...
首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Fertiliser application affects susceptibility of chrysanthemum to western flower thrips - abundance and influence on plant growth, photosynthesis and stomatal conductance.
【24h】

Fertiliser application affects susceptibility of chrysanthemum to western flower thrips - abundance and influence on plant growth, photosynthesis and stomatal conductance.

机译:施肥会影响菊花对西方花蓟马的敏感性-丰度并影响植物的生长,光合作用和气孔导度。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

We report the influence of plant fertility, principally nitrogen (N) levels, on plant growth, gas exchange and herbivore abundance in chrysanthemum (Dendranthema grandiflora Tzvelev 'Charm') infested with western flower thrips [WFT; Frankliniella occidentalis (Pergande)]. Four levels of a commercial, soluble fertiliser "15-16-17" (elemental analysis: 15N-6.7P-14.1K) were tested at: 0, 38, 75 and 375 mg l-1 N [0N, 35N, 75N, 375N], which represented 0%, 10%, 20% and 100% of the recommended N-fertilisation rate, respectively. Adult and immature WFT were most abundant at the highest fertility level (375N). At moderate (38N and 75N) to high fertility (375N), WFT infestation depressed plant vegetative and reproductive growth, and altered carbohydrate partitioning. WFT-infested plants had reduced flower bud dry mass (DM) and flower bud number compared to uninfested plants. While WFT infestation reduced leaf area and leaf mass, the specific leaf area (SLA; i.e., leaf thickness) was not affected. However, high fertility plants had greater reproductive and vegetative biomass, greater leaf elemental levels (N, P, Ca, Mg, B, Fe, Mn, Cu and Zn) and a higher SLA (i.e., thinner leaves) than low fertility (0N) plants. Leaf stomatal conductance (gs) was more sensitive to WFT damage than net photosynthesis (Pn). WFT damage caused a reduction in Pn in young and physiologically mature leaves at the highest fertility level, whereas gs was reduced in young, physiologically mature and older basal leaves of plants damaged by WFT at moderate to high fertility. WFT infestation had no effect on leaf macro- and micro-elements, ethylene production or chlorophyll levels. WFT damage reduced vegetative and reproductive growth primarily through reduced Pn and gs..
机译:我们报道了受西部花蓟马侵染的菊花(Dendranthema grandiflora Tzvelev'Charm')中植物的繁殖力(主要是氮(N)水平)对植物生长,气体交换和草食动物丰度的影响。富兰克氏菌(Pergande)]。测试了以下四个水平的商品化可溶性肥料“ 15-16-17”(元素分析:15N-6.7P-14.1K)的含量:0、38、75和375 mg l-1 N [0N,35N,75N, 375N],分别代表建议氮肥施用量的0%,10%,20%和100%。在最高生育水平(375N)下,成人和未成熟的WFT最丰富。在中等(38N和75N)至高肥力(375N)下,WFT侵染会抑制植物的营养和生殖生长,并改变碳水化合物的分配。与未感染的植物相比,WFT感染的植物的花芽干重(DM)和花芽数减少。虽然WFT侵染减少了叶片面积和叶片质量,但特定叶片面积(SLA;即叶片厚度)并未受到影响。但是,高肥力植物比低肥力(0N)具有更高的繁殖和营养生物量,更高的叶片元素水平(N,P,Ca,Mg,B,Fe,Mn,Cu和Zn)和更高的SLA(即,较薄的叶片)。 )植物。叶片气孔导度(gs)对WFT损害比净光合作用(Pn)更敏感。 WFT损害导致最高生育力水平的年轻和生理成熟叶片的Pn降低,而在中等至高生育力下受WFT损害的植物的年轻,生理成熟和较老的基生叶片的gs降低。 WFT侵染对叶片的宏观和微量元素,乙烯产量或叶绿素水平没有影响。 WFT损害主要是通过降低Pn和gs来减少营养和生殖生长。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号