光合作用特性,photosynthesis
1)photosynthesis[英][,f??t??'s?nθ?s?s][美]['foto's?nθ?s?s]光合作用特性
1.Researches on characteristics of photosynthesis and adaptability in existent super hybrid rice varieties are reviewed in this paper.综述了超级杂交稻光合作用特性和生态适应性等方面的研究动态,介绍了中国超级稻在该研究方面所取得的重要进展,指出超级杂交稻在耐光氧化等特性上具有一定的生理优势,但适应性研究仍然是超级杂交稻选育和应用所面临的重要课题。
英文短句/例句

1.Study on Photosynthesis Characteristics of Eucalyptus urophylla Clone Seedlings尾叶桉无性系苗期光合作用特性研究
2.Studies on Photosynthetic Characteristic in Leaves of Panax Ginseng and Panax Quinquefolium;人参、西洋参叶片光合作用特性的研究
3.Studies on Stomas and Photosynthetic Characteristics of Heteromorphic Leaves of Populus Euphratica;胡杨多态叶气孔与光合作用特性研究
4.Effect of NaCl on the Photosynthesis of Kosteletzkya Virginica (L.) Presl;NaCl对海滨锦葵光合作用特性的效应
5.Studies on photosynthetic characteristics of Populus deltoides from Northern and Southern USA南北方型美洲黑杨光合作用特性研究
6.Growth and photosynthesis characteristics of wheat (Triticum aestivum L.) under arsenic stress condition砷对小麦生长和光合作用特性的影响
7.Effect of magnesium deficiency on photosynthesis characteristic of Beibei 447 Jinchen orange缺镁对北碚447锦橙光合作用特性的影响
8.Photosynthetic Performance and Response to Water Stress in Wheat Varieties with Different Ecotype;不同生态型小麦品种光合作用特性及其对水分胁迫的反应
9.Study on the Photosynthetic Characteristics of the Dominant Plants and Human-induced Restoration Technology in the Mount Beigu Wetland;北固山湿地优势植物的光合作用特性及人工修复技术研究
10.Study on Photosynthesis Duration Characteristic of Panax Quinquefolium L.;西洋参光合作用时间持续特性的研究
11.Photosynthesis and Transpiration Characteristics of Three Typical Tree Species in the Forests of Nanling Mountains,Northern Guangdong南岭森林3种常见树种光合-蒸腾作用特性
12.Photosynthesis and Photoinhibitipn of Two Superhigh-yield Rice Hybrids, Liangyoupeijiu and Hua-an3;超高产杂交稻(Oryza Sativa L.)光合作用和光抑制特性的研究
13.Effect of Lanthanum Rare Earth on Photosynthesis and Chlorophyll Fluorescence of Shibataea Chinensis Nakai;镧稀土对鹅毛竹光合作用及叶绿素荧光特性的影响
14.The Relationship between the Unique Physico-chemical Property of Rare Earth Elements and Photochemical Reaction in Photosynthesis稀土元素的独特理化性质与光合作用光化学反应的关系
15.The Effect of Low Temperature Stress on Photosynthesis and Chlorophyll Fluorescence Characteristics in Oil Palm Seedlings低温胁迫对油棕幼苗光合作用及叶绿素荧光特性的影响
16.Influence of Cadmium on Photosynthesis and Chlorophyll Fluorescence Characteristics in Acer ginnala and Acer mono镉对茶条槭和五角槭光合作用和叶绿素荧光特性的影响
17.Photosynthetic Characteristics and Chlorophyll Fluorescence Parameters of Pteroceltis tatarinowii in Response to Different Habitats in Karst Area青檀光合作用和荧光特性对岩溶区不同生境的响应
18.Comparison of photosynthesis and chlorophyll fluorescence between Gynostemma pentaphyllum(Thunb.) Makino and Cayratia japonica(Thunb.) Gagnep under field-simulated condition绞股蓝与乌蔹莓的光合作用和叶绿素荧光特性比较
相关短句/例句

photochemical vitality光合作用活性
1.In situ study on the photochemical vitality of overwintering phytoplankton;越冬浮游植物光合作用活性的原位研究
3)action characteristic作用特性
4)photosynthesis[英][,f??t??'s?nθ?s?s][美]['foto's?nθ?s?s]光合作用
1.Influence of CO_2/pH on growth and photosynthesis of three kinds of algae;CO_2/pH对三种藻生长及光合作用的影响
2.Effects of copper toxicity on photosynthesis and transpiration of three Elsholtzia splendens Nakai ex F.Maekawa populations;铜毒对海州香薷(Elsholtzia splendens)不同种群光合作用和蒸腾作用的影响
3.Application of the Chlorophyll Fluorescence in Photosynthesis of Algae;叶绿素荧光技术在藻类光合作用中的应用
5)photosythesis光合作用
6)photosynthetic characteristics光合作用
1.Photosynthetic characteristics and water use efficiency of Pinus densiflora under different soil moisture conditions;不同土壤水分对赤松光合作用与水分利用效率的影响研究
2.The effect of temperature,illumination and stomata conductance on the leave photosynthetic characteristics of the tulip Gander s Rhapsody were examined by using live body measurements in solar greenhouse.采用活体测量的方法,分析了日光温室中郁金香品种狂人诗叶片的光合作用,以及温度、光照、气孔导度等因素对其净光合速率的影响。
3.sinensis "Fudingdabaicha") were grown in pots to study the effects of different soil moisture conditions on the photosynthetic characteristics and water use efficiency.研究了不同土壤水分条件下茶树(铁观音和福鼎大白茶)光合作用及其水分利用效率(WUE)的变化。
延伸阅读

表光合强度(见光合强度)表光合强度(见光合强度)forecast of sowing or transplanting time b iaoguanghe qiangdu表光合强度见光合强度