References
1. Lo ´ pez-Ra ´ez JA, Charnikhova T, Go ´ mez-Rolda ´n V et al (2008) Tomato strigolactones are
derived from carotenoids and their biosynthesis
is promoted by phosphate starvation. New
Phytol 178:863–874
2. Delaux PM, Xie X, Timme RE et al (2012)
Origin of strigolactones in the green lineage.
New Phytol 195:857–871
3. Siame B, Weerasuriya Y, Wood K et al (1993)
Isolation of strigol, a germination stimulant for
Striga asiatica. J Agric Food Chem
41:1486–1491
4. Butler LG (1995) Chemical communication
between the parasitic weed Striga and its crop
host. A new dimension in allelochemistry. In:
Inderjit KM, Dakshini M, Enhelling FA (eds)
Allelopathy, organisms, processes and applications.
American
Chemical
Society,
Washington, DC, pp 158–166
5. Shen H, Ye W, Hong L et al (2006) Progress in
parasitic plant biology: host selection and
nutrient transfer. Plant Biol 8:175–185
6. Press MC, Scholes JD, Riches CR (2001) Current status and future prospects for management of parasitic weeds (Striga and
Orobanche). World’s Worst Weeds Proc:71–88
7. Akiyama K, Matsuzaki K, Hayashi H (2005)
Plant sesquiterpenes induce hyphal branching
in arbuscular mycorrhizal fungi. Nature
435:824–827
8. Hayashi H, Akiyama K (2008) Strigolactones:
host recognition signals for arbuscular mycorrhizal fungi. New Phytol 2008:55–61
9. Gomez-Roldan V, Fermas S, Brewer PB et al
(2008) Strigolactone inhibition of shoot
branching. Nature 455:189–194
10. Umehara M, Hanada A, Yoshida S et al (2008)
Inhibition of shoot branching by new terpenoid plant hormones. Nature 455:195–200
11. Screpanti C, Yoneyama K, Bouwmeester HJ
(2016) Strigolactones and parasitic weed management 50 years after the discovery of the first
natural strigolactone strigol: status and outlook. Pest Manag Sci 72:2013–2015
12. Yoneyama K, Arakawa R, Ishimoto K et al
(2015) Difference in striga-susceptibility is
reflected in strigolactone secretion profile, but
not in compatibility and host preference in
arbuscular mycorrhizal symbiosis in two maize
cultivars. New Phytol 206:983–989
13. Sato D, Awad AA, Chae SH et al (2003) Analysis of strigolactones, germination stimulants
for Striga and Orobanche, by high-performance
liquid chromatography/tandem mass spectrometry. J Agric Food Chem 51:1162–1168
14. Sato D, A a A, Takeuchi Y et al (2005) Confirmation and quantification of strigolactones,
germination stimulants for root parasitic plants
Striga and Orobanche, produced by cotton.
Biosci Biotechnol Biochem 69:98–102
15. Yoneyama K, Xie X, Sekimoto H et al (2008)
Strigolactones, host recognition signals for
root parasitic plants and arbuscular mycorrhizal
fungi, from Fabaceae plants. New Phytol
179:484–494
16. Yoneyama K, Yoneyama K, Takeuchi Y et al
(2007) Phosphorus deficiency in red clover
promotes exudation of orobanchol, the signal
for mycorrhizal symbionts and germination
stimulant
for
root
parasites.
Planta
225:1031–1038
17. Jamil M, Charnikhova T, Cardoso C et al
(2011) Quantification of the relationship
between strigolactones and Striga hermonthica
infection in rice under varying levels of nitrogen and phosphorus. Weed Res 51:373–385
18. Boutet-Mercey S, Perreau F, Roux A et al
(2018) Validated method for Strigolactone
quantification by ultra high-performance liquid
chromatography – electrospray ionisation tandem mass spectrometry using novel deuterium
Labelled standards. Phytochem Anal 29:59–68
19. Xie X, Yoneyama K, Kurita J et al (2009)
7-Oxoorobanchyl
acetate
and
7-Oxoorobanchol as germination stimulants
for root parasitic plants from flax (Linum usitatissimum). Biosci Biotechnol Biochem
73:1367–1370
20. Xie X, Kusumoto D, Takeuchi Y et al (2007)
2
0 -Epi-orobanchol and Solanacol, two unique
Strigolactones, germination stimulants for root
parasitic weeds, produced by tobacco. J Agric
Food Chem 55:8067–8072
21. Yokota T, Sakai H, Okuno K et al (1998) Alectrol and Orobanchol, germination stimulants
for Orobanche minor, from its host red clover.
Phytochemistry 49:1967–1973
22. Cook CE, Whichard LP, Turner B et al (1966)
Germination of Witchweed (Striga Lutea
Lour)—isolation and properties of a potent
stimulant. Science 154:1189–1190
23. Cook C, Whichard L, Wall M et al (1972)
Germination stimulants. II. Structure of strigol, a potent seed germination stimulant for
witchweed (Striga lutea). J Am Chem Soc
94:6198–6199
24. Xie X, Yoneyama K, Harada Y et al (2009)
Fabacyl acetate, a germination stimulant for
root parasitic plants from Pisum sativum. Phytochemistry 70:211–215
Quantification of Strigolactones
207
1. Lo ´ pez-Ra ´ez JA, Charnikhova T, Go ´ mez-Rolda ´n V et al (2008) Tomato strigolactones are
derived from carotenoids and their biosynthesis
is promoted by phosphate starvation. New
Phytol 178:863–874
2. Delaux PM, Xie X, Timme RE et al (2012)
Origin of strigolactones in the green lineage.
New Phytol 195:857–871
3. Siame B, Weerasuriya Y, Wood K et al (1993)
Isolation of strigol, a germination stimulant for
Striga asiatica. J Agric Food Chem
41:1486–1491
4. Butler LG (1995) Chemical communication
between the parasitic weed Striga and its crop
host. A new dimension in allelochemistry. In:
Inderjit KM, Dakshini M, Enhelling FA (eds)
Allelopathy, organisms, processes and applications.
American
Chemical
Society,
Washington, DC, pp 158–166
5. Shen H, Ye W, Hong L et al (2006) Progress in
parasitic plant biology: host selection and
nutrient transfer. Plant Biol 8:175–185
6. Press MC, Scholes JD, Riches CR (2001) Current status and future prospects for management of parasitic weeds (Striga and
Orobanche). World’s Worst Weeds Proc:71–88
7. Akiyama K, Matsuzaki K, Hayashi H (2005)
Plant sesquiterpenes induce hyphal branching
in arbuscular mycorrhizal fungi. Nature
435:824–827
8. Hayashi H, Akiyama K (2008) Strigolactones:
host recognition signals for arbuscular mycorrhizal fungi. New Phytol 2008:55–61
9. Gomez-Roldan V, Fermas S, Brewer PB et al
(2008) Strigolactone inhibition of shoot
branching. Nature 455:189–194
10. Umehara M, Hanada A, Yoshida S et al (2008)
Inhibition of shoot branching by new terpenoid plant hormones. Nature 455:195–200
11. Screpanti C, Yoneyama K, Bouwmeester HJ
(2016) Strigolactones and parasitic weed management 50 years after the discovery of the first
natural strigolactone strigol: status and outlook. Pest Manag Sci 72:2013–2015
12. Yoneyama K, Arakawa R, Ishimoto K et al
(2015) Difference in striga-susceptibility is
reflected in strigolactone secretion profile, but
not in compatibility and host preference in
arbuscular mycorrhizal symbiosis in two maize
cultivars. New Phytol 206:983–989
13. Sato D, Awad AA, Chae SH et al (2003) Analysis of strigolactones, germination stimulants
for Striga and Orobanche, by high-performance
liquid chromatography/tandem mass spectrometry. J Agric Food Chem 51:1162–1168
14. Sato D, A a A, Takeuchi Y et al (2005) Confirmation and quantification of strigolactones,
germination stimulants for root parasitic plants
Striga and Orobanche, produced by cotton.
Biosci Biotechnol Biochem 69:98–102
15. Yoneyama K, Xie X, Sekimoto H et al (2008)
Strigolactones, host recognition signals for
root parasitic plants and arbuscular mycorrhizal
fungi, from Fabaceae plants. New Phytol
179:484–494
16. Yoneyama K, Yoneyama K, Takeuchi Y et al
(2007) Phosphorus deficiency in red clover
promotes exudation of orobanchol, the signal
for mycorrhizal symbionts and germination
stimulant
for
root
parasites.
Planta
225:1031–1038
17. Jamil M, Charnikhova T, Cardoso C et al
(2011) Quantification of the relationship
between strigolactones and Striga hermonthica
infection in rice under varying levels of nitrogen and phosphorus. Weed Res 51:373–385
18. Boutet-Mercey S, Perreau F, Roux A et al
(2018) Validated method for Strigolactone
quantification by ultra high-performance liquid
chromatography – electrospray ionisation tandem mass spectrometry using novel deuterium
Labelled standards. Phytochem Anal 29:59–68
19. Xie X, Yoneyama K, Kurita J et al (2009)
7-Oxoorobanchyl
acetate
and
7-Oxoorobanchol as germination stimulants
for root parasitic plants from flax (Linum usitatissimum). Biosci Biotechnol Biochem
73:1367–1370
20. Xie X, Kusumoto D, Takeuchi Y et al (2007)
2
0 -Epi-orobanchol and Solanacol, two unique
Strigolactones, germination stimulants for root
parasitic weeds, produced by tobacco. J Agric
Food Chem 55:8067–8072
21. Yokota T, Sakai H, Okuno K et al (1998) Alectrol and Orobanchol, germination stimulants
for Orobanche minor, from its host red clover.
Phytochemistry 49:1967–1973
22. Cook CE, Whichard LP, Turner B et al (1966)
Germination of Witchweed (Striga Lutea
Lour)—isolation and properties of a potent
stimulant. Science 154:1189–1190
23. Cook C, Whichard L, Wall M et al (1972)
Germination stimulants. II. Structure of strigol, a potent seed germination stimulant for
witchweed (Striga lutea). J Am Chem Soc
94:6198–6199
24. Xie X, Yoneyama K, Harada Y et al (2009)
Fabacyl acetate, a germination stimulant for
root parasitic plants from Pisum sativum. Phytochemistry 70:211–215
Quantification of Strigolactones
207
