Accelerating Breeding for Heat Tolerance in Tomato (Solanum lycopersicum L.): An Integrated Approach

被引:54
|
作者
Ayenan, Mathieu Anatole Tele [1 ]
Danquah, Agyemang [1 ]
Hanson, Peter [2 ]
Ampomah-Dwamena, Charles [3 ]
Sodedji, Frejus Ariel Kpedetin [4 ,5 ]
Asante, Isaac K. [6 ]
Danquah, Eric Yirenkyi [1 ]
机构
[1] Univ Ghana, Coll Basic & Appl Sci, WACCI, PMB LG 30 Legon, Accra, Ghana
[2] West & Cent Africa Coastal & Humid Reg, World Vegetable Ctr, IITA Benin Campus,08 BP 0932 Tri Postal, Cotonou, Benin
[3] Auckland Mail Ctr, New Zealand Inst Plant & Food Res Ltd PFR, Private Bag 92169, Auckland 1142, New Zealand
[4] Univ Abomey Calavi, Fac Agron Sci, Lab Appl Ecol, 01 BP 526, Cotonou, Benin
[5] Univ Felix Houphouet Boigny, Africa Ctr Excellence Climate Change Biodivers &, 22 BP 461, Abidjan, Cote Ivoire
[6] Univ Ghana, Dept Plant Biol & Environm Sci, POB LG 55, Legon, Ghana
来源
AGRONOMY-BASEL | 2019年 / 9卷 / 11期
关键词
meta QTL; phenotyping; surrogate traits; thermo-tolerance; Solanaceae; VITRO POLLEN GERMINATION; HIGH-TEMPERATURE INHIBITION; SEGMENT SUBSTITUTION LINES; FRUIT-SET; CHLOROPHYLL FLUORESCENCE; COMBINED STRESS; MEMBRANE THERMOSTABILITY; CANOPY TEMPERATURE; POWERFUL TOOL; TUBE GROWTH;
D O I
10.3390/agronomy9110720
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Heat stress is a major limiting factor for crop productivity. Tomato is highly sensitive to heat stress, which can result in a total yield loss. To adapt to current and future heat stress, there is a dire need to develop heat tolerant cultivars. Here, we review recent attempts to improve screening for heat tolerance and to exploit genetic and genomic resources in tomatoes. We provide key factors related to phenotyping environments and traits (morphological, physiological, and metabolic) to be considered to identify and breed thermo-tolerant genotypes. There is significant variability in tomato germplasm that can be harnessed to breed for thermo-tolerance. Based on our review, we propose that the use of advanced backcross populations and chromosome segments substitution lines is the best means to exploit variability for heat tolerance in non-cultivated tomato species. We applied a meta quantitative trait loci (MQTL) analysis on data from four mapping experiments to co-localize QTL associated with heat tolerance traits (e.g., pollen viability, number of pollen, number of flowers, style protrusion, style length). The analysis revealed 13 MQTL of which 11 were composed of a cluster of QTL. Overall, there was a reduction of about 1.5-fold in the confidence interval (CI) of the MQTL (31.82 cM) compared to the average CI of individual QTL (47.4 cM). This confidence interval is still large and additional mapping resolution approaches such as association mapping and multi-parent linkage mapping are needed. Further investigations are required to decipher the genetic architecture of heat tolerance surrogate traits in tomatoes. Genomic selection and new breeding techniques including genome editing and speed breeding hold promise to fast-track development of improved heat tolerance and other farmer- and consumer-preferred traits in tomatoes.
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页数:23
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