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1 lepidopteran predator Manduca sexta (tobacco hornworm).
2  72 and 49% identity to subunit F of tobacco hornworm and yeast, respectively.
3 entified in vacuolar proton pumps of tobacco hornworm and yeast, was present in mammalian pumps.
4 n results in movement similar to that of the hornworm by patterned cell culture method.
5 se experiments, we document that the tobacco hornworm caterpillar, Manduca sexta, reduced feeding by
6                   Our findings indicate that hornworm caterpillars use temporally dynamic compensator
7 F = 0.16) compared to a previous study where hornworm caterpillars were fed plants that had previousl
8 urface chemistry and regional differences in hornworm gut chemistry.
9 n of accumulated Au ENMs not associated with hornworm gut contents; and (4) regional differences in t
10 tion of Au ENMs into tissues surrounding the hornworm gut, possibly the result of the interaction bet
11 romised in defense against attack by tobacco hornworm larvae.
12   The growth rates of Manduca sexta (tobacco hornworm) larvae feeding on tomato plants constitutively
13 cDNA clone encoding a subunit of the tobacco hornworm Manduca sexta (Ms) hemolymph (serum) ferritin (
14  A crystal structure of JHE from the tobacco hornworm Manduca sexta (MsJHE) in complex with the trans
15 ture of the JH esterase (JHE) of the tobacco hornworm Manduca sexta (MsJHE).
16  the pattern of cell division in the tobacco hornworm Manduca sexta and found that both the rate of c
17  enteric nervous system (ENS) of the tobacco hornworm Manduca sexta as a model system, we have explor
18 ed in the abdominal epidermis of the tobacco hornworm Manduca sexta by 20-hydroxyecdysone (20E) durin
19 isomeric composition: feeding of the tobacco hornworm Manduca sexta converts (Z)-3- to (E)-2-GLVs the
20 15-2B), and to a lesser extent, by a tobacco hornworm Manduca sexta FaRP, GNSFLRFNH2 (F7G) (potency r
21 ar in the abdominal epidermis of the tobacco hornworm Manduca sexta in a pattern-specific manner as t
22                                  The tobacco hornworm Manduca sexta, like many holometabolous insects
23                               In the tobacco hornworm Manduca sexta, recombinant hemolymph proteinase
24 ized in the midgut epithelium of the tobacco hornworm Manduca sexta.
25  and sequenced from the brain of the tobacco hornworm Manduca sexta.
26 mone, Mas-ETH, is described from the tobacco hornworm Manduca sexta.
27 s compromised in its defense against tobacco hornworm (Manduca sexta) attack.
28  cinerea and to feeding by larvae of tobacco hornworm (Manduca sexta) but not to the bacterial pathog
29 f engineered nanomaterials (ENMs) by tobacco hornworm (Manduca sexta) caterpillars resulting from the
30 sing cryo-electron microscopy of the tobacco hornworm (Manduca sexta) enzyme, we have calculated the
31 ed by an increased resistance toward tobacco hornworm (Manduca sexta) larvae.
32 onent (SPC) acquisition, we used the tobacco hornworm (Manduca sexta), which uses a blend of mono-, d
33 00, and larvae of the chewing insect tobacco hornworm (Manduca sexta).
34  Cry1A toxins in midgut epithelia of tobacco hornworm (Manduca sexta).
35 actable protein were highly toxic to tobacco hornworm (Manduca sexta).
36 teins in the larval epidermis of the tobacco hornworm (Manduca sexta).
37 ization of a GABA transporter in the tobacco hornworm, Manduca sexta (MasGAT), using an affinity-puri
38  hormonal regulation of E74 from the tobacco hornworm, Manduca sexta (MsE74).
39 rger of two diuretic hormones of the tobacco hornworm, Manduca sexta, (Mas-DH) is a peptide of 41 res
40            We have isolated from the tobacco hornworm, Manduca sexta, a cDNA encoding a modular prote
41  have purified from hemolymph of the tobacco hornworm, Manduca sexta, a new serine proteinase that cl
42            We have isolated from the tobacco hornworm, Manduca sexta, a serine proteinase that activa
43 ctivation of moricin promoter in the tobacco hornworm, Manduca sexta, and a 140-bp region in the mori
44 ila melanogaster was cloned from the tobacco hornworm, Manduca sexta, and its developmental expressio
45 aper) and B1, were isolated from the tobacco hornworm, Manduca sexta, and shown to be similar to the
46                         This is noted in the hornworm, Manduca sexta, as a defensive strike response.
47 dback moth, Plutella xylostella, and tobacco hornworm, Manduca sexta, as well as the spotted wing dro
48 rine proteinases in hemolymph of the tobacco hornworm, Manduca sexta, but functions are known for onl
49               Serpin gene-1 from the tobacco hornworm, Manduca sexta, encodes, through alternative ex
50 ing with endocrine influences of the tobacco hornworm, Manduca sexta, host and its parasitoid wasp Ap
51 cDNA that encodes three FaRPs in the tobacco hornworm, Manduca sexta, including the amidated decapept
52                               In the tobacco hornworm, Manduca sexta, pupal diapause can be induced b
53 have cloned a cDNA and gene from the tobacco hornworm, Manduca sexta, which is related to the vertebr
54 lex (BRC) gene was isolated from the tobacco hornworm, Manduca sexta, which shows a predicted 88% ami
55 anner as previously reported for the tobacco hornworm, Manduca sexta.
56 forms (MsRel2A and MsRel2B) from the tobacco hornworm, Manduca sexta.
57 ins (serpin-4 and serpin-5) from the tobacco hornworm, Manduca sexta.
58 an immune-responsive serpin from the tobacco hornworm, Manduca sexta.
59 n-2, was isolated from plasma of the tobacco hornworm, Manduca sexta.
60 -glucan-recognition protein from the tobacco hornworm, Manduca sexta.
61 dysone (20E) in the epidermis of the tobacco hornworm, Manduca sexta.
62 sis in the prothoracic glands of the tobacco hornworm, Manduca sexta.
63 age display library derived from the tobacco hornworm moth Manduca sexta L. was constructed and scree
64             In starved larvae of the tobacco hornworm moth Manduca sexta, larval and imaginal tissues
65  muscles after adult eclosion in the tobacco hornworm moth, Manduca sexta.
66  acid hydrolysates of Manduca sexta (tobacco hornworm) pupal cuticle exuviae and products obtained fr
67 ted sGC proteins from Manduca sexta (tobacco hornworm) that bind NO, CO, and stimulatory compound YC-
68 stem for sGC from Manduca sexta (the tobacco hornworm) that retains the N-terminal two-thirds of both

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