Principles of Soil and Plant Water Relations

Principles of Soil and Plant Water Relations

Author: M.B. Kirkham

Publisher: Academic Press

Published: 2014-04-21

Total Pages: 599

ISBN-13: 0124200788

DOWNLOAD EBOOK

Principles of Soil and Plant Water Relations, 2e describes the principles of water relations within soils, followed by the uptake of water and its subsequent movement throughout and from the plant body. This is presented as a progressive series of physical and biological interrelations, even though each topic is treated in detail on its own. The book also describes equipment used to measure water in the soil-plant-atmosphere system. At the end of each chapter is a biography of a scientist whose principles are discussed in the chapter. In addition to new information on the concept of celestial time, this new edition also includes new chapters on methods to determine sap flow in plants dual-probe heat-pulse technique to monitor water in the root zone. - Provides the necessary understanding to address advancing problems in water availability for meeting ecological requirements at local, regional and global scales - Covers plant anatomy: an essential component to understanding soil and plant water relations


Principles of Plant Nutrition

Principles of Plant Nutrition

Author: Konrad Mengel (etc)

Publisher: Springer Science & Business Media

Published: 2001-07-31

Total Pages: 868

ISBN-13: 9781402000089

DOWNLOAD EBOOK

Plant nutrition; The soil as a plant nutrient medium; Nutrient uptake and assimilation; Plant water relationships; Plant growth and crop production; Fertilizer application; Nitrogen; Sulphur; Phosphorus; Potassium; Calcium; Magnesium; Iron; Manganese; Zinc; Copper; Molybdenum; Boron; Further elements of importance; Elements with more toxic effects.


Mineral Nutrition of Higher Plants

Mineral Nutrition of Higher Plants

Author: Horst Marschner

Publisher: Gulf Professional Publishing

Published: 1995

Total Pages: 920

ISBN-13: 9780124735439

DOWNLOAD EBOOK

This text presents the principles of mineral nutrition in the light of current advances. For this second edition more emphasis has been placed on root water relations and functions of micronutrients as well as external and internal factors on root growth and the root-soil interface.


Soil Health and Intensification of Agroecosystems

Soil Health and Intensification of Agroecosystems

Author: Mahdi M. Al-Kaisi

Publisher: Academic Press

Published: 2017-03-15

Total Pages: 420

ISBN-13: 0128054018

DOWNLOAD EBOOK

Soil Health and Intensification of Agroecosystems examines the climate, environmental, and human effects on agroecosystems and how the existing paradigms must be revised in order to establish sustainable production. The increased demand for food and fuel exerts tremendous stress on all aspects of natural resources and the environment to satisfy an ever increasing world population, which includes the use of agriculture products for energy and other uses in addition to human and animal food. The book presents options for ecological systems that mimic the natural diversity of the ecosystem and can have significant effect as the world faces a rapidly changing and volatile climate. The book explores the introduction of sustainable agroecosystems that promote biodiversity, sustain soil health, and enhance food production as ways to help mitigate some of these adverse effects. New agroecosystems will help define a resilient system that can potentially absorb some of the extreme shifts in climate. Changing the existing cropping system paradigm to utilize natural system attributes by promoting biodiversity within production agricultural systems, such as the integration of polycultures, will also enhance ecological resiliency and will likely increase carbon sequestration. - Focuses on the intensification and integration of agroecosystem and soil resiliency by presenting suggested modifications of the current cropping system paradigm - Examines climate, environment, and human effects on agroecosystems - Explores in depth the wide range of intercalated soil and plant interactions as they influence soil sustainability and, in particular, soil quality - Presents options for ecological systems that mimic the natural diversity of the ecosystem and can have significant effect as the world faces a rapidly changing and volatile climate


Nutrient Acquisition by Plants

Nutrient Acquisition by Plants

Author: Hormoz BassiriRad

Publisher: Springer Science & Business Media

Published: 2005-05-20

Total Pages: 372

ISBN-13: 9783540241867

DOWNLOAD EBOOK

This is an integrated review of the mechanisms controlling plant nutrient uptake and how plants respond to changes in the environment. Among key topics covered are: soil nutrient bioavailability; root responses to variations in nutrient supply; nitrogen fixation; root architecture; life span; mycorrhizae; responses to climate change. The book helps us understand the mechanisms that govern present-day plant communities and to predict the response of plants to a changing climate.


Plant-Plant Allelopathic Interactions II

Plant-Plant Allelopathic Interactions II

Author: Udo Blum

Publisher: Springer Science & Business Media

Published: 2014-03-24

Total Pages: 337

ISBN-13: 3319047329

DOWNLOAD EBOOK

This volume presents detailed descriptions and analyses of the underlying features, issues and suppositions associated with seed and seedling laboratory bioassays presented in a previous volume. It is, however, broader in scope and substance in that the information provided is relevant to all water-soluble compounds released to soil by putative allelopathic living plants and their litter and residues. It is ultimately an attempt to update and expand the practical guidelines for designing laboratory bioassays that have previously been provided in the literature with the hope that the designs of future seed and seedling laboratory bioassays will become more relevant to field systems. Standard references have been included to provide background and additional details. This volume has been written specifically for researchers and their graduate students who are interested in studying plant-plant allelopathic interactions.