supported by grants from the National Natural Science Foundation of China(32172547).
Photoperiod and temperature are crucial factors that trigger flowering in Brassica juncea(B.juncea).However,the underlying regulatory mechanisms remain poorly understood.The MADS-box transcription factor AGL18 acts as...
China Agriculture Research System(CARS-12);National Natural Science Foundation of China(U20A2029)。
The release of mitochondrial genome sequences provides the basis for characterizing interspecific and intraspecific variation in Brassica mitochondrial genomes.However,few B.juncea(mustard)mitochondrial genomes have b...
financially the National Key Research and Development Program of China(2018YFE0108000);the Natural Science Foundation of Chongqing(cstc2019jcyj-zdxm X0012);the Fundamental Research Funds for the Central Universities(XDJK2018B022,XDJK2018AA004)。
A narrow genetic base has hindered improvement of Brassica juncea(A^(j)A^(j)B^(j)B^(j)).In this study,large-scale genomic components were introduced from diploid ancestor species into modern B.juncea using a digenomic...
supported by departmental grants under the Plan Project of Nuclear Agriculture and Biotechnology Division(NA&BTD),Mumbai
Salinity-imposed limitations on plant growth are manifested through osmotic and ionic imbalances. However, because salinity-induced responses vary considerably among crop plants, monitoring of such responses at an ear...
supported by the National Natural Science Foundation of China (Nos. 31471173, 31560302);the Inner Mongolia Science & Technology Plan (No. 2014MS0305);the Program for Introducing Talents to University (No. 135121);the Inner Mongolia Innovation Guide Fund (No. 5153202);the Basic and Frontier Technology Research Program of Henan Province (No. 132300410284) to GX Tan
Chromosome identification and karyotype using fluorescence in situ hybridization(FISH)provides a technical platform for genome and cytogenetic studies. Brassica juncea(brown mustard, 2n = 4× = 36; genome AABB) is an ...