葡聚糖酶
西力克
分生组织
胼胝质
雌蕊
基因
巴巴多斯棉
棉属
基因表达
拟南芥
MYB公司
生物
发起人
转录因子
植物
遗传学
突变体
雄蕊
花粉
作者
Rui Wang,Chuchu Liu,Xuesong Zhou,Yu Wan,Xiaohui Song,Weixi Li,Wangzhen Guo
摘要
SUMMARY Seeds are initiated from the carpel margin meristem (CMM) and high seed yield is top one of breeding objectives for many crops. β‐1,3‐glucanases play various roles in plant growth and developmental processes; however, whether it participates in CMM development and seed formation remains largely unknown. Here, we identified a β‐1,3‐glucanase gene ( GLU19 ) as a determinant of CMM callose deposition and seed yield in cotton. GLU19 was differentially expressed in carpel tissues between Gossypium barbadense ( Gb ) and Gossypium hirsutum ( Gh ). Based on resequencing data, one interspecies‐specific InDel in the promoter of GLU19 was further detected. The InDel was involved in the binding site of the CRABS CLAW (CRC) transcription factor, a regulator of carpel development. We found that the CRC binding affinity to the GLU19 promoter of G. barbadense was higher than that of G. hirsutum. Since G. barbadense yields fewer seeds than G. hirsutum , we speculated that stronger CRC binding to the GLU19 promoter activated higher expression of GLU19 which in turn suppressed seed production. Consistent with this hypothesis was that the overexpression of GhGLU19 caused reduced seed number, boll weight and less callose formation in CMM. Conversely, GhGLU19 ‐knockdown ( GhGLU19 ‐KD) cotton led to the opposite phenotypes. By crossing GhGLU19 ‐KD lines with several G. hirsutum and G. barbadense cotton accessions, all F 1 and F 2 plants carrying GhGLU19 ‐KD transgenic loci exhibited higher seed yield than control plants without the locus. The increased seed effect was also found in the down‐regulation of Arabidopsis orthologs lines, indicating that this engineering strategy may improve the seed yield in other crops.
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