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| 1 | GW5-Like, a homolog of GW5, negatively regulates grain width, weight and salt resistance in rice显示文摘Grain size is an important determinant of yield potential in crops. We previously demonstrated that natural mutations in the regulatory sequences of qSW5/GW5 confer grain width diversity in rice. However, the biological function of a GW5 homolog, named GW5-Like(GW5 L), remains unknown. In this study, we report on GW5 L knockout mutants in Kitaake, a japonica cultivar(cv.)considered to have a weak gw5 variant allele that confers shorter and wider grains. GW5 L is evenly expressed in various tissues, and its protein product is localized to the plasma membrane. Biochemical assays verified that GW5 L functions in a similar fashion to GW5. It positively regulates brassinosteroid(BR) signaling through repression of the phosphorylation activity of GSK2. Genetic data show that GW5 L overexpression in either Kitaake or a GW5 knockout line, Kasaorf3(indica cv. Kasalath background), causes more slender, longer grains relative to the wild-type. We also show that GW5 L could confer salt stress resistance through an association with calmodulin protein OsCa M1-1. These findings identify GW5 L as a negative regulator of both grain size and salt stress tolerance, and provide a potential target for breeders to improve grain yield and salt stress resistance in rice. | Peng Tian Jiafan Liu Changling Mou Cuilan Shi Huan Zhang Zhichao Zhao Qibing Lin Jie Wang Jiulin Wang Xin Zhang Xiuping Guo Zhijun Cheng Shanshan Zhu Yulong Ren Cailin Lei Haiyang Wang Jianmin Wan | 2019 | Journal of Integrative Plant Biology2019,61,11: | 9 |
| 2 | The Arabidopsis catalase triple mutant reveals important roles of catalases and peroxisome-derived signaling in plant development显示文摘Hydrogen peroxide(H_2O_2)is generated in many metabolic processes.As a signaling molecule,H_2O_2plays important roles in plant growth and development,as well as environmental stress response.In Arabidopsis,there are three catalase genes,CAT1,CAT2,and CAT3.The encoded catalases are predominately peroxisomal proteins and are critical for scavenging H_2O_2.Since CAT1 and CAT3 are linked on chromosome 1,it has been almost impossible to generate cat1/3 and cat1/2/3 mutants by traditional genetic tools.In this study,we constructed cat1/3 double mutants and cat1/2/3 triple mutants by CRISPR/Cas9 to investigate the role of catalases.The cat1/2/3 triple mutants displayed severe redox disturbance and growth defects under physiological conditions compared with wild-type and the cat2/3 double mutants.Transcriptome analysis showed a more profound transcriptional response in the cat1/2/3 triple mutants compared to the cat2/3 mutants.These differentially expressed genes are involved in plant growth regulation as well as abiotic and biotic stress responses.In addition,expression of OXI1(OXIDATIVE SIGNAL INDUCIBLE 1)and several MAPK cascade genes were changed dramatically in the catalase triple mutant,suggesting that H_2O_2produced in peroxisomes could serve as a peroxisomal retrograde signal. | Tong Su Pingping Wang Huijuan Li Yiwu Zhao Yao Lu Peng Dai Tianqi Ren Xiaofeng Wang Xuezhi Li Qun Shao Dazhong Zhao Yanxiu Zhao Changle Ma | 2018 | Journal of Integrative Plant Biology2018,60,7: | 3 |
| 3 | Microstructure and magnetic properties of a two-phase alloy of α -Fe and metastable Fe 3 B显示文摘 | Changling Yang Feng Liu Shitong Ren Gencang Yang | 2008 | Journal of Magnetism and Magnetic Materials2008,,2: | 1 |
| 4 | Primary gastric adenosquamous carcinoma: a case report and literature review显示文摘Primary gastric adenosquamous carcinoma (GASC) is exceedingly rare. It accounts for less than 1% of all gastric cancers. In this report, we describe our pathological findings along with a review of the literature to improve our understanding of the disease and reduce misdiagnosis, as well as to provide evidence for its treatment and prognosis. A 49-year-old male patient was admitted to our hospital (Dalian Municipal Central Hospital, Dalian, China) with a complaint of epigastric pain that had persisted for half a month. Physical examination, regular laboratory blood tests, and computed tomography revealed no obvious abnormalities. Gastroscopy revealed ulcers in the lower part of the stomach, and pathological assessment revealed adenocarcinoma. Radical gastrectomy was performed, and the folinic acid, fluorouracil, oxaliplatin (FOLFOX) chemotherapy regimen was administered postoperatively. Pathological assessment of the mass revealed a protruding tumor measuring 1.5 × 1.5 × 0.7 cm in the lower part of the stomach. The tumor infiltrated through the full wall of the stomach. This was confirmed by immunohistochemical (IHC) staining for cytokeratin (CK)(+), villin (-), p63 (++), and high-molecular-weight CK (+++). The patient remains alive with no recurrence more than seven years after surgery. Primary GASC is a rare malignant neoplasm. The diagnostic criteria for GASC mainly depend on the clinical, radiographic, and histopathological findings. Pathological assessment and IHC staining can be utilized to confirm the diagnosis. Radical gastrectomy plus postoperative chemotherapy containing the FOLFOX regimen is effective for treating GASC and might contribute to long-term survival. | Kan Jiang Xiaoyu Wu Baiying Liu Wenbin Li Taotao Zhang Xiangwen Zhang Changle Ren Guo Zu | 2019 | Oncology and Translational Medicine2019,5,4: | 1 |
| 5 | Young Leaf White Stripe encodes a P-type PPR protein required for chloroplast development显示文摘Pentatricopeptide repeat(PPR) proteins function in post-transcriptional regulation of organellar gene expression. Although several PPR proteins are known to function in chloroplast development in rice(Oryza sativa), the detailed molecular functions of many PPR proteins remain unclear.Here, we characterized a rice young leaf white stripe(ylws) mutant, which has defective chloroplast development during early seedling growth.Map-based cloning revealed that YLWS encodes a novel P-type chloroplast-targeted PPR protein with 11 PPR motifs. Further expression analyses showed that many nuclear-and plastid-encoded genes in the ylws mutant were significantly changed at the RNA and protein levels. The ylws mutant was impaired in chloroplast ribosome biogenesis and chloroplast development under low-temperature conditions. The ylws mutation causes defects in the splicing of atpF, ndhA, rpl2,and rps12, and editing of ndhA, ndhB, and rps14transcripts. YLWS directly binds to specific sites in the atpF, ndhA, and rpl2 pre-mRNAs. Our results suggest that YLWS participates in chloroplast RNA group II intron splicing and plays an important role in chloroplast development during early leaf development. | Jie Lan Qibing Lin Chunlei Zhou Xi Liu Rong Miao Tengfei Ma Yaping Chen Changling Mou Ruonan Jing Miao Feng Thanhliem Nguyen Yulong Ren Zhijun Cheng Xin Zhang Shijia Liu Ling Jiang Jianmin Wan | 2023 | Journal of Integrative Plant Biology2023,65,7: | 0 |