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

Pyramiding elite alleles of the genetically linked OsNRAMP5 and OsHMA3 confers low Cd accumulation in rice grains without compromising stress tolerance

将基因连锁的OsNRAMP5和OsHMA3的优良等位基因进行聚合,可以降低水稻籽粒中镉的积累,同时又不损害其抗逆性。

Tang, Li; Wang, Jiao; Ji, Zhongying; Li, Xingrong; Liu, Xiaoshuang; Lv, Qiming; Wei, Pengcheng; Hu, Xianlan; Li, Yaokui; Mao, Bigang; Shao, Ye; Peng, Yan; Wei, Zhongwei; Bai, Lianyang; Chen, Caiyan; Zhao, Bingran

Phosphorylation of CPR5 by the receptor-like kinase FLR2 promotes mRNA poly(A) tail processing and immunity to Magnaporthe oryzae in rice.

受体样激酶 FLR2 对 CPR5 的磷酸化促进 mRNA poly(A) 尾的加工,并增强水稻对稻瘟病菌的免疫力

Luo Xiao, Xing Junjie, Peng Zhirong, Zhang Min, Wei Zhongwei, Xu Jingbo, Yu Feng, Deng Huafeng

Application of Silica Nanoparticles Improved the Growth, Yield, and Grain Quality of Two Salt-Tolerant Rice Varieties under Saline Irrigation

二氧化硅纳米颗粒的应用提高了两种耐盐水稻品种在盐碱灌溉条件下的生长、产量和籽粒品质。

Jin, Wenyu; Li, Lin; He, Wenli; Wei, Zhongwei

Halotolerant Microorganism-Based Soil Conditioner Application Improved the Soil Properties, Yield, Quality and Starch Characteristics of Hybrid Rice under Higher Saline Conditions

在盐碱条件下,施用耐盐微生物土壤改良剂可改善杂交水稻的土壤性质、产量、品质和淀粉特性。

Jin, Wenyu; Li, Lin; Ma, Guohui; Wei, Zhongwei

Biofertilizer based on halotolerant microorganisms promotes the growth of rice plants and alleviates the effects of saline stress

基于耐盐微生物的生物肥料能够促进水稻生长,并缓解盐胁迫的影响。

Shan, Shiping; Wei, Zhongwei; Cheng, Wei; Du, Dongxia; Zheng, Dianfeng; Ma, Guohui

Superwetting membrane-based strategy for high-flux enrichment of ethanol from ethanol/water mixture

基于超润湿膜的策略用于从乙醇/水混合物中高通量富集乙醇

Wei, Zhongwei; Zhang, Shaoqing; Chang, Li; Liu, Hongliang; Jiang, Lei

Plant-atmosphere and soil-atmosphere temperature differences and their impact on grain yield of super hybrid rice under different irrigation conditions

植物-大气温度差和土壤-大气温度差及其对不同灌溉条件下超级杂交水稻籽粒产量的影响

Meng, Guiyuan; Zheng, Rongqian; Chen, Haiping; Ma, Guohui; Wei, Zhongwei; Xiang, Guohong; Zhou, Jing