Last edited by Kehn
Saturday, July 11, 2020 | History

6 edition of Plant Solute Transport found in the catalog.

Plant Solute Transport

  • 171 Want to read
  • 21 Currently reading

Published by Blackwell Publishing Limited .
Written in English

    Subjects:
  • Botany & plant sciences,
  • Science,
  • Science/Mathematics,
  • Life Sciences - Anatomy & Physiology,
  • Life Sciences - Botany,
  • Science / Botany,
  • Life Sciences - Biology - General,
  • Plant translocation

  • Edition Notes

    ContributionsAnna Amtmann (Contributor), Michael R. Blatt (Contributor), Romola Davenport (Contributor), Tim Flowers (Contributor), Frans Maathuis (Contributor), Katrin Philippar (Contributor), Jeremy Pritchard (Contributor), Sergey Shabala (Contributor), Anthony Yeo (Editor), Matthew Gilliham (Editor)
    The Physical Object
    FormatHardcover
    Number of Pages424
    ID Numbers
    Open LibraryOL8406005M
    ISBN 101405139951
    ISBN 109781405139953

      Generally, water, nutrient molecules, and ions dissolved in water readily diffuse across primary cell wall. The fraction of the plant tissue (apoplast) readily accessible for diffusion of an externally applied solute dissolved in water is referred to as free space includes primary wall since it offers relatively less hindrance to diffusion of dissolved : Satish C Bhatla. Putative differences in mechanisms of water regulation retained by plant versus animal cells become inconsequential in the light of the numerous similarities: dependence upon bioelectric potentials maintained across cell membranes, energy dependence of uphill water movement, and solute coupling during water transport.

      When (b) the total water potential is higher outside the plant cells than inside, water moves into the cells, resulting in turgor pressure (Ψp), keeping the plant erect. A plant can manipulate Ψ p via its ability to manipulate Ψ s (solute potential) and by the process of osmosis. Plants must overcome the negative forces of gravity potential. Vascular Transport in Plants provides an up-to-date synthesis of new research on the biology of long distance transport processes in plants. It is a valuable resource and reference for researchers and graduate level students in physiology, molecular biology, physiology, ecology, ecological physiology, development, and all applied disciplines.

      Solute Potential. Solute potential (Ψ s), also called osmotic potential, is negative in a plant cell and zero in distilled l values for cell cytoplasm are – to – MPa. Solutes reduce water potential (resulting in a negative Ψ w) by consuming some of the potential energy available in the molecules can dissolve in water because water molecules Author: Mary Ann Clark, Jung Choi, Matthew Douglas. This book presents numerical methods to solve soil physics problems using computers. It starts with the theory and then shows how to use Python code to solve the problems. Most soil physics books focus on deriving rather than solving the differential equations for mass and energy transport in the soil–plant–atmosphere continuum. The focus of this book is on : Marco Bittelli.


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Plant Solute Transport Download PDF EPUB FB2

The study of solute transport in plants dates back to the beginnings of experimental plant physiology, but has its origins in the much earlier interests of humankind in agriculture. Given this lineage, it is not surprising that there have been many books on the transport of solutes in Plant Solute Transport book texts on the closely related subject of mineral Cited by: solute transport in plants Download solute transport in plants or read online books in PDF, EPUB, Tuebl, and Mobi Format.

Click Download or Read Online button to get solute transport in plants book now. This site is like a library, Use search box in the widget to get ebook that you want. This book provides a broad overview of solute transport in plants. It first determines what solutes are present in plants and what roles they play.

The physical bases of ion and water movement are considered. This book provides a broad overview of solute transport in plants. It first determines what solutes are present in plants and what roles they play. The physical bases of ion and water movement are considered.

The volume then discusses the ways in which solutes are moved across individual membranes, within and between cells, and around the : Hardcover. Plant Solute Transport book. Read reviews from world’s largest community for readers. This book provides a broad overview of solute transport in plants.

Author: Anthony Yeo. Membrane Structure and the study of solute transport across plant membranes Plant Solute Transport book Gilliham, School of Agriculture, Food and Wine, University of Adelaide, PMB 1, Glen Osmond, SA,Australia 5. Transport across plant membranes Frans J.

Maathuis, Biology Department/Area 9, University of York, York YO10 5DD, UK 6. From my distant student days I remember finding other similarly titled books very useful. There was Solute transport in plant cells and tissues (Baker DA and Hall JL, ) and then later came Solute transport in plants (Flowers TJ and Yeo AR, ), both of which helped me develop my interest in this topic.

These books took a broad physiological : Tony Miller. This book provides a broad overview of solute transport in plants. It first determines what solutes are present in plants and what roles they play. The physical bases of. Get this from a library. Plant solute transport.

[A R Yeo; T J Flowers;] -- "This book provides a broad overview of solute transport in plants. It first determines what solutes are present in plants and what roles they play.

The physical bases of ion and water movement are. The book is written for plant physiologists and biochemists, plant biologists and those studying plant breeding and agriculture. Contents Plants and their solutes. Membranes and the study of transport. Ion transport across the plasma membrane and tonoplast.

Intra- and intercellular transport. Ion uptake by plant roots. Transport from root to Range: £ - £ From my distant student days I remember finding other similarly titled books very useful.

There was Solute transport in plant cells and tissues (Baker DA and Hall JL, ) and then later came Solute transport in plants (Flowers TJ and Yeo AR, ), both of which helped me develop my interest in this topic.

These books took a broad physiological : Tony Miller. The study of solute transport in plants dates back to the beginnings of experimental plant physiology, but has its origins in the much earlier interests of humankind in agriculture. Given this lineage, it is not surprising that there have been many.

The study of solute transport in plants dates back to the beginnings of experimental plant physiology, but has its origins in the much earlier interests of humankind in agriculture.

Given this lineage, it is not surprising that there have been many books on the transport of solutes in plants; texts on the closely related subject of mineral. This book provides a broad overview of solute transport in plants. It first determines what solutes are present in plants and what roles they play.

The physical bases of ion and water movement are considered. The volume then discusses the ways in which solutes are moved across individual membranes, within and between cells, and around the plant. Having dealt with the role of plant.

/ Tim Flowers --The driving forces for water and solute movement / Tim Flowers and Anthony Yeo --Membrane structure and the study of solute transport across plant membranes / Matthew Gilliham --Transport across plant membranes / Frans J.

Maathuis --Regulation of ion transporters / Anna Amtmann and Michael R. Blatt --Intracellular transport. ADVERTISEMENTS: Let us make an in-depth study of the modern view of solute transport across membranes in plant. The mineral salts are absorbed by plants in their ionic form and so is their transport within plants.

Certain solutes such as sugars are however trans­ported across the membranes in uncharged state. For uncharged solutes (non-electrolytes), their [ ]. Solute transport is of importance in view of the movement of nutrient elements, e.g.

towards the plant root system, and because of a broad range of pollutants. Pollution of the subsurface is often considered to be either point source pollution or diffuse source by: 2.

This book provides a broad overview of solute transport in plants. It first determines what solutes are present in plants and what roles they play.

The physical bases of ion and water movement are considered. The volume then discusses the ways in which solutes are moved across individual membranes, within and between cells, and around the plant. Plant solute transport. by Anthony Yeo and Tim Flowers. Blackwell Publishing pages $ Hardcover QK The movement of dissolved material within plants is examined by European and Australian biologists at levels from the molecular to.

Plant responses to reduced water availability. Mechanisms to reduce water loss: regulation of stomata and regulation of leaf area. Mechanisms to maintain water potential gradients: osmotic adjustment. Mechanisms to acquire more water: root properties. Mechanisms to increase water‐use efficiency: C4 and crassulacean acid metabolism (CAM) Gene Cited by: 2.

Water transport is driven by declining water potential levels between the soil and the leaves, based on the cohesion-tension theory (Dixon and Jolyvan den HonertTyree and EwersTyreeCruiziat et al ). This gradient is maintained by evaporation from the stomata, and the steepness of the gradient is controlled by the.

Vesicle Transport in Salt-Secreting Trichomes. The existence of a vesicle-mediated system for metabolite transport from the vacuole to the cell membrane was initially advanced by Ziegler and Luttge () in their studies of the secretory salt glands of Limonium observed that salt-secreting cells contained numerous and well-defined .A plant can manipulate Ψ p via its ability to manipulate Ψ s and by the process of osmosis.

If a plant cell increases the cytoplasmic solute concentration, Ψ s will decline, Ψ total will decline, the ΔΨ between the cell and the surrounding tissue will decline, water will move into the cell by osmosis, and Ψ p will increase.