語系:
繁體中文
English
說明(常見問題)
圖資館首頁
登入
回首頁
切換:
標籤
|
MARC模式
|
ISBD
Legume nitrogen fixation in soils wi...
~
SpringerLink (Online service)
Legume nitrogen fixation in soils with low phosphorus availabilityadaptation and regulatory implication /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Legume nitrogen fixation in soils with low phosphorus availabilityedited by Saad Sulieman, Lam-Son Phan Tran.
其他題名:
adaptation and regulatory implication /
其他作者:
Sulieman, Saad.
出版者:
Cham :Springer International Publishing :2017.
面頁冊數:
xiii, 287 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Legumes.
電子資源:
http://dx.doi.org/10.1007/978-3-319-55729-8
ISBN:
9783319557298$q(electronic bk.)
Legume nitrogen fixation in soils with low phosphorus availabilityadaptation and regulatory implication /
Legume nitrogen fixation in soils with low phosphorus availability
adaptation and regulatory implication /[electronic resource] :edited by Saad Sulieman, Lam-Son Phan Tran. - Cham :Springer International Publishing :2017. - xiii, 287 p. :ill., digital ;24 cm.
Role of legume-Rhizobium symbiosis in sustainable agriculture -- P deficiency: A major limiting factor for rhizobial symbiosis -- The influence of phosphate deficiency on legume symbiotic N2 fixation -- Metabolism and transport of carbon in legume nodules under P deficiency -- Oxygen and the regulation of N2 fixation in legume nodules under P scarcity -- Transport and metabolism of nitrogen in legume nodules under phosphorus deficiency -- Examples of belowground mechanisms enabling legumes to mitigate phosphorus deficiency -- Role of plant hormones and small signaling moleculues in nodulation under P stress -- Molecular communication and nutrient transfer of the arbuscular mycorrhizal fungi, symbiotic nitrogen-fixing bacteria and host plant tripartite symbiosis -- Adaptation to phosphate stress by N2-fixing legumes: Lessons to learn from the model Medicago truncatula -- Physiological mechanisms and adaptation strategies in common bean (Phaseolus vulgaris L.) under P deficiency -- Physiological and molecular mechanisms and adaptation strategies in soybean (Glycine max) under phosphate deficiency -- White lupin: A model system for understanding plant adaptation to low phosphorus availability.
This thoughtful and provocative book provides a concise, up-to-date presentation of how current and projected future phosphorus scarcity will affect legume growth and their symbiotic nitrogen-fixing capabilities. It is a timely examination of the physiological and molecular responses of nodules to phosphorous deficiency in attempt to identify common principles. Students and researchers in the many disciplines related to crop productivity will find this title an exciting contribution in the area of plant stress physiology. The knowledge in this volume can also aid plant breeders, particularly through new methods of genetic engineering, in developing unique and adaptive cultivars with higher symbiotic efficiency. The awareness of the rapidly rising world population must translate into a parallel increase in agricultural production in order to sustain the growing population both now and in the future. Hence, the demand for food crops to produce proteins and vegetable oil for human consumption is going to increase considerably during the coming years. The essential role of legumes in agriculture is well-recognized, given the abundant levels of proteins and oils found in plants along with their enormous contribution to the sustainability of agricultural systems and human health. The capacity of legumes to fix nitrogen (N2) in partnership with rhizobia provides an input-saving and resource-conserving alternative, thereby reducing the need for chemical fertilizers while enhancing overall crop productivity. The use of N2-fixing legumes to produce plant proteins results in a substantial decrease in the consumption of fossil fuels and therefore also in the agricultural effects to global warming. However, a major constraint to legume production is low soil phosphorus (P) availability, considering that an overwhelming majority of the world's soils are classified as P-deficient. Low-P availability is especially problematic for legumes, since legume nodules responsible for N2 fixation have a high P requirement. Therefore, this book explains how nodule N2 fixation responds to low P availability, which is crucial for improving legume production and maintaining agricultural sustainability in the context of the global P crisis.
ISBN: 9783319557298$q(electronic bk.)
Standard No.: 10.1007/978-3-319-55729-8doiSubjects--Topical Terms:
524164
Legumes.
LC Class. No.: SB297.4.L44
Dewey Class. No.: 633.3
Legume nitrogen fixation in soils with low phosphorus availabilityadaptation and regulatory implication /
LDR
:04480nmm a2200313 a 4500
001
517509
003
DE-He213
005
20170610094027.0
006
m d
007
cr nn 008maaau
008
180316s2017 gw s 0 eng d
020
$a
9783319557298$q(electronic bk.)
020
$a
9783319557281$q(paper)
024
7
$a
10.1007/978-3-319-55729-8
$2
doi
035
$a
978-3-319-55729-8
040
$a
GP
$c
GP
041
0
$a
eng
050
4
$a
SB297.4.L44
072
7
$a
TVB
$2
bicssc
072
7
$a
TEC003000
$2
bisacsh
082
0 4
$a
633.3
$2
23
090
$a
SB297.4.L44
$b
L521 2017
245
0 0
$a
Legume nitrogen fixation in soils with low phosphorus availability
$h
[electronic resource] :
$b
adaptation and regulatory implication /
$c
edited by Saad Sulieman, Lam-Son Phan Tran.
260
$a
Cham :
$b
Springer International Publishing :
$b
Imprint: Springer,
$c
2017.
300
$a
xiii, 287 p. :
$b
ill., digital ;
$c
24 cm.
505
0
$a
Role of legume-Rhizobium symbiosis in sustainable agriculture -- P deficiency: A major limiting factor for rhizobial symbiosis -- The influence of phosphate deficiency on legume symbiotic N2 fixation -- Metabolism and transport of carbon in legume nodules under P deficiency -- Oxygen and the regulation of N2 fixation in legume nodules under P scarcity -- Transport and metabolism of nitrogen in legume nodules under phosphorus deficiency -- Examples of belowground mechanisms enabling legumes to mitigate phosphorus deficiency -- Role of plant hormones and small signaling moleculues in nodulation under P stress -- Molecular communication and nutrient transfer of the arbuscular mycorrhizal fungi, symbiotic nitrogen-fixing bacteria and host plant tripartite symbiosis -- Adaptation to phosphate stress by N2-fixing legumes: Lessons to learn from the model Medicago truncatula -- Physiological mechanisms and adaptation strategies in common bean (Phaseolus vulgaris L.) under P deficiency -- Physiological and molecular mechanisms and adaptation strategies in soybean (Glycine max) under phosphate deficiency -- White lupin: A model system for understanding plant adaptation to low phosphorus availability.
520
$a
This thoughtful and provocative book provides a concise, up-to-date presentation of how current and projected future phosphorus scarcity will affect legume growth and their symbiotic nitrogen-fixing capabilities. It is a timely examination of the physiological and molecular responses of nodules to phosphorous deficiency in attempt to identify common principles. Students and researchers in the many disciplines related to crop productivity will find this title an exciting contribution in the area of plant stress physiology. The knowledge in this volume can also aid plant breeders, particularly through new methods of genetic engineering, in developing unique and adaptive cultivars with higher symbiotic efficiency. The awareness of the rapidly rising world population must translate into a parallel increase in agricultural production in order to sustain the growing population both now and in the future. Hence, the demand for food crops to produce proteins and vegetable oil for human consumption is going to increase considerably during the coming years. The essential role of legumes in agriculture is well-recognized, given the abundant levels of proteins and oils found in plants along with their enormous contribution to the sustainability of agricultural systems and human health. The capacity of legumes to fix nitrogen (N2) in partnership with rhizobia provides an input-saving and resource-conserving alternative, thereby reducing the need for chemical fertilizers while enhancing overall crop productivity. The use of N2-fixing legumes to produce plant proteins results in a substantial decrease in the consumption of fossil fuels and therefore also in the agricultural effects to global warming. However, a major constraint to legume production is low soil phosphorus (P) availability, considering that an overwhelming majority of the world's soils are classified as P-deficient. Low-P availability is especially problematic for legumes, since legume nodules responsible for N2 fixation have a high P requirement. Therefore, this book explains how nodule N2 fixation responds to low P availability, which is crucial for improving legume production and maintaining agricultural sustainability in the context of the global P crisis.
650
0
$a
Legumes.
$3
524164
650
0
$a
Nitrogen-fixing plants.
$3
719071
650
0
$a
Nitrogen
$x
Fixation.
$3
229596
650
1 4
$a
Life Sciences.
$3
273679
650
2 4
$a
Agriculture.
$3
274257
650
2 4
$a
Oxidative Stress.
$3
257154
650
2 4
$a
Soil Science & Conservation.
$3
274561
700
1
$a
Sulieman, Saad.
$3
719069
700
1
$a
Tran, Lam-Son Phan.
$3
680084
710
2
$a
SpringerLink (Online service)
$3
273601
773
0
$t
Springer eBooks
856
4 0
$u
http://dx.doi.org/10.1007/978-3-319-55729-8
950
$a
Biomedical and Life Sciences (Springer-11642)
筆 0 讀者評論
全部
電子館藏
館藏
1 筆 • 頁數 1 •
1
條碼號
館藏地
館藏流通類別
資料類型
索書號
使用類型
借閱狀態
預約狀態
備註欄
附件
000000145142
電子館藏
1圖書
電子書
EB SB297.4.L44 L521 2017
一般使用(Normal)
在架
0
1 筆 • 頁數 1 •
1
多媒體
多媒體檔案
http://dx.doi.org/10.1007/978-3-319-55729-8
評論
新增評論
分享你的心得
Export
取書館別
處理中
...
變更密碼
登入