II.1.5 Phenotyping pearl millet for adaptation to drought

被引:78
作者
Vadez, Vincent [1 ]
Hash, Tom [1 ]
Bidinger, Francis R. [1 ]
Kholova, Jana [1 ]
机构
[1] Int Crops Res Inst Semi Arid Trop, GT Biotechnol 1, Patancheru 502324, Andhra Pradesh, India
关键词
drought; pearl millet; QUANTITATIVE TRAIT LOCI; MARKER-ASSISTED SELECTION; PENNISETUM-GLAUCUM L; AMERICANUM L LEEKE; DOMESTICATION TRAITS; DETERMINING GRAIN; DOWNY MILDEW; STOVER YIELD; WATER-USE; RESISTANCE;
D O I
10.3389/fphys.2012.00386
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Pearl millet is highly resilient to some of the driest areas of the world, like the Sahel area or fringes of the Thar desert in India. Despite this, there is a wealth of variation in pearl millet genotypes for their adaptation to drought and the object of this paper was to review some related work in the past 25 years to harness these capacities toward the breeding of better adapted cultivars. Work on short duration cultivars has been a major effort. Pearl millet has also some development plasticity thanks to a high tillering ability, which allows compensating for possible drought-related failure of the main culm under intermittent drought. The development of molecular tools for breeding has made great progress in the last 10-15 years and markers, maps, EST libraries, BACs are now available and a number of quantitative trait loci (QTLs) for different traits, including drought, have been identified. Most of the work on drought has focused on the drought tolerance index (DTI), an index that reflect the genetic differences in drought adaptation that are independent of flowering time and yield potential. The DTI is closely associated to the panicle harvest index (RN HI), a trait that relates to a better grain setting and grain filling capacity. Initial work on the DTI involved empirical breeding and selection based on PNHI. A OIL for PNHI has then been identified and introgressed by marker-assisted backcrossing. More recently, a thorough dissection of that OIL has been carried out and shows that high PNHI is related to the constitutive ability of tolerant lines to save water (lower leaf conductance and sensitivity of transpiration to high vapor pressure deficit) at a vegetative stage and use it for the grain filling period. However, there is no contribution of root traits in this OIL. Current work is taking place to map these water saving traits, understand their genetic interactions, and design ideotypes having specific genetic make-up toward adaptation to specific rainfall environments.
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页数:12
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共 74 条
[1]   Construction of a BAC library of pearl millet, Pennisetum glaucum [J].
Allouis, S ;
Qi, X ;
Lindup, S ;
Gale, MD ;
Devos, KM .
THEORETICAL AND APPLIED GENETICS, 2001, 102 (08) :1200-1205
[2]  
Azam Ali S. N., 1984, EXPT AGR, V20, P203
[3]  
Azhaguvel P., 2001, THESIS TAMILNADU AGR
[5]   Assessment of genetic diversity within and between pearl millet landraces [J].
Bhattacharjee, R ;
Bramel, PJ ;
Hash, CT ;
Kolesnikova-Allen, MA ;
Khairwal, IS .
THEORETICAL AND APPLIED GENETICS, 2002, 105 (05) :666-673
[6]  
Bidinger F. R., 1982, Drought resistance in crops with emphasis on rice, P357
[7]  
Bidinger F. R., 1995, P 8 EARSAM REG WORKS, P27
[8]  
Bidinger F.R., 2002, Field Screening for Drought Tolerance in Crop Plants with Emphasis on Rice, P109
[9]  
Bidinger F.R., 2000, MOL APPROACHES GENET, P59
[10]   ASSESSMENT OF DROUGHT RESISTANCE IN PEARL-MILLET [PENNISETUM-AMERICANUM (L) LEEKE] .1. FACTORS AFFECTING YIELDS UNDER STRESS [J].
BIDINGER, FR ;
MAHALAKSHMI, V ;
RAO, GDP .
AUSTRALIAN JOURNAL OF AGRICULTURAL RESEARCH, 1987, 38 (01) :37-48