日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Constitutive down-regulation of liguleless alleles in sorghum drives increased productivity and water use efficiency

高粱中无舌状茎等位基因的组成性下调可提高产量和水分利用效率。

Jaikumar, Nikhil; Quach, Truyen; Ge, Zhengxiang; Nersesian, Natalya; Sato, Shirley J; McCoy, Scott M; Guo, Ming; Leakey, Andrew D B; Long, Stephen P; Clemente, Tom Elmo

Adapting C(4) photosynthesis to atmospheric change and increasing productivity by elevating Rubisco content in sorghum and sugarcane.

通过提高高粱和甘蔗中 Rubisco 的含量,使 C(4) 光合作用适应大气变化并提高生产力

Salesse-Smith Coralie E, Adar Noga, Kannan Baskaran, Nguyen Thaibinhduong, Wei Wei, Guo Ming, Ge Zhengxiang, Altpeter Fredy, Clemente Tom E, Long Stephen P

Reducing stomatal density by expression of a synthetic epidermal patterning factor increases leaf intrinsic water use efficiency and reduces plant water use in a C4 crop

通过表达合成表皮模式因子来降低气孔密度,可以提高C4作物叶片的固有水分利用效率,并降低植物的水分消耗。

Ferguson, John N; Schmuker, Peter; Dmitrieva, Anna; Quach, Truyen; Zhang, Tieling; Ge, Zhengxiang; Nersesian, Natalya; Sato, Shirley J; Clemente, Tom E; Leakey, Andrew D B

Engineering linear, branched-chain triterpene metabolism in monocots

单子叶植物中线性、支链三萜代谢的工程化

Kempinski, Chase; Jiang, Zuodong; Zinck, Garrett; Sato, Shirley J; Ge, Zhengxiang; Clemente, Thomas E; Chappell, Joe

Editing of an Alpha-Kafirin Gene Family Increases, Digestibility and Protein Quality in Sorghum

编辑α-高粱醇溶蛋白基因家族可提高高粱的消化率和蛋白质质量

Li, Aixia; Jia, Shangang; Yobi, Abou; Ge, Zhengxiang; Sato, Shirley J; Zhang, Chi; Angelovici, Ruthie; Clemente, Thomas E; Holding, David R

The Evolution of Photoperiod-Insensitive Flowering in Sorghum, A Genomic Model for Panicoid Grasses

高粱光周期不敏感开花的演化:黍科禾本科植物的基因组模型

Cuevas, Hugo E; Zhou, Chengbo; Tang, Haibao; Khadke, Prashant P; Das, Sayan; Lin, Yann-Rong; Ge, Zhengxiang; Clemente, Thomas; Upadhyaya, Hari D; Hash, C Thomas; Paterson, Andrew H

The OCL3 promoter from Sorghum bicolor directs gene expression to abscission and nutrient-transfer zones at the bases of floral organs

来自高粱的OCL3启动子将基因表达引导至花器官基部的离层区和营养转移区。

Dwivedi, Krishna K; Roche, Dominique J; Clemente, Tom E; Ge, Zhengxiang; Carman, John G

Pseudomonas syringae type III chaperones ShcO1, ShcS1, and ShcS2 facilitate translocation of their cognate effectors and can substitute for each other in the secretion of HopO1-1.

丁香假单胞菌 III 型分子伴侣 ShcO1、ShcS1 和 ShcS2 促进其同源效应物的转位,并且可以在 HopO1-1 的分泌中相互替代

Guo Ming, Chancey Scott T, Tian Fang, Ge Zhengxiang, Jamir Yashitola, Alfano James R