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1 le defense mechanisms in the EFP of pumpkin (Cucurbita maxima) after leaf damage.
2  acids in the case of cultivars belonging to Cucurbita maxima and Cucurbita pepo species, while a sli
3             We conducted studies on pumpkin (Cucurbita maxima) and cucumber (Cucumis sativus) to dete
4 pumpkin seed oils (PSO) from Cucurbita pepo, Cucurbita maxima, and Cucurbita moschata cultivated in B
5 garis), bamboo (Phyllostachys nuda), squash (Cucurbita maxima), castor bean (Ricinus communis), and t
6 dentified and characterized a 50-kD pumpkin (Cucurbita maxima cv Big Max) phloem RNA binding protein
7 n this study, proteins contained in pumpkin (Cucurbita maxima cv Big Max) phloem sap were used as a s
8 2 pumpkin varieties belonging to the species Cucurbita maxima Duch. and Cucurbita pepo L.
9 ding the phloem filament protein in pumpkin (Cucurbita maxima Duch.) has been isolated and characteri
10 Further analyses (also in Brassica napus and Cucurbita maxima) employing complementary electrophysiol
11 as a method of pumpkin flesh 'Melon Yellow' (Cucurbita maxima) fortification with calcium.
12                                        Three Cucurbita maxima Hsc70 chaperones were cloned and functi
13 t melon and watermelon (Cucurbita moschata x Cucurbita maxima hybrids), 'Kickstart' and 'Carnivor', g
14  high homology with GA 20-oxidase cDNAs from Cucurbita maxima L. and Arabidopsis thaliana Heynh.
15 e evaluated on cubes of two pumpkin species (Cucurbita maxima L. var. Delica and Cucurbita moschata D
16 n of mRNA from phloem sap of mature pumpkin (Cucurbita maxima) leaves and stems.
17 abeled dextrans along with size-fractionated Cucurbita maxima phloem proteins, ranging in size from 1
18 chemical, and functional characterization of Cucurbita maxima phloem serpin-1 (CmPS-1), a novel 42-kD
19 preparation using as bait the NCAP, pumpkin (Cucurbita maxima) PHLOEM PROTEIN16 (Cm-PP16).
20             Biochemical analysis of pumpkin (Cucurbita maxima) phloem sap led to the characterization
21                                              Cucurbita maxima (pumpkin) phloem sap contains a 31 kDa
22 be system, as eIF5A was recently detected in Cucurbita maxima (pumpkin) phloem sap.
23 scicular phloem P-protein plugs from squash (Cucurbita maxima) represent cucurbit members of the SEO
24  such complex is based on a phloem RBP named Cucurbita maxima RNA-binding protein 50 (CmRBP50), a mem
25 ission of a florigenic signal from flowering Cucurbita maxima stocks to LD-grown C. moschata scions.
26       The side chains of Arg50 and Arg52 iin Cucurbita maxima trypsin inhibitor-V (CMTI-V) anchor the
27 otein scaffold by means of hydrogen bonds in Cucurbita maxima trypsin inhibitor-V (CMTI-V), a potato
28        The solution structure of recombinant Cucurbita maxima trypsin inhibitor-V (rCMTI-V), whose N-
29 peptide bond) hydrolyzed form of recombinant Cucurbita maxima trypsin inhibitor-V (rCMTI-V*) were cha
30                                  CmPP16 from Cucurbita maxima was cloned and the protein was shown to
31 e prephloem pathway of the symplasmic loader Cucurbita maxima was found to be well coupled with the S
32  of protein kinases within the phloem sap of Cucurbita maxima were investigated to test the hypothesi
33     Furthermore, phloem exudates of pumpkin (Cucurbita maxima) were analyzed.