收藏本站
收藏 | 手机打开
二维码
手机客户端打开本文

The Impact of Willow Flowering Time on Species Composition and the Number of Apoidea Pollinators

Monika Konatowska  Pawe? Rutkowski  Jacek Wendzonka  
【摘要】:Pollinators are important to wild and cultivated plants, and the same plants are important to pollinators as well.A very important source of pollen and nectar to pollinators are willows(Salix spp.).The aim of this study was to demonstrate which Apoidea species are attracted by a species-diverse willow plantation(Poznań University of Life Sciences Willow Collection, Poland), the proportion of the number of honeybees to other species from the Apoidea superfamily visiting willow plantations, and whether the flowering date of male and female willow individuals affect the species composition and number of pollinators.Observations of willow phenology were carried out in the second year of willow growth, from March 9 to December 7, 2012.The insects were observed between April 6 and May 11, 2012.The results of this study showed 30 Apoidea species.Among 1591 Apoidea individuals, only 17 honeybee individuals were noted.The results show that the willow pollen production optimum occurred when the minimum air temperatures stopped dropping below zero.This parameter and this period are also related to the intensification of the occurrence of the noted insects.It can also be concluded that the pollen production season precedes the flowering optimum of female flowers and that the optimum flowering of female flowers is correlated with a significant increase in air temperature.

知网文化
【相似文献】
中国期刊全文数据库 前20条
1 Fei-Hong Yan;Li-Ping Zhang;Fang Cheng;Dong-Mei Yu;Jin-Yong Hu;;Accession-specific flowering time variation in response to nitrate fluctuation in Arabidopsis thaliana[J];Plant Diversity;2021年01期
2 Liwei Wang;Zhiqiang Zhou;Ronggai Li;Jianfeng Weng;Quanguo Zhang;Xinghua Li;Baoqiang Wang;Wenying Zhang;Wei Song;Xinhai Li;;Mapping QTL for flowering time-related traits under three plant densities in maize[J];The Crop Journal;2021年02期
3 Feng Qian;Qiu-Yuan Zhao;Tie-Nan Zhang;Yu-Lu Li;Yin-Na Su;Lin Li;Jian-Hua Sui;She Chen;Xin-Jian He;;A histone H3K27me3 reader cooperates with a family of PHD finger-containing proteins to regulate flowering time in Arabidopsis[J];Journal of Integrative Plant Biology;2021年04期
4 Mi-Cai Zhong;Xiao-Dong Jiang;Wei-Hua Cui;Jin-Yong Hu;;Expansion and expression diversity of FAR1/FRS-like genes provides insights into flowering time regulation in roses[J];Plant Diversity;2021年02期
5 Shengjie Bao;Changmei Hua;Lisha Shen;Hao Yu;;New insights into gibberellin signaling in regulating flowering in Arabidopsis[J];Journal of Integrative Plant Biology;2020年01期
6 Tenai Eguen;Jorge Gomez Ariza;Vittoria Brambilla;Bin Sun;Kaushal Kumar Bhati;Fabio Fornara;Stephan Wenkel;;Control of flowering in rice through synthetic microProteins[J];Journal of Integrative Plant Biology;2020年06期
7 Danyun Xu;Qing Liu;Gang Chen;Zhiqiang Yan;Honghong Hu;;Aldehyde dehydrogenase ALDH3F1 involvement in flowering time regulation through histone acetylation modulation on FLOWERING LOCUS C[J];Journal of Integrative Plant Biology;2020年08期
8 CHI Zhuo-heng;WANG Yong-qing;DENG Qun-xian;ZHANG Hui;PAN Cui-ping;YANG Zhi-wu;;Endogenous phytohormones and the expression of flowering genes synergistically induce flowering in loquat[J];Journal of Integrative Agriculture;2020年09期
9 Jindong Yan;Xinmei Li;Bingjie Zeng;Ming Zhong;Jiaxin Yang;Piao Yang;Xin Li;Chongsheng He;Jianzhong Lin;Xuanming Liu;Xiaoying Zhao;;FKF1 F-box protein promotes flowering in part by negatively regulating DELLA protein stability under long-day photoperiod in Arabidopsis[J];Journal of Integrative Plant Biology;2020年11期
10 SONG Shi-wei;LEI Yu-ling;HUANG Xin-min;SU Wei;CHEN Ri-yuan;HAO Yan-wei;;Crosstalk of cold and gibberellin effects on bolting and flowering in flowering Chinese cabbage[J];Journal of Integrative Agriculture;2019年05期
11 HART Samantha;MIKHAILOVA Elena;POST Christopher;Mc MILLAN Patrick;SHARP Julia;BRIDGES William;;Spatio-temporal analysis of flowering using Li DAR topography[J];Journal of Geographical Sciences;2017年01期
12 ;Interaction between temperature and photoperiod in regulation of flowering time in rice[J];Science China(Life Sciences);2012年03期
13 ;Effects of different plant growth inhibitors on growth and flowering of narcissus[J];HuNan Agricultural Science & Technology Newsletter;2003年04期
14 沈伟其 ,张国平 ,奚利峰 ,桂文光;Effects of light and temperature conditions on flowering in Mat Rush[J];Journal of Zhejiang University Science;2002年05期
15 ;Gene control of flowering time in higher plants[J];Chinese Science Bulletin;2000年18期
16 Liyu Chen;Haiyang Nan;Lingping Kong;Lin Yue;Hui Yang;Qingsong Zhao;Chao Fang;Haiyang Li;Qun Cheng;Sijia Lu;Fanjiang Kong;Baohui Liu;Lidong Dong;;Soybean AP1 homologs control flowering time and plant height[J];Journal of Integrative Plant Biology;2020年12期
17 Zhiwei Li;Xiaogang Liu;Xiaojie Xu;Jiacheng Liu;Zhiqin Sang;Kanchao Yu;Yuxin Yang;Wenshuang Dai;Xin Jin;Yunbi Xu;;Favorable haplotypes and associated genes for flowering time and photoperiod sensitivity identified by comparative selective signature analysis and GWAS in temperate and tropical maize[J];The Crop Journal;2020年02期
18 Xue Dong;Xiaodong Jiang;Guoqiang Kuang;Qingbo Wang;Micai Zhong;Dongmin Jin;Jinyong Hu;;Genetic control of flowering time in woody plants:Roses as an emerging model[J];Plant Diversity;2017年02期
19 ;Regulation of flowering time in perennial herbaceous plant[J];Science Foundation in China;2013年02期
20 李立武,谭克辉;SPECIFIC PROTEIN OCCURRENCE RELATED WITH PHOTOPERIODIC FLOWER INDUCTION IN THE COTYLEDONS OF Pharbitis nil CV. VIOLET[J];Science in China,Ser.B;1991年05期
中国重要会议论文全文数据库 前20条
1 Monika Konatowska;Pawe? Rutkowski;Jacek Wendzonka;;The Impact of Willow Flowering Time on Species Composition and the Number of Apoidea Pollinators[A];美国科研出版社2021年论文汇编Ⅳ[C];2022年
2 Lin Xiuqin;Lu Xin;Li Xujuan;Mao Jun;Liu Hongbo;Zi Qiuyan;Liu Xinliong;;Identification and characterization of three FT-like genes in sugarcane[A];第十九届中国作物学会学术年会论文摘要集[C];2020年
3 杨维才;;Pollen tube guidance in flowering plants: the interplay between male and female gametophytes[A];第十九届中国作物学会学术年会论文摘要集[C];2020年
4 Zhengrui Qin;Yuxue Bai;Liang Wu;;Fine-tuning of flowering time control in inductive and non-inductive photoperiods in Brachypodium distachyon[A];第三届全国植物开花·衰老与采后生物学大会论文摘要集[C];2019年
5 Kunjiang Yu;Xiaodong Wang;Feng Chen;Wei Zhang;Jiefu Zhang;;Identification and physical mapping of QTLs associated with flowering time in Brassica napus L.[A];江苏省遗传学会2019年学术研讨会论文集[C];2019年
6 Jie Liu;Fengqi Zhang;Junyan Huang;Yueying Liu;Xiaohui Cheng;Shengyi Liu;;QTL fine mapping for S.sclertiotum resistance and flowering time in Brassica napus[A];2018全国植物生物学大会论文集[C];2018年
7 钱朝菊;Xia Yan;Jiecai Zhao;Guoxiong Chen;Eviatar Nevo;Xiao-Fei Ma;于黎;;The mechanism of adaptive evolution of the early flowering in wild barley to mitigate global climate change[A];遗传学与表观遗传学前沿暨第三届中国青年遗传学家论坛论文摘要汇编[C];2014年
8 ;OsELF3 is involved in circadian clock regulation for promoting flowering under long-day conditions in rice[A];第十三届全国植物基因组学大会论文集[C];2012年
9 ;Comparative genome analysis,identification of flowering pathway and development of genome-wide molecular markers based on genome survey sequence in Brassica juncea[A];第十三届全国植物基因组学大会论文集[C];2012年
10 ;SDG724 mediates H3K36me2/3 deposition at MADS50 and RFT1,and promotes flowering in rice[A];从植物科学到农业发展——2012全国植物生物学大会论文集[C];2012年
11 Claude dePamphilis;;The Amborella genome and the origin of flowering plants[A];第十四届全国植物基因组学大会摘要[C];2013年
12 Zhou Liu;U.A.Kapila Siri Udawela;Longxing Tao;Qiyuan Tang;Fei Li;Xiang Chao;Yongming Gao;Zhikang Li;;Detection of heat-related loci in rice at flowering time using selected introgressed lines[A];第十四届全国植物基因组学大会摘要[C];2013年
13 Hongli Lian;Lijun Liu;Hongquan Yang;;Cryptochromes regulate photomorphogenesis and photoperiodic flowering through the CRY-SPA1-COP1-HY5 and CRY-COP1-CO modules[A];第八届全国光生物学学术会议论文摘要集[C];2013年
14 ;The mechanism of vernalization on flowering time[A];2005'海峡两岸植物生理与分子生物学教学研讨会论文集[C];2005年
15 ;The Redox State of Ascorbate Pool Affects Early-flowering Induced by Low Temperature in Tobacco[A];中国生物化学与分子生物学会农业生物化学与分子生物学分会第八次学术研讨会论文集[C];2008年
16 Lijun Wang;Jing Sun;Liping Ren;Min Zhou;Xiaoying Han;Lian Ding;Fei Zhang;Zhiyong Guan;Weimin Fang;Sumei Chen;Fadi Chen;Jiafu Jiang;;CmBBX8 accelerating flowering by targeting CmFTL1 directly in summer Chrysanthemum[A];第三届全国植物开花·衰老与采后生物学大会论文摘要集[C];2019年
17 LIU Jie;HUANG Jun-yan;ZHANG Feng-qi;CHENG Ming-xing;LIU Yue-ying;CHENG Xiao-hui;LIU Sheng-yi;;QTL fine mapping for Sclerotinia sclerotiorum resistance and flowering time in Brassica napus[A];中国作物学会油料作物专业委员会第八次会员代表大会暨学术年会综述与摘要集[C];2018年
18 ;Molecular control of S-RNase-based self-incompatibility in flowering plants[A];中国植物学会植物细胞生物学2010年学术年会论文摘要汇编[C];2010年
19 ;Cellular and biochemical control of S-RNase-based self-incompatibility in flowering plants[A];第十三届全国植物基因组学大会论文集[C];2012年
20 He Gao;Xiaoming Zheng;Guilin Fei;Jun Chen;Mingna Jin;Yulong Ren;Weixun Wu;Kunneng Zhou;Peike Sheng;Feng Zhou;Ling Jiang;Jie Wang;Xin Zhang;Xiuping Guo;Jiulin Wang;Zhijun Cheng;Chuanyin Wu;Haiyang Wang;Jianmin Wan;;Ehd4 encodes a novel and oryza-genus-specific regulator of photoperiodic flowering in rice[A];第十四届全国植物基因组学大会摘要[C];2013年
中国博士雷竞技下载ios 全文数据库 前5条
1 Eaknarin Ruangrak;番茄控制早开花的主效QTL的精细定位[D];中国农业科学院;2015年
2 KOVI MALLIKARJUNA RAO;[D];华中农业大学;2010年
3 Haksong Pak (朴学成);[D];浙江大学;2010年
4 Sukarkarn Sriboon;[D];华中农业大学;2020年
5 菲利普;牡丹花芽发育与开花机制的生理研究[D];北京林业大学;2011年
中国硕士雷竞技下载ios 全文数据库 前2条
1 尕藏加;高寒草地不同植物开花物候对气候变化和放牧利用的响应特征[D];西藏大学;2021年
2 杨坤;黑鳞顶冰花低温萌发及开花初探[D];新疆师范大学;2016年
 快捷付款方式  订购知网充值卡  订购热线  帮助中心
  • 400-819-9993
  • 010-62982499
  • 010-62783978