نتایج جستجو برای: seasonal plants

تعداد نتایج: 260590  

2016
Rajeev Arora Kari Taulavuori

Winter survial during an annual cycle of temperateand boreal-zone woody perennials is a multicomponent response. Two of these components are: (1) the timing, rate, and extent of cold acclimation (CA; Box 1), and (2) plants’ ability to sufficiently maintain its freezing tolerance (FT) until the danger of killing frosts is passed which is determined by, among other factors, plants’ ability to res...

2017
Andrés Ritter Sabrina Iñigo Patricia Fernández-Calvo Ken S Heyndrickx Stijn Dhondt Hua Shi Liesbeth De Milde Robin Vanden Bossche Rebecca De Clercq Dominique Eeckhout Mily Ron David E Somers Dirk Inzé Kris Gevaert Geert De Jaeger Klaas Vandepoele Laurens Pauwels Alain Goossens

Most living organisms developed systems to efficiently time environmental changes. The plant-clock acts in coordination with external signals to generate output responses determining seasonal growth and flowering time. Here, we show that two Arabidopsis thaliana transcription factors, FAR1 RELATED SEQUENCE 7 (FRS7) and FRS12, act as negative regulators of these processes. These proteins accumul...

2016
Young Hun Song

Plants have become physiologically adapted to a seasonally shifting environment by evolving many sensory mechanisms. Seasonal flowering is a good example of adaptation to local environmental demands and is crucial for maximizing reproductive fitness. Photoperiod and temperature are major environmental stimuli that control flowering through expression of a floral inducer, FLOWERING LOCUS T (FT) ...

Journal: :Pharmacognosy Research 2021

Pharmacognosy Research,2021,13,4,218-226.DOI:10.5530/pres.13.4.14Published:October 2021Type:Original ArticleAuthors:Bonface Mwamatope, David Tembo, Elizabeth Kampira, Cecilia Maliwichi-Nyirenda, and Victoria Ndolo Author(s) affiliations:Bonface Mwamatope1, Tembo2,*, Kampira3, Maliwichi-Nyirenda4, Ndolo5 1Biomedical Sciences Department, College of Medicine, University Malawi, Blantyre, MALAWI. 2...

Journal: :Environmental entomology 2007
Jin Miao Kongming Wu Keith R Hopper Guoxun Li

Field surveys of soybean aphid, Aphis glycines Matsumura, and its natural enemies, as well as natural enemy exclosure experiments, were conducted during 2003 and 2004 in soybean fields near Langfang, China. In 2003, aphid density increased six-fold during 12 d in July from 66+/-12 per 10 plants to a seasonal peak of 401+/-79 per 10 plants. Aphid density remained high for another 10 d and declin...

2007
Markku Häkkinen

The author has tested various Rhodochlamys species over 15 years in Finland and found that they were suitable for indoor and greenhouse culture, and also can be grown outdoors during the growing season. As in their natural habitats, these species are seasonal plants with flowering, fruiting, and dormant period; they flower easily every year. Grown as indoor potted plants, they normally go into ...

2016
Supratim Basu Venkategowda Ramegowda Anuj Kumar Andy Pereira

Plants in their natural habitats adapt to drought stress in the environment through a variety of mechanisms, ranging from transient responses to low soil moisture to major survival mechanisms of escape by early flowering in absence of seasonal rainfall. However, crop plants selected by humans to yield products such as grain, vegetable, or fruit in favorable environments with high inputs of wate...

2007
K. Kikuzawa

Since leaves are essentially energy-gaining organs, the arrangement of leaves in time (leaf phenology) and in space (canopy architecture) in both seasonal and nonseasonal environments can be viewed as a central element in plant strategies for carbon gain. Interrelationships among leaf longevity, leaf habit, and leaf-emergence pattern together with shoot architecture affect plant productivity. L...

2005
DAVID A. LIPSON STEVEN K. SCHMIDT RUSSELL K. MONSON

Past studies of plant–microbe interactions in the alpine nitrogen cycle have revealed a seasonal separation of N use, with plants absorbing N primarily during the summer months and microbes immobilizing N primarily during the autumn months. On the basis of these studies, it has been concluded that competition for N between plants and microbes is minimized along this seasonal gradient. In this s...

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