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

Genetic architecture of glucosinolate variation in Brassica napus

甘蓝型油菜中硫代葡萄糖苷变异的遗传结构

Kittipol, Varanya; He, Zhesi; Wang, Lihong; Doheny-Adams, Tim; Langer, Swen; Bancroft, Ian

Data in support of genetic architecture of glucosinolate variations in Brassica napus

支持甘蓝型油菜中硫代葡萄糖苷变异遗传结构的数据

Kittipol, Varanya; He, Zhesi; Wang, Lihong; Doheny-Adams, Tim; Langer, Swen; Bancroft, Ian

Development of an efficient glucosinolate extraction method

开发一种有效的硫代葡萄糖苷提取方法

T Doheny-Adams, K Redeker, V Kittipol, I Bancroft, S E Hartley

Manipulating stomatal density enhances drought tolerance without deleterious effect on nutrient uptake

调控气孔密度可提高植物的耐旱性,且不会对养分吸收产生不利影响。

Hepworth, Christopher; Doheny-Adams, Timothy; Hunt, Lee; Cameron, Duncan D; Gray, Julie E

Genetic manipulation of stomatal density influences stomatal size, plant growth and tolerance to restricted water supply across a growth carbon dioxide gradient

通过基因操作调控气孔密度,可以影响气孔大小、植物生长以及在生长过程中二氧化碳梯度下对水分供应受限的耐受性。

Doheny-Adams, Timothy; Hunt, Lee; Franks, Peter J; Beerling, David J; Gray, Julie E