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lechero de la Cornisa Cantábrica que se acojan al abandono

1265

properties of arcelin-1, an insec- ticidal lectin-like protein isolated from kidney 1266

bean (Phaseolus vulgaris L. cv RAZ-2) seeds. Biochem J, 329, 551–560. 1267

Falk, K.L. and Gershenzon, J. (2007) The desert locust, Schistocerca gregaria,

1268

detoxifies the glucosinolates of Schouwia purpurea by desulfation. J Chem Ecol, 1269

33, 1542–1555.

1270

Farmer, E.E. (2014) Leaf defence, OUP Oxford.

1271

Farmer, E.E. and Dubugnon, L. (2009) Detritivorous crustaceans become herbivores

1272

on jasmonate-deficient plants. Proc Natl Acad Sci USA, 106, 935–940. 1273

Farmer, E.E., Gasperini, D. and Acosta, I.F. (2014) The squeeze cell hypothesis for

1274

the activation of jasmonate synthesis in response to wounding. New Phytol, 204, 1275

282–288. 1276

Fatouros, N.E., Broekgaarden, C., Bukovinszkine'kiss, G., van Loon, J.J.A.,

1277

Mumm, R., Huigens, M.E., Dicke, M. and Hilker, M. (2008) Male-derived

1278

butterfly anti-aphrodisiac mediates induced indirect plant defense. Proc Natl Acad 1279

Sci USA, 105, 10033–10038. 1280

Fatouros, N.E., Pashalidou, F.G., Cordero, W.V.A., Loon, J.J.A., Mumm, R.,

1281

Dicke, M., Hilker, M. and Huigens, M.E. (2009) Anti-aphrodisiac Compounds of

1282

Male Butterflies Increase the Risk of Egg Parasitoid Attack by Inducing Plant 1283

Synomone Production. J Chem Ecol, 35, 1373–1381. 1284

Fernández-Calvo, P., Chini, A., Fernández-Barbero, G. et al. (2011) The

1285

Arabidopsis bHLH transcription factors MYC3 and MYC4 are targets of JAZ 1286

repressors and act additively with MYC2 in the activation of jasmonate responses. 1287

Plant Cell, 23, 701–715. 1288

Fonseca, S., Chini, A., Hamberg, M., Adie, B.A.T., Porzel, A., Kramell, R.,

1289

Miersch, O., Wasternack, C. and Solano, R. (2009) (+)-7-iso-Jasmonoyl-L-

1290

isoleucine is the endogenous bioactive jasmonate. Nat Chem Biol, 5, 344–350. 1291

Franco, O.L., Rigden, D.J., Melo, F.R., and Grossi-De-Sá, M.F. (2002) Plant alpha-

1292

amylase inhibitors and their interaction with insect alpha-amylases. Eur J Biochem, 1293

269, 397-412.

1294

Frerigmann, H. (2016) Glucosinolate regulation in a complex relationship – MYC and

1295

MYB – no one can act without each other. Adv Bot Res, 80, 57–97. 1296

Futuyma, D.J. and Agrawal, A.A. (2009) Macroevolution and the biological diversity

1297

of plants and herbivores. Proc Natl Acad Sci USA, 106, 18054–18061. 1298

Gaquerel, E., Weinhold, A. and Baldwin, I.T. (2009) Molecular interactions between

1299

the specialist herbivore Manduca sexta (Lepidoptera, Sphigidae) and its natural host 1300

Nicotiana attenuata. VIII. An unbiased GCxGC-ToFMS analysis of the plant's 1301

elicited volatile emissions. Plant Physiol, 149, 1408–1423. 1302

Gasperini, D., Chauvin, A., Acosta, I.F., Kurenda, A., Stolz, S., Chételat, A.,

1303

Wolfender, J.-L. and Farmer, E.E. (2015) Axial and Radial Oxylipin Transport.

1304

Plant Physiol, 169, 2244–2254. 1305

Gepner, J.I., Hall, L.M., and Sattelle, D.B. (1978). Insect acetylcholine receptors as a

1306

site of insecticide action. Nature, 276, 188–190. 1307 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56

and Solano, R. (2014) The bacterial effector HopX1 targets JAZ transcriptional

1309

repressors to activate jasmonate signaling and promote infection in Arabidopsis. 1310

PLoS Biol, 12, e1001792. 1311

Glauser, G., Grata, E., Dubugnon, L., Rudaz, S., Farmer, E.E. and Wolfender, J.L.

1312

(2008) Spatial and temporal dynamics of jasmonate synthesis and accumulation in 1313

Arabidopsis in response to wounding. J Biol Chem, 283, 16400-16407 1314

Gloss, A.D., Vassão, D.G., Hailey, A.L. et al. (2014) Evolution in an ancient

1315

detoxification pathway is coupled with a transition to herbivory in the 1316

drosophilidae. Mol Biol Evol, 31, 2441–2456. 1317

Gonzales-Vigil, E., Bianchetti, C.M., Phillips, G.N. Jr, and Howe GA. (2011)

1318

Adaptive evolution of threonine deaminase in plant defense against insect 1319

herbivores. Proc Natl Acad Sci USA, 108, 5897-5902. 1320

Gouhier-Darimont, C., Schmiesing, A., Bonnet, C., Lassueur, S. and Reymond, P.

1321

(2013) Signalling of Arabidopsis thaliana response to Pieris brassicae eggs shares 1322

similarities with PAMP-triggered immunity. J Exp Bot, 64, 665–674. 1323

Grbic, M., Van Leeuwen, T., Clark, R.M. et al. (2011) The genome of Tetranychus

1324

urticae reveals herbivorous pest adaptations. Nature, 479, 487–492. 1325

Green, T.R., and Ryan, C.A. (1972) Wound-induced proteinase inhibitor in plant

1326

leaves: A possible defense mechanism against insects. Science, 175, 776–777. 1327

Guo, H., Wielsch, N., Hafke, J.B., Svatos, A., Mithöfer, A. and Boland, W. (2013) A

1328

porin-like protein from oral secretions of Spodoptera littoralis larvae induces 1329

defense-related early events in plant leaves. Insect Biochem Mol Biol, 43, 849–858. 1330

Gururani, M.A., Venkatesh, J., Upadhyaya, C.P., Nookaraju, A., Pandey, S.K. and

1331

Park, S.W. (2012) Plant disease resistance genes: Current status and future

1332

directions. Physiol Mol Plant Pathol, 78, 51–65. 1333

Halitschke, R., Schittko, U., Pohnert, G., Boland, W. and Baldwin, I.T. (2001)

1334

Molecular interactions between the specialist herbivore Manduca sexta 1335

(Lepidoptera, Sphingidae) and its natural host Nicotiana attenuata. III. Fatty acid- 1336

amino acid conjugates in herbivore oral secretions are necessary and sufficient for 1337

herbivore-specific plant responses. Plant Physiol, 125, 711–717. 1338

Handrick, V., Robert, C.A., Ahern, K.R. et al. (2016) Biosynthesis of 8-o-methylated

1339

benzoxazinoid defense compounds in maize. Plant Cell, 28, 1682–1700. 1340

Harfouche, A.L., Shivaji, R., Stocker, R., Williams, P.W. and Luthe, D.S. (2006)

1341

Ethylene signaling mediates a maize defense response to insect herbivory. Mol 1342

Plant Microbe Interact, 19, 189–199. 1343

Hartl, M., Giri, A,P., Kaur, H., and Baldwin, I.T. (2010) Serine protease inhibitors

1344

specifically defend Solanum nigrum against generalist herbivores but do not 1345

influence plant growth and development. Plant Cell, 22, 4158–4175. 1346

Hartley, S.E. and DeGabriel, J.L. (2016) The ecology of herbivore-induced silicon

1347

defences in grasses. Funct Ecol, 30, 1311-1322. 1348

Heidel-Fischer, H.M. and Vogel, H. (2015) Molecular mechanisms of insect

1349

adaptation to plant secondary compounds. Curr Opin Insect Sci, 8, 8–14. 1350

Heil, M. (2008) Indirect defence via tritrophic interactions. New Phytol, 178, 41–61.

1351

Heil, M. (2015) Extrafloral nectar at the plant-insect interface: a spotlight on chemical

1352 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56

Herde, M. and Howe, G.A. (2014) Host plant-specific remodeling of midgut

1354

physiology in the generalist insect herbivore Trichoplusia ni. Insect Biochem Mol 1355

Biol, 50, 58-67. 1356

Hilfiker, O., Groux, R., Bruessow, F., Kiefer, K., Zeier, J. and Reymond, P. (2014)

1357

Insect eggs induce a systemic acquired resistance in Arabidopsis. Plant J, 80, 1085– 1358

1094. 1359

Hilker, M. and Fatouros, N.E. (2015) Plant responses to insect egg deposition. Annu

1360

Rev Entomol, 60, 493–515. 1361

Hilker, M., Kobs, C., Varama, M. and Schrank, K. (2002) Insect egg deposition

1362

induces Pinus sylvestris to attract egg parasitoids. J Exp Biol, 205, 455–461. 1363

Hilker, M., Stein, C., Schröder, R., Varama, M. and Mumm, R. (2005) Insect egg

1364

deposition induces defence responses in Pinus sylvestris: characterisation of the 1365

elicitor. J of Exp Biol, 208, 1849-1854. 1366

Hogenhout, S.A. and Bos, J.I.B. (2011) Effector proteins that modulate plant–insect

1367

interactions. Curr Opin Plant Biol, 14, 422-428. 1368

Holzinger, F. and Wink, M. (1996) Mediation of cardiac glycoside insensitivity in the

1369

monarch butterfly (Danaus plexippus): Role of an amino acid substitution in the 1370

ouabain binding site of Na+,K+-ATPase. J Chem Ecol, 22, 1921–1937. 1371

Hosie, A.M., Aronstein, K., Sattelle, D.B., and ffrench-Constant, R.H. (1997)

1372

Molecular biology of insect neuronal GABA receptors. Trends Neurosci, 20, 578- 1373

589. 1374

Howe, G.A. and Jander, G. (2008) Plant immunity to insect herbivores. Annu Rev

1375

Plant Biol, 59, 41–66. 1376

Howe, H.F. and Smallwood, J. (1982) Ecology of seed dispersal. Annu Rev Ecol Syst,

1377

13, 201-228.

1378

Huang, T., Jander, G., and de Vos, M. (2011) Non-protein amino acids in plant

1379

defense against insect herbivores: representative cases and opportunities for further 1380

functional analysis. Phytochemistry, 72, 1531–1537. 1381

Huber, A.E. and Bauerle, T.L. (2016) Long-distance plant signaling pathways in

1382

response to multiple stressors: the gap in knowledge. J Exp Bot, 67, 2063–2079. 1383

Huber, M., Epping, J., Schulze Gronover, C. et al. (2016) A latex metabolite benefits

1384

plant fitness under root herbivore attack. PLoS Biol, 14, e1002332. 1385

Hung, C.F., Berenbaum, M.R. and Schuler, M.A. (1997) Isolation and

1386

characterization of CYP6B4, a furanocoumarin-inducible cytochrome P450 from a 1387

polyphagous caterpillar (Lepidoptera:papilionidae). Insect Biochem Mol Biol, 27, 1388

377–385. 1389

Isman, M.B. (2006) Botanical insecticides, deterrents, and repellents in modern

1390

agriculture and an increasingly regulated world. Annu Rev Entomol, 51, 45-66. 1391

Jaouannet, M., Rodriguez, P.A., Thorpe, P., Lenoir, C.J.G., MacLeod, R.,

1392

Escudero-Martinez, C. and Bos, J.I.B. (2014) Plant immunity in plant-aphid

1393

interactions. Front Plant-Microbe Interact, 5, 663. 1394

Jennings, C., West, J., Waine, C., Craik, D., and Anderson, M. (2001) Biosynthesis

1395

and insecticidal properties of plant cyclotides: the cyclic knotted proteins from 1396

Oldenlandia affinis. Proc Natl Acad Sci USA, 98, 10614-10619. 1397 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56

Johnson, S.N. and Rasmann, S. (2015) Root-feeding insects and their interactions

1398

with organisms in the rhizosphere. Annu Rev Entomol, 60, 517–535. 1399

Jones, J.D.G. and Dangl, J.L. (2006) The plant immune system. Nature, 444, 323–

1400

329. 1401

Kang, J.-H., Liu, G., FShi, F., Jones, A.D., Beaudry, R.M. and Howe, G.A. (2010)

1402

The tomato odorless-2 mutant is defective in trichome-based production of diverse 1403

specialized metabolites and broad-spectrum resistance to insect herbivores. Plant 1404

Physiol, 154, 262-272. 1405

Kant, M.R., Sabelis, M.W., Haring, M.A. and Schuurink, R.C. (2008) Intraspecific

1406

variation in a generalist herbivore accounts for differential induction and impact of 1407

host plant defences. Proc R Soc B, 275, 443-452. 1408

Katoh, A., Ohki, H., Inai, K., and Hashimoto, T. (2005) Molecular regulation of

1409

nicotine biosynthesis. Plant Biotechnol, 22, 389–392. 1410

Kazana, E., Pope, T.W., Tibbles, L., Bridges, M., Pickett, J.A., Bones, A.M.,

1411

Powell, G. and Rossiter J.T. (2007) The cabbage aphid: a walking mustard oil

1412

bomb. Proc Biol Sci B, 274, 2271-2277. 1413

Kessler, D., Diezel, C. and Baldwin, I.T. (2010) Changing pollinators as a means of

1414

escaping herbivores. Curr Biol, 20, 237–242. 1415

Kettles, G.J., Drurey, C., Schoonbeek, H.J., Maule, A.J., and Hogenhout, S.A.

1416

(2013) Resistance of Arabidopsis thaliana to the green peach aphid, Myzus 1417

persicae, involves camalexin and is regulated by microRNAs. New Phytol, 198, 1418

1178-1190. 1419

Kivimäki, M., Kärkkäinen, K., Gaudeul, M., Løe, G. and Ågren, J. (2007) Gene,

1420

phenotype and function: GLABROUS1 and resistance to herbivory in natural 1421

populations of Arabidopsis lyrata. Mol Ecol, 16, 453–462. 1422

Klingler, J.P., Nair, R.M., Edwards, O.R. and Singh, K.B. (2009) A single gene,

1423

AIN, in Medicago truncatula mediates a hypersensitive response to both bluegreen 1424

aphid and pea aphid, but confers resistance only to bluegreen aphid. J Exp Bot, 60, 1425

4115–4127. 1426

Koiwa, H., Shade, R.E., Zhu-Salzman, K., Subramanian, L., Murdock, L.L.,

1427

Nielsen, S.S., Bressan, R.A., and Hasegawa, P.M. (1998) Phage display selection

1428

can differentiate insecticidal activity of soybean cystatins. Plant J, 14, 371-379. 1429

Koo, A.J.K, Gao, X., Jone A.D. and Howe, G.A. (2009) A rapid wound signal

1430

activates the systemic synthesis of bioactive jasmonates in Arabidopsis. Plant J, 59, 1431

974-986. 1432

Koornneef, A. and Pieterse, C.M.J. (2008) Cross talk in defense signaling. Plant

1433

Physiol, 146, 839–844. 1434

Korth, K.L., Doege, S.J., Park, S.H., Goggin, F.L., Wang, Q., Gomez, S.K., Liu, G.,

1435

Jia, L., and Nakata, P.A. (2006) Medicago truncatula mutants demonstrate the

1436

role of plant calcium oxalate crystals as an effective defense against chewing 1437

insects. Plant Physiol, 141, 188–195. 1438

Krempl, C., Sporer, T., Reichelt, M., Ahn, S.-J., Heidel-Fischer, H., Vogel, H.,

1439

Heckel, D.G. and Joußen, N. (2016) Potential detoxification of gossypol by UDP-

1440

glycosyltransferases in the two Heliothine moth species Helicoverpa armigera and 1441 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56

Kumar, P., Pandit, S.S., Steppuhn, A. and Baldwin, I.T. (2014) Natural history-

1443

driven, plant-mediated RNAi-based study reveals CYP6B46's role in a nicotine- 1444

mediated antipredator herbivore defense. Proc Natl Acad Sci USA, 111, 1245–1252. 1445

Kuroda, M., Ishimoto, M., Suzuki, K., Kondo, H., Abe, K., Kitamura, K., and

1446

Arai, S. (1996) Oryzacystatins Exhibit Growth-inhibitory and Lethal Effects on

1447

Different Species of Bean Insect Pests, Callosobruchus chinensis (Coleoptera) and 1448

Riptortus clavatus (Hemiptera). Biosci Biotech Biochem, 60, 209-212. 1449

Kusnierczyk, A., Winge, P., Jørstad, T.S., Troczynska, J., Rossiter, J.T. and Bones,

1450