13.61
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Arabidopsis immune-associated nucleotide-binding genes repress heat tolerance at the reproductive stage by inhibiting the unfolded protein response and promoting cell death ShanLu,TianquanZhu,ZhixueWang,LilinLuo,ShuaiWang,MinghuiLu,YongmeiCui,BaohongZou,JianHuaArabidopsis immune-associated nucleotide-binding genes repress heat tolerance at the reproductive stage by inhibiting the unfolded protein response and promoting cell deathMOLECULAR PLANT IF5=12.74
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Cell wall beta-1,4-galactan regulated by the BPC1/BPC2-GALS1 module aggravates salt sensitivity in Arabidopsis thaliana JingweiYan,YaLiu,LanYang,HuanHe,YunHuang,LinFang,Henrik VibeScheller,MingyiJiang,AyingZhangCell wall beta-1,4-galactan regulated by the BPC1/BPC2-GALS1 module aggravates salt sensitivity in Arabidopsis thalianaMOLECULAR PLANT IF5=12.74
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Transcriptional activation and phosphorylation of OsCNGC9 confer enhanced chilling tolerance in rice JiachangWang,YulongRen,XiLiu,ShengLuo,XiaoZhang,XinLiu,QibingLin,ShanshanZhu,HuaWan,YangYang,YuZhang,BinLei,ChunleiZhou,TianPan,YongfeiWang,MingmingWu,Ruonanjing,YangXu,MengHan,FuqingWu,CailinLei,XiupingGuo,ZhijunCheng,XiaomingZheng2YihuaWang1ZhigangZhao1LingJiang1XinZhang2Yong-FeiWang,HaiyangWang,JianminWanTranscriptional activation and phosphorylation of OsCNGC9 confer enhanced chilling toler...
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Nitrogen Mediates Flowering Time and Nitrogen Use Efficiency via Floral Regulators in Rice ShunanZhang,YuyiZhang,KangningLi,MingYan,JinfeiZhang,MingYu,ShuoTang,LuyangWang,HongyeQu,LeLuo,WeiXuan,GuohuaXuNitrogen Mediates Flowering Time and Nitrogen Use Efficiency via Floral Regulators in RiceCURRENT BIOLOGY IF5=10.17
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Sulfate addition and rising temperature promote arsenic methylation and the formation of methylated thioarsenates in paddy soils ChuanChen,BaoyunYang,YangShen,JunDai,ZhuTang,PengWang,Fang-JieZhaoSulfate addition and rising temperature promote arsenic methylation and the formation of methylated thioarsenates in paddy soilsSOIL BIOLOGY & BIOCHEMISTRY IF5=6.76
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