نتایج جستجو برای: shoot root regulation

تعداد نتایج: 694331  

Journal: :Nature Cell Biology 2003

2008
K. M. KABIR M. J. HOSSAIN

Quality of seeds of three cultivars (IPSA Seem-2, BU Seem-3 and IPSA Seem5) of lablab bean (Lablab purpureus L. Sweet) collected from crops planted in three different dates (15 May, 15 July, and 15 September 2003) was assessed in respect of different parameters. The maximum percentage of seeds of cv. IPSA Seem-2 was germinated (95.67) whereas, BU Seem-3 had the maximum electrical conductivity (...

Journal: :Current Biology 2009
Stephen P. Grigg Carla Galinha Noortje Kornet Claudia Canales Ben Scheres Miltos Tsiantis

Development of seed plant embryos is polarized along the apical-basal axis. This polarization occurs in the absence of cell migration and culminates in the establishment of two distinct pluripotent cell populations: the shoot apical meristem (SAM) and root meristem (RM), which postembryonically give rise to the entire shoot and root systems of the plant. The acquisition of genetic pathways that...

Journal: :The Plant cell 2005
Eloise Foo Erika Bullier Magali Goussot Fabrice Foucher Catherine Rameau Christine Anne Beveridge

In Pisum sativum, the RAMOSUS genes RMS1, RMS2, and RMS5 regulate shoot branching via physiologically defined mobile signals. RMS1 is most likely a carotenoid cleavage enzyme and acts with RMS5 to control levels of an as yet unidentified mobile branching inhibitor required for auxin inhibition of branching. Our work provides molecular, genetic, and physiological evidence that RMS1 plays a centr...

2017
Raviraj Banakar Ána Alvarez Fernández Javier Abadía Teresa Capell Paul Christou

Many metal transporters in plants are promiscuous, accommodating multiple divalent cations including some which are toxic to humans. Previous attempts to increase the iron (Fe) and zinc (Zn) content of rice endosperm by overexpressing different metal transporters have therefore led unintentionally to the accumulation of copper (Cu), manganese (Mn) and cadmium (Cd). Unlike other metal transporte...

2012
Cheng Wang HaiFeng Chen QingNan Hao AiHua Sha ZhiHui Shan LiMiao Chen Rong Zhou HaiJian Zhi XinAn Zhou

The macronutrient potassium (K) is essential to plant growth and development. Crop yield potential is often affected by lack of soluble K. The molecular regulation mechanism of physiological and biochemical responses to K starvation in soybean roots and shoots is not fully understood. In the present study, two soybean varieties were subjected to low-K stress conditions: a low-K-tolerant variety...

Journal: :Bioresource technology 2009
C Arriagada E Aranda I Sampedro I Garcia-Romera J A Ocampo

The presence of high concentrations of arsenic (As) decreased the shoot and root dry weight, chlorophyll and P and Mg content of Eucalyptus globulus colonized with the arbuscular mycorrhizal (AM) fungi Glomus deserticola or G. claroideum, but these parameters were higher than in non-AM plants. As increased the percentage of AM length colonization and succinate dehydrogenase (SDH) activity in th...

Journal: :Annals of botany 2014
Théophile Lohier Franck Jabot Driss Meziane Bill Shipley Peter B Reich Guillaume Deffuant

BACKGROUND AND AIMS Simple models of herbaceous plant growth based on optimal partitioning theory predict, at steady state, an isometric relationship between shoot and root biomass during plant ontogeny, i.e. a constant root-shoot ratio. This prediction has received mixed empirical support, suggesting either that optimal partitioning is too coarse an assumption to model plant biomass allocation...

2011
Victor Busov Yiru Chen Jiqin Gou Steven Strauss Yordan Yordanov Christine Zawaski

Plants size, shape and adaptability are determined in large by their capacity to sustain, spur, redirect or arrest localized and whole-plant growth. We show that GA signaling and metabolism determines the level and extent of shoot and root growth. Increase of GA concentrations or signaling leads to increased shoot growth but suppresses root development. These GA-related responses are underpinne...

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