4) cultivated plants

栽培植物
1.
A comparative evaluation of tolerance of several main cultivated plants towards cadmium in south China was conducted for making strategy of agro-ecological regulation and safe-and-efficient utilization in farmland polluted by Cd.
为了有效实施镉污染农田农业生态整治与安全高效利用策略 ,采用室外微区池栽培实验 ,对我国南方几种主要栽培植物耐土壤Cd污染能力进行了比较分析。
2.
The International Code of Nomenclature for Cultivated Plants(I.

《国际栽培植物命名法规》是栽培植物分类和命名的国际准则,其目标是促进农业、林业和园艺植物命名的一致、准确和稳定。
3.
Many cultivated plants can produce some phytoliths which have special morphological characteristics.
许多栽培植物能够产生具属种一级鉴定特征的植物硅酸体。
5) plant cultivation

植物栽培
1.
The facility is composed of a main chamber, O 2 and CO 2 composition control subsystems, plant cultivation subsystem and whole data management subsystem.
该装置由主机、氧气和二氧化碳测控系统、植物栽培系统和整机数据管理系统组成。
6) low seeding density cultivation

稀植栽培
1.
Study on the nitrogen and protein content in spring wheat under low seeding density cultivation;
稀植栽培对春小麦氮素和蛋白质含量变化的研究
2.
In order to make the further explore for the changing regulation of physiology characters and utilization efficiency under low seeding density cultivation of spring wheat, three spring wheat cultivars (lines) which have different protein content were selected for the experiment.
为进一步探讨春小麦稀植栽培下不同类型品种生理特性变化规律及氮肥利用效率,本试验选用蛋白质含量不同的3个春小麦品种(品系),试验设栽培密度(A)和施氮水平(B)两个因子。
3.
In order to explore the feasibility of low seeding density cultivation on spring wheat in Hei longjiang province and the influences on characters of physiology under low seeding density cultivation, eight spring wheat cultivars (lines) grown in great area in Hei longjiang province which had selected through cultivars characters last year were selected for the experiment.
为探讨春小麦稀植栽培可行性及稀植栽培下品种生理特性变化规律,本试验选用八个黑龙江省生产实践中广泛种植、并经过了品种筛选优良品种(品系),设置三个处理:常规处理(Al),基本苗600万/hm~2,稀植处理(A2、A3),基本苗450万/hm~2、300万/hm~2,并在稀植处理下施三叶肥、花期肥,通过田间试验对稀植栽培下春小麦光合生理性状、穗部性状、品质性状、产量及其构成因子进行研究,结果表明: 稀植栽培可使小麦旗叶光合速率提高,各品种旗叶光合速率变化较为一致(A3>A2>A1),东农125、龙麦20、龙麦29、龙辐10、克丰6的最大值均在20(umolCO_2。
补充资料:密植
1.在单位面积土地上适当缩小作物行距和株距,增加播种量,增加株数。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条